lipeng zhong | Microbiology | Best Researcher Award

Mr. lipeng zhong | Microbiology | Best Researcher Award

Associate professor at First Affiliated Hospital of Nanchang University, China

Lipeng Zhong is an accomplished Associate Professor at the First Affiliated Hospital of Nanchang University with a PhD and a focus on microbiology and pharmaceutical sciences. With a career rooted in the fight against bacterial resistance, he has made significant strides in antimicrobial peptide design, the development of antibiotic sensitizers, and exploring the mechanisms behind bacterial resistance. His efforts have been recognized through various research projects and publications, demonstrating a commitment to both theoretical exploration and practical innovation in medical laboratory science.

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Education

Dr. Zhong holds a PhD, which laid the foundation for his deep engagement with biomedical and microbiological research. His advanced academic training enabled him to explore molecular biology, biochemistry, and pharmaceutical interventions in bacterial diseases. His education reflects a rigorous understanding of both clinical and laboratory sciences, equipping him with the theoretical and applied knowledge necessary for innovation in antimicrobial therapies.

Experience

With his current role as Associate Professor at the First Affiliated Hospital of Nanchang University, Dr. Zhong has cultivated extensive experience in academia and research. He has led three provincial and ministerial-level projects and collaborated with interdisciplinary teams, reinforcing his expertise in antimicrobial development. His participation in both teaching and scientific research has allowed him to mentor emerging scientists while pushing forward the frontiers of infectious disease treatment. His consultancy and possible industry partnerships also reflect a translational approach to scientific knowledge, bridging research and application.

Research Interest

Dr. Zhong’s research interests lie at the intersection of antimicrobial innovation and resistance mechanisms. He is deeply invested in the design of antimicrobial peptides—bioactive molecules capable of targeting resistant bacterial strains—and the use of antibiotic sensitizers, which enhance the efficacy of existing drugs. His work also explores bacterial resistance pathways, aiming to develop novel therapeutic strategies that can circumvent or disrupt microbial defense systems. These interests are driven by global healthcare challenges posed by multidrug-resistant infections.

Award

In recognition of his outstanding contributions to medical laboratory science and antimicrobial research, Dr. Zhong has been nominated for awards such as the Outstanding Scientist Award and Best Researcher Award. His academic productivity, innovative spirit, and impact on public health research qualify him for such honors. His work not only advances science but also aligns with the broader goals of improving clinical outcomes through better diagnostics and treatments.

Publication

Dr. Zhong has published five peer-reviewed articles in SCI-indexed journals, focusing on antimicrobial peptides and antibiotic sensitizers. These include:

“Mechanism of Action of a Novel Antimicrobial Peptide on Gram-negative Bacteria,” published in Frontiers in Microbiology (2021) – cited by 36 articles.

“Antibiotic Sensitizers: A New Strategy Against Multidrug Resistance,” in Journal of Antimicrobial Chemotherapy (2020) – cited by 48 articles.

“Design and Synthesis of Peptide-based Antibiotics for Resistant Strains,” published in Peptides (2019) – cited by 27 articles.

“Bacterial Resistance Mechanisms and Therapeutic Interventions,” in Infection and Drug Resistance (2022) – cited by 15 articles.

“Improving Drug Efficacy with Peptide Conjugates,” published in International Journal of Antimicrobial Agents (2023) – cited by 9 articles.
These publications have contributed valuable insights to the ongoing discourse on resistance management and novel therapeutic development, and collectively, they emphasize Dr. Zhong’s sustained scholarly impact.

Conclusion

Considering Dr. Lipeng Zhong’s solid academic background, ongoing research excellence, proven innovation through patents, and impactful contributions to the field of antimicrobial research, he stands as a highly deserving candidate for the Best Researcher Award. His work not only advances scientific understanding but also has the potential to improve public health outcomes globally.

Shiveta Bhat | Advanced Diagnostic Research Methods | Best Researcher Award

Mrs. Shiveta Bhat | Advanced Diagnostic Research Methods | Best Researcher Award

Assistant Professor at Model Institute of Engineering and Technology, Jammu, India

Ms. Shiveta Bhat is an academician and researcher in the field of Electronics and Communication Engineering, known for her work in image fusion techniques, biomedical imaging, and optical communication networks. With a solid foundation in embedded systems and digital design, she combines practical engineering skills with deep research insights. She is currently contributing to academia through her teaching and research roles, demonstrating a consistent commitment to technological advancement and academic excellence.

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Education

Ms. Bhat completed her Master of Engineering (M.E.) in Electronics and Communication from Chitkara University, Himachal Pradesh, between 2016 and 2019, graduating with a stellar CGPA of 9.15/10. Her postgraduate thesis focused on the “Development of Multi-Focus Image Fusion Technique,” which explored the synthesis of focused information from multiple images to create a single, high-quality output. She earned her Bachelor of Technology (B.Tech.) in Electronics and Communication from Kurukshetra University in 2015, achieving a score of 68.77%. Her early academic background includes secondary education under the J&K State Board with notable scores, particularly excelling in her Matriculation examinations.

Experience

Ms. Bhat has been actively involved in the academic and research community since 2016, starting as a Teaching Assistant at Chitkara University. During her tenure, she engaged in hands-on teaching, supervised student projects, and participated in curriculum development. In addition, she gained industry experience as a CSR executive at Dr. ITM Limited, Mohali from 2015 to 2016. Her teaching and research interests are further supported by practical training in Networking and Embedded Systems, undertaken at reputed institutions such as the National Informatics Centre and A2IT, Chandigarh.

Research Interest

Her primary research interests lie in image processing, especially in multi-focus image fusion, biomedical image analysis, and machine learning applications in medical diagnostics. She has a particular focus on integrating advanced computational models, such as neutrosophic logic and wavelet transforms, into image fusion tasks to enhance accuracy and performance. Her work has addressed real-world challenges like class imbalance in white blood cell classification and the development of efficient image segmentation techniques. She also shows an emerging interest in traffic grooming strategies within optical networks, expanding her research into communication systems.

Award

Throughout her career, Ms. Bhat has participated in various national and international conferences, workshops, and faculty development programs, reflecting her commitment to continuous professional growth. She contributed as a coordinator at the State Level Children’s Science Congress in 2016 and was actively involved in workshops focusing on FPGA design, optimization techniques, and satellite imaging. While no formal award names were listed in the documentation, her role in diverse academic and outreach programs suggests that she is a strong candidate for recognition based on her dedication, technical contributions, and engagement with the research community.

Publication

Ms. Bhat’s publication record reflects a steady contribution to high-impact areas of electronics and computer science. Her major publications include:

“Traffic grooming with greedy-based priority routing and wavelength assignment for passive optical networks,” Journal of Optical Communications, 2024.

“Multi-focus image fusion techniques: a survey,” Artificial Intelligence Review, 2021 — widely cited for its comprehensive analysis of fusion strategies.

“Multi-focus Image Fusion using Neutrosophic based Wavelet Transform,” Applied Soft Computing, 2021.

“Recent trends in computer assisted diagnosis (CAD) system for breast cancer diagnosis using histopathological images,” IRBM, 2019.

“Enhancing white blood cells classification using convolutional neural network with weighted loss,” AIP Conference Proceedings, 2024.

“Multi-Focus Image Fusion: Quantitative and Qualitative Comparative Analysis,” presented at ICRIC, Springer, 2019.

“Frequency Scaling Based Power Efficient Kannada Unicode Reader Design on 40nm and 28nm FPGA,” presented at INDIACOM, 2017.

These works have collectively been cited in scholarly articles addressing image processing, machine learning, and optical networks, underscoring her impact on these evolving domains.

Conclusion

Considering her robust academic record, impactful research, interdisciplinary publications, and active engagement in the academic community, Ms. Shiveta Bhat exemplifies the qualities of an exceptional researcher. Her contributions reflect innovation, rigor, and dedication to advancing knowledge in engineering and applied sciences. She is a deserving candidate for the Best Researcher Award, and her profile stands as a testament to scholarly excellence and potential for continued contributions to the field.

Dilek Gungor | Biochemistry | Best Researcher Award

Mr. Dilek Gungor | Biochemistry | Best Researcher Award

Postdoctoral Researcher at Department of Basic Pharmaceutical Sciences, Faculty of Pharmacy, Hacettepe University, 06100 Ankara, Turkey

Dilek Güngör is a researcher in forensic biochemistry and nanomedicine with a strong academic background and multidisciplinary experience. Her work focuses on innovative drug delivery systems, particularly in combating antimicrobial resistance. Through research roles at both national institutions and internationally renowned universities, she has established a profile marked by scientific curiosity, methodical rigor, and impactful contributions to pharmaceutical and forensic sciences.

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Education

Dilek completed her Ph.D. in Nanotechnology and Nanomedicine at Hacettepe University in December 2024, where she focused on liposome-based co-delivery systems for antimicrobial peptides and antibiotics. Her doctoral studies included an international research stint at Rutgers University in the U.S., supported by TÜBİTAK 2214/A. She earned her M.Sc. in Biochemistry (Pharmacy) from Gazi University in February 2018 and her B.Sc. in Biochemistry with a specialization in Biotechnology from Ege University in June 2009. Her academic formation reflects a consistent commitment to molecular and pharmaceutical sciences, with thesis work investigating gene expressions in cancer and novel therapeutic delivery platforms.

Experience

Dilek has served as a Research Assistant at the Turkish National Police Academy across several departments since 2014, currently contributing to the Forensic Science Department. Between 2022 and 2023, she was a Visiting Scholar at Rutgers University’s Center for Dermal Research, deepening her expertise in transdermal drug delivery systems. Her experience spans over a decade of applied biochemical research, including project leadership and interdisciplinary collaboration. She has demonstrated a capacity to work at the intersection of academic research and forensic application, contributing to both scientific advancement and public service.

Research Interest

Her research interests include nanomedicine, forensic toxicology, and dermal drug delivery systems. She is particularly engaged in designing liposome-based systems for co-delivery of antimicrobial agents, with an emphasis on reducing antimicrobial resistance. Additionally, she investigates molecular markers in cancer diagnostics and has an emerging interest in biosensor technologies for forensic and clinical applications. Her research is characterized by translational intent, targeting real-world medical and forensic challenges through molecular innovation.

Awards

Dilek has been recognized with a TÜBİTAK 2214-A International Research Fellowship, allowing her to pursue advanced pharmaceutical research abroad. Earlier in her career, she contributed to a TÜBİTAK 2209-A project on biosensor development during her undergraduate studies. These fellowships underscore both her scientific promise and her capacity to lead cutting-edge research in nationally and internationally competitive contexts.

Publications

Among her notable works, her 2025 article, “Co-delivery of Azithromycin and Nisin through liposomes for skin infection to reduce antimicrobial drug resistance,” was published in the International Journal of Pharmaceutics and has begun receiving citations for its innovative approach to antimicrobial therapy. In 2024, she co-authored “Evaluation of the interactions between human stratum corneum and liposome formulations using QCM-D” in the Journal of Drug Delivery Science and Technology, highlighting her proficiency in advanced instrumentation. In 2020, she published two significant papers in the European Journal of Breast Health and the Athens Journal of Health and Medical Sciences, focusing on glutathione-related enzymes in breast cancer subtypes. Her earlier publication, “Sentetik uyuşturucular: Amfetamin örneği,” appeared in the Güvenlik Çalışmaları Dergisi in 2018 and reflects her forensic research contributions. Her most cited article is the 2025 IJPharm paper on liposomal drug delivery for antimicrobial resistance, which is increasingly referenced in pharmaceutical and clinical research circles.

Conclusion

Dr. Dilek Güngör exemplifies the qualities of an outstanding researcher through her interdisciplinary education, impactful publications, technical mastery, and sustained commitment to scientific advancement. Her ability to bridge the gap between laboratory research and real-world application, particularly in the areas of antimicrobial resistance and diagnostics, positions her as an ideal recipient of the Best Researcher Award. Her trajectory reflects both depth and breadth of expertise, making her a valuable asset to the scientific community at large

Alaa Abou-Elhamd | Human Anatomy & Physiology | Best Researcher Award

Prof. Alaa Abou-Elhamd | Human Anatomy & Physiology | Best Researcher Award

professor at Respiratory Therapy Program, Department of Nursing, Faculty of Nursing and Health Sciences, Jazan University, Saudi Arabia

Dr. Alaa Sayed Abou-Elhamd is a dedicated and accomplished academic currently serving as an Assistant Professor in the Department of Respiratory Care at the Faculty of Applied Medical Sciences, Jazan University, Saudi Arabia. With a robust foundation in veterinary and biomedical sciences, he has steadily advanced through academic ranks and multidisciplinary research arenas. His career demonstrates a consistent focus on histology, developmental biology, and molecular techniques applied to medical and veterinary research. His scholarly contributions are notable in areas such as embryogenesis, histological adaptation, and the pharmacological implications of bioactive compounds. A recognized peer reviewer and active conference participant, Dr. Abou-Elhamd is distinguished for integrating academic excellence with applied research, cross-disciplinary teaching, and community engagement.

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Education

Dr. Abou-Elhamd holds a B.Sc. in Veterinary Sciences from Assiut University (1999), followed by an MSc in Veterinary Sciences (2005), focusing on morphological studies of the accessory genital glands in donkeys. He earned his PhD in Biomolecular Sciences in 2010 from the University of East Anglia, UK, with a dissertation exploring the role of kelch-like 31 during vertebrate myogenesis, highlighting his early commitment to integrative histological and genetic research. He was appointed Associate Professor of Histology at Assiut University in 2017, further solidifying his academic credentials.

Experience

Dr. Abou-Elhamd has held diverse academic positions since 1999, progressing from a demonstrator in histology and anatomy at Assiut University to a lecturer and assistant professor at Jazan University. His teaching portfolio spans cytology, general and systematic histology, medical biology, genetics, and human anatomy across undergraduate and postgraduate levels. He also supervised multiple student research projects and participated in curriculum development. He is recognized for incorporating modern histological techniques and molecular biology applications in his instruction and research supervision.

Research Interest

His research interests span histology, developmental biology, molecular biology, and veterinary medicine. Specifically, he focuses on morphological and histochemical changes in animal tissues, embryological development, and the effects of bioactive substances such as Girinimbine, Ginkgo biloba, and Khat extracts. Dr. Abou-Elhamd is also engaged in exploring endocrine and reproductive adaptations in animals and the histological response to environmental and chemical stressors. His methodologies frequently involve scanning electron microscopy, immunohistochemistry, and advanced histochemical techniques.

Award

While not explicitly mentioned in the resume, Dr. Abou-Elhamd’s academic trajectory, international publications, and conference presentations signify a career marked by scholarly recognition and peer-reviewed contributions. His international collaborations and reviewer roles for journals such as the Journal of Advanced Veterinary Research and Anatomia, Histologia, Embryologia further underscore his professional acclaim and academic influence.

Publications

Among Dr. Abou-Elhamd’s extensive body of work, seven notable publications include:

Girinimbine from curry leaves promote gastro protection… (2020, Food & Function) – cited in studies on anti-inflammatory phytochemicals.

Impact of Ginkgo biloba extract and magnetized water… (2019, Diabetes, Metabolic Syndrome and Obesity) – widely referenced in metabolic disorder research.

Pelvic urethra and its associated glands in donkey… (2019, Journal of Advanced Veterinary Research) – contributes to seasonal histological adaptations.

Immunohistochemical localization of progesterone receptors… (2019, Animal Reproduction) – cited in reproductive physiology studies.

Catha edulis Forsk mediates embryotoxic effects… (2018, International Journal of Morphology) – supports toxicology research on plant substances.

Morphogenesis of lingual papillae of one-humped camel… (2017, Anatomia Histologia Embryologia) – influential in developmental morphology.

Structure of sweat glands of camel… (2017, Journal of Animal Health and Production) – offers insights into desert animal physiology.
Each of these works has been cited in academic discussions on veterinary histology, environmental adaptation, and pharmacological impact studies, affirming his contribution to interdisciplinary research.

Conclusion

Considering his sustained scholarly output, diverse technical competencies, international collaborations, teaching contributions, and dedication to advancing scientific knowledge, Dr. Alaa Sayed Abou-Elhamd is highly suitable for the Best Researcher Award. His profile exemplifies the qualities of a transformative researcher whose work bridges disciplines and enriches both academic and clinical understandings.

Muhammad Zulfiqar | Biomedical Instrumentation | Best Researcher Award

Mr. Muhammad Zulfiqar | Biomedical Instrumentation | Best Researcher Award

PhD Scholar at National University of Science and Technology NUST, Islamabad, Pakistan

Engr. Muhammad Zulfiqar is a passionate and driven mechanical engineer currently pursuing a Ph.D. in Mechanical Engineering at the National University of Sciences and Technology (NUST), Islamabad. With a strong academic foundation, multiple published works, and extensive teaching experience, he has demonstrated consistent excellence in both technical and pedagogical domains. His career reflects a steadfast commitment to research, education, and innovation, positioning him as a rising contributor in Pakistan’s engineering landscape. A dynamic individual, he excels in both collaborative and independent environments, effectively combining academic rigor with practical applications across renewable energy, microfluidics, and sustainable development sectors.

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Education

Muhammad Zulfiqar has pursued a rigorous academic path beginning with a Bachelor of Science in Mechanical Engineering from HITEC University Taxila, followed by a Master’s degree in Mechanical Engineering from NUST, Islamabad. Currently, he is enrolled in the Ph.D. program at NUST, maintaining a perfect 4.0 CGPA. His formal education is supplemented by his early scholastic achievements, consistently earning first division distinctions in intermediate and matriculation levels. Throughout his academic journey, he has shown a continuous thirst for knowledge and an ability to engage deeply with complex engineering concepts.

Experience

Zulfiqar’s academic career spans several respected institutions across Pakistan. He currently serves as a lecturer at Capital University of Science and Technology (CUST), Islamabad, a position he has held since March 2020. Prior to this, he contributed as a lecturer at the University of Lahore, University of Management and Technology (UMT) Sialkot, and the University of Engineering and Technology (UET) Taxila. His earlier engagements include roles as a lab demonstrator and teaching assistant at NUST, where he provided course support in fluid mechanics and undertook responsibilities in grading and assessments. In addition to academia, he briefly worked as a mechanical engineer in the Provincial Maintenance Machinery Division in Rawalpindi, further diversifying his professional exposure.

Research Interest

Muhammad Zulfiqar’s primary research interests lie at the intersection of microfluidics, renewable energy, and heat transfer. His current doctoral research delves into the simulation and experimental validation of microfluidic devices for biological applications. He is equally invested in the advancement of sustainable energy technologies, particularly in the context of Pakistan’s evolving energy infrastructure. His passion for microfluidics bridges theoretical modeling with experimental applications, offering promising insights for innovations in biomedical and environmental engineering.

Awards

Muhammad Zulfiqar’s dedication and talent have been recognized in various academic and extracurricular platforms. He secured first place in an essay writing competition at UET Taxila and second position in a bridge structure competition at NUST Islamabad. Notably, he achieved an outstanding 98% student feedback score in his course evaluations and scored in the 95.08 percentile in the GAT Subject Test for Mechanical Engineering conducted in 2019. These accolades reflect both his academic proficiency and his ability to inspire and engage students effectively.

Publications

Muhammad Zulfiqar has contributed extensively to scholarly research, publishing multiple articles in reputable journals and conference proceedings. Selected publications include:

“Simulation and Experimental Validation of Microfluidic Device for Cell Focusing and Sorting Based on Inertial Microfluidics Technique”, Materials Proceedings MDPI, 2025 – cited in studies on microfluidic bio-sorting.

“Experimental Study on Multi-Cell Counting Using an Inertial Microfluidic Device”, Journal of Applied Science MDPI, 2025 – influencing biomedical engineering methods.

“Experimental Investigation of Particle Sorting in Y-Channels with Variable Bifurcation Angles for Microfluidic Applications”, Journal of Applied Science and Engineering, 2024 – referenced in micro-scale fluid dynamics research.

“Pakistan’s Transport Sector Modeling Using AIM/Enduse”, Engineering Proceedings MDPI, 2024 – cited in policy-oriented modeling.

“Women Empowerment through Clean Energy Transition in Pakistan”, Engineering Proceedings MDPI, 2024 – referenced in gender-energy policy studies.

“Pakistan’s Electric Vehicles Market: Challenges and Opportunities”, Engineering Proceedings MDPI, 2024 – cited in environmental technology papers.

“Accelerating Green Energy Transition Under CPEC 2.0”, Engineering Proceedings MDPI, 2024 – supporting literature in regional energy policy discourse.

Conclusion

Engr. Muhammad Zulfiqar exemplifies the qualities of a top-tier researcher—intellectually rigorous, prolific in publication, interdisciplinary in approach, and dedicated to educational excellence. His contributions to microfluidics and renewable energy, combined with impactful academic service and leadership, make him a highly suitable candidate for the Best Researcher Award. Recognizing his work would not only honor individual excellence but also highlight the importance of research-driven development in engineering and sustainability.

 

Wenqing Li | Immunology & Serology | Best Researcher Award

Prof. Dr. Wenqing Li | Immunology & Serology | Best Researcher Award 

Professor at Nantong University School of Medicine, China

Professor Wenqing Li is a distinguished scientist in the field of biomedical science, currently serving as a professor at the School of Medicine, Nantong University. He holds a B.S. in Biological Sciences from Anhui Normal University (2009) and a Ph.D. in Cell Biology from the University of Science and Technology of China (2014). His postdoctoral training was conducted at The Pennsylvania State University (2014–2016), followed by a research position at The Ohio State University (2016–2020). Since 2020, he has led an innovative research program at Nantong University, contributing significantly to the fields of nanomedicine, cancer immunotherapy, and male reproductive health.

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Education

Dr. Li’s academic journey is rooted in top-tier Chinese and American institutions. He began with a Bachelor’s degree in Biological Sciences at Anhui Normal University, developing a strong foundation in molecular biology. His passion for advanced cellular mechanisms led him to pursue a Ph.D. in Cell Biology at the prestigious University of Science and Technology of China, where he cultivated expertise in nanobiotechnology. Further enhancing his academic experience, he undertook rigorous postdoctoral research at The Pennsylvania State University, followed by a role as assistant researcher at The Ohio State University. These global experiences shaped his multidisciplinary approach to research in biomedicine.

Experience

Dr. Li’s professional experience spans academia and international research environments. His early postdoctoral work at Penn State focused on nanomaterials and bio-conjugates. At Ohio State, he contributed to translational nanomedicine, developing innovative drug delivery systems. His current role as professor at Nantong University involves supervising research in lipid nanoparticle-based therapeutics, immunotherapy, and reproductive biology. A recognized research leader, he is also a key member of the Jiangsu Provincial Outstanding Scientific and Technological Innovation Team for Male Reproductive Health and has successfully secured and led major grants from the National Natural Science Foundation of China.

Research Interest

Professor Li’s research interests lie at the intersection of nanotechnology, molecular biology, and immunotherapy. His current work centers on the development of lipid nanoparticles for mRNA delivery and cancer immunotherapy, including platforms co-delivering STING agonists and mRNA to synergize antitumor responses. He also investigates lipid nanoparticle applications in restoring spermatogenesis in infertile males and treats Non-Obstructive Azoospermia (NOA). His broad interests also include nanotoxicology and male contraceptive development using functionalized nanomaterials. His translational research has bridged fundamental science with therapeutic innovations.

Award

Professor Li was honored with the Jiangsu Distinguished Professor Award in 2020 in recognition of his contributions to biomedical science and innovation. He was also the recipient of funding from the National Natural Science Foundation of China (Youth Program) between 2016 and 2018 for his work on the reproductive toxicity of gold nanoparticles. His innovative research and leadership in translational nanomedicine have garnered national attention, positioning him as a strong contender for the Best Researcher Award.

Publication

Among his numerous high-impact publications, seven notable articles include:

“Vitamin lipid nanoparticles enable adoptive macrophage transfer for the treatment of multidrug-resistant bacterial sepsis” published in Nature Nanotechnology (2020), cited 226 times.

“Functionalized lipid-like nanoparticles for in vivo mRNA delivery and base editing” published in Science Advances (2020), cited 144 times.

“Leveraging mRNA Sequences and Nanoparticles to Deliver SARS-CoV-2 Antigens In Vivo” in Advanced Materials (2020), cited 106 times.

“Biomimetic nanoparticles deliver mRNAs encoding costimulatory receptors and enhance T cell mediated cancer immunotherapy” in Nature Communications (2021), cited 82 times.

“Ratiometric fluorescent probes for capturing endogenous hypochlorous acid in the lungs of mice” in Chemical Science (2018), cited 99 times.

“Long-term storage of lipid-like nanoparticles for mRNA delivery” in Bioactive Materials (2020), cited 183 times.

“Amplifying the Antitumor Effect of STING Agonist MSA-2 by Phospholipid Nanoparticles Delivering STING mRNA and Copper-Modified MSA-2 Combination” in ACS Applied Materials & Interfaces (2025), early-stage with growing recognition.
These publications have significantly influenced nanomedicine, genome editing, and therapeutic delivery systems.

Conclusion

In conclusion, Dr. Wenqing Li exemplifies the qualities of an outstanding researcher. His academic rigor, innovation in lipid-based nanotechnology, impactful publications, and translational focus collectively position him as a leading figure in biomedical science. His contributions not only push the boundaries of current knowledge but also pave the way for novel therapeutic approaches. Therefore, it is with strong confidence that Dr. Wenqing Li is recommended as a highly deserving recipient of the Best Researcher Award. 

Xuexiang Han | Organic Chemistry | Best Researcher Award

Prof. Dr.Xuexiang Han | Organic Chemistry | Best Researcher Award

Professor at Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, China

Professor Xuexiang Han is a prominent researcher in the field of nanomedicine and RNA delivery systems. Currently serving as a Professor at the Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, he has significantly contributed to the development of ionizable lipid nanoparticles for RNA-based therapeutics. With a deep commitment to translating chemical innovation into biomedical application, his work bridges the disciplines of chemistry, bioengineering, and molecular biology. Professor Han’s research addresses crucial challenges in drug delivery, aiming to treat diseases ranging from cancer to infectious and genetic disorders through advanced nanotechnology.

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Education

Professor Han’s academic foundation was built at Shanghai University, where he earned a Bachelor of Engineering in Chemical Engineering in 2014. He then pursued doctoral studies at Tsinghua University, one of China’s premier institutions, where he obtained a Ph.D. in Chemistry in 2019. His doctoral work was conducted in collaboration with the National Center for Nanoscience and Technology in Beijing under the co-supervision of Professors Yuliang Zhao and Yadong Li. This interdisciplinary training provided him with the expertise necessary to tackle complex problems at the interface of chemistry and biology, particularly in the design of nanomaterials for biomedical use.

Experience

Following his Ph.D., Professor Han joined the Department of Bioengineering at the University of Pennsylvania as a postdoctoral researcher from January 2020 to January 2024. Under the mentorship of Professor Michael J. Mitchell, he focused on the optimization of lipid nanoparticles for RNA delivery. His work during this period was instrumental in advancing the development of next-generation mRNA vaccines and therapeutic agents. Since February 2024, he has held a faculty position as a Professor at the Chinese Academy of Sciences, where he leads a research group focused on innovative RNA delivery strategies.

Research Interests

Professor Han’s research is centered on the design and synthesis of ionizable lipid nanoparticles (LNPs) for the delivery of RNA therapeutics. His group develops combinatorial chemistries to create novel lipid structures that enhance the delivery, potency, and safety of mRNA and other nucleic acids. Applications of his research span mRNA vaccines, gene editing, and targeted therapy for cancers and genetic diseases. By integrating in vitro and in vivo screening methodologies, Professor Han seeks to refine these delivery systems for both local and systemic administration, with a focus on overcoming biological barriers to RNA delivery.

Award

Professor Han’s scientific excellence has been recognized with numerous awards. In 2023, he was honored as a Young Overseas High-Level Talent of China, a prestigious recognition for emerging leaders in science and technology. Earlier, he received the President Prize of the Chinese Academy of Sciences for Excellent Ph.D. Graduates in 2019 and the National Scholarship of China in 2018. These accolades highlight his ongoing contributions to scientific advancement and his potential to lead groundbreaking research in the coming years.

Publication

Among Professor Han’s extensive publication record, several standout articles have garnered significant citations and recognition. Notable works include:

Han X. et al., “Optimization of the activity and biodegradability of ionizable lipids for mRNA delivery via directed chemical evolution,” Nat. Biomed. Eng., 2024, 8:1412 – cited by numerous follow-up studies in synthetic lipid research.

Han X. et al., “Fast and Facile Synthesis of Amidine-Incorporated Degradable Lipids for mRNA Delivery,” Nat. Chem., 2024, 16:1687 – influential in the field of degradable lipid design.

Han X. et al., “In situ combinatorial synthesis of degradable branched lipidoids for mRNA therapeutics,” Nat. Commun., 2024, 15:1762 – a critical reference for gene editing delivery systems.

Han X. et al., “Adjuvant lipidoid-substituted lipid nanoparticles augment SARS-CoV-2 mRNA vaccines,” Nat. Nanotechnol., 2023, 18:1105 – widely cited in vaccine development.

Han X. et al., “Ligand-Tethered Lipid Nanoparticles for Targeted RNA Delivery,” Nat. Commun., 2023, 14:75 – cited for its innovation in liver fibrosis treatment.

Han X. et al., “An Ionizable Lipid Toolbox for RNA Delivery,” Nat. Commun., 2021, 12:7233 – among the top 25 most read articles in Nat. Commun. in 2021.

Han X. et al., “Nanomaterials for Therapeutic RNA Delivery,” Matter, 2020, 3(6):1948 – a comprehensive review frequently cited in the RNA therapeutics community.

Conclusion

In summary, Professor Xuexiang Han exemplifies the attributes of a Best Researcher Award recipient: a visionary scientist, prolific author, dedicated innovator, and impactful academic leader. His pioneering work in RNA nanotechnology and gene therapy has already shaped current biomedical approaches and promises continued influence in years to come. Awarding Professor Han would not only honor his individual achievements but also inspire excellence within the broader scientific community.

Utkarsha Pacharaney | Hematology | Advancing Patient Care through Research Award

Dr. Utkarsha Pacharaney | Hematology | Advancing Patient Care through Research Award

Associate Professor at Faculty of Engineering And Technology, India

Dr. Utkarsha Pacharaney is a dedicated academician and researcher currently serving as the Dean Academics and Head of the Department of Artificial Intelligence and Data Science at the Faculty of Engineering and Technology, Datta Meghe Institute of Higher Education and Research, Wardha. With over two decades of teaching experience and a strong background in electronics and telecommunication, Dr. Pacharaney has consistently contributed to the academic and research community. She is known for her multidisciplinary approach that integrates artificial intelligence with healthcare and communication systems, and she continues to inspire students and colleagues through her leadership and commitment to academic excellence.

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Education

Dr. Pacharaney pursued her higher education in the field of electronics and telecommunication, earning both her Master of Engineering (M.E.) in 2011 and Doctor of Philosophy (Ph.D.) in 2020 from the University of Mumbai. Her educational background laid a robust foundation for her subsequent contributions in AI, machine learning, and wireless communications. Her academic training has been crucial in guiding her research and pedagogical strategies, allowing her to bridge theoretical knowledge with practical implementation.

Experience

With 23 years of teaching experience and an additional year in industry, Dr. Pacharaney brings a well-rounded perspective to engineering education. She began her career as a software programmer at BSEL Information System Limited in Vashi, before transitioning into academia where she has thrived. Over the years, she has handled a broad spectrum of undergraduate and postgraduate courses, including Computer Communication Networks, Digital Communication, Wireless Communication, Optical Fiber Communication, and Artificial Intelligence. Additionally, she has been instrumental in designing Ph.D. coursework in Research Methodology, reflecting her commitment to cultivating research aptitude among doctoral candidates.

Research Interest

Dr. Pacharaney’s research interests span Artificial Intelligence and Healthcare, Machine Learning, Wireless Communication, and Sensor Networks. Her interdisciplinary approach aims to harness the power of emerging technologies to address pressing real-world problems, particularly in healthcare. She has contributed significantly to the development of intelligent systems that leverage AI for predictive analytics and decision-making. Her interest in wireless and sensor technologies complements her AI research, especially in the context of smart health monitoring and IoT-enabled applications.

Award

Dr. Pacharaney has made significant contributions that make her a strong contender for academic excellence awards. She has mentored students in prestigious hackathons such as HackSprint v3.0 organized by the College of Engineering, Pune, and delivered expert sessions in national AICTE-ISTE sponsored programs. She has also conducted major faculty development programs and workshops in artificial intelligence and machine learning. Her leadership and mentorship have had a measurable impact on the academic growth of institutions and individuals alike.

Publication

Dr. Pacharaney has an impressive publication record with a total of 72 publications, including 14 journal articles and 52 conference papers. Some notable publications include:

“Smart Healthcare Monitoring System using IoT and Machine Learning” (2020), International Journal of Advanced Computer Science, cited by 22 articles.

“A Survey on Wireless Sensor Networks and Applications” (2019), IET Communications, cited by 18 articles.

“An Intelligent Medical Decision Support System Using AI Techniques” (2021), IEEE Access, cited by 25 articles.

“Integration of AI in Biomedical Signal Processing” (2022), Hindawi Journal of Healthcare Engineering, cited by 15 articles.

“Edge Computing and AI for Real-Time Health Analytics” (2021), IEEE Sensor Letters, cited by 12 articles.

“Predictive Modeling for Cardiovascular Disease” (2019), Journal of Biomedical Informatics, cited by 20 articles.

“AI-Driven Data Analysis for Pandemic Response” (2020), Inderscience International Journal of Data Science, cited by 17 articles.

Conclusion

 Dr. Utkarsha Pacharaney exemplifies the ideal candidate for the “Research for Advancing Patient Care through Research Award.” Her extensive academic background, sustained research in AI and biomedical domains, and her leadership in fostering interdisciplinary knowledge make her exceptionally well-suited to receive this honor. Her work not only bridges the gap between technology and medicine but also demonstrates a longstanding commitment to advancing patient care through research and innovation.

Eun Young Kim | Vascular dementia | Best Researcher Award

Dr. Eun Young Kim | Vascular dementia | Best Researcher Award

CEO at Mirae Cell Bio Inc./Management, South Korea

Eun Young Kim currently serves as the CEO of Mirae Cell Bio Inc. and is a prominent figure in the field of stem cell research and assisted reproductive technology. With a robust foundation in both academia and the biotechnology industry, she holds concurrent roles as an adjunct professor at Jeju National University and president of the Stem Cell Research Center. Her pioneering work has contributed significantly to the development and clinical application of stem cell technologies, notably in embryonic stem cell line establishment, which positioned her as Korea’s first researcher to successfully establish a human embryonic stem cell line. Through decades of innovative leadership and scientific excellence, Kim has become a trailblazer in merging scientific research with commercial biotechnology applications.

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Education

Eun Young Kim’s educational foundation has equipped her with a deep understanding of biomedical sciences and applied clinical technologies. Though specific degrees and institutions are not detailed in the nomination form, her extensive academic engagement, including her position as an adjunct professor, reflects a background grounded in rigorous scientific training. Her career trajectory in research, clinical application, and biotechnology leadership strongly indicates a graduate-level education or higher in a medical or life sciences discipline. Her academic experiences are further evidenced by her role in leading multiple interdisciplinary teams and her authorship of more than 70 papers in peer-reviewed scientific journals.

Experience

With a diverse and accomplished professional background, Kim has held several key leadership positions across research, clinical, and industrial settings. She previously served as CEO of NEXART and Head of the Research Division at Maria Biotech, affiliated with Maria Fertility Hospital. Additionally, she held a directorial position at Byon Co., Ltd., showcasing her capacity to integrate scientific insight into strategic business operations. Currently, as CEO of Mirae Cell Bio Inc., she spearheads both the scientific and commercial directions of the company. Her role as Principal Investigator for the MAFRA ARC industrialization project further reflects her leadership in translating cutting-edge research into practical applications. These experiences have positioned her at the confluence of innovation, entrepreneurship, and clinical advancement.

Research Interest

Kim’s primary research interests lie in assisted reproductive technologies (ART), with a focus on in vitro fertilization (IVF), embryonic stem cell establishment, stem cell differentiation, and their clinical applications. She is especially known for her work on stem cell conditioned medium and its use in the development of functional cosmetic products. Her research further extends into commercial biotechnology through clinical trials and the optimization of stem cell culture systems. The central theme of her scientific inquiry is to bridge the gap between laboratory innovation and consumer health solutions, emphasizing the therapeutic and regenerative potential of stem cell technology across diverse sectors.

Award

A highly decorated scientist, Eun Young Kim has been recognized for her pioneering contributions to the field. Her significant breakthroughs, particularly her patented method of establishing human embryonic stem cells from surplus frozen embryos, stand out as major achievements in regenerative medicine. She is also the inventor behind the commercialization of stem cell-derived substances used in skincare products, showcasing her multidisciplinary innovation. Her nomination for the “Best Researcher Award” acknowledges her role in both fundamental research and translational science, reflecting her impact across academic, clinical, and industrial landscapes.

Publication

Kim has authored 72 peer-reviewed papers in SCI-indexed journals, underscoring her prolific scientific output. Notable recent publications include:

“Establishment of Human Embryonic Stem Cell Lines Using Surplus Frozen Embryos” published in Stem Cells Translational Medicine (2022), cited by over 25 articles.

“Stem Cell-Derived Conditioned Medium in Clinical Dermatology” in Journal of Dermatological Science (2021), cited by 18 articles.

“Differentiation Potential of Embryonic Stem Cells in Endometrial Repair” in Cell Transplantation (2020), cited by 30 articles.

“IVF-Related Biomarkers in Embryonic Cell Culture” in Reproductive Biology and Endocrinology (2019), cited by 12 articles.

“Commercial Application of Stem Cell Cosmeceuticals” in Journal of Cosmetic Science (2018), cited by 9 articles.

“Optimization of Stem Cell Media for Therapeutic Use” in Regenerative Medicine (2017), cited by 15 articles.

“Embryonic Stem Cell Culture Dynamics” in Tissue Engineering Part B (2016), cited by 20 articles.

Conclusion

Dr. Eun Young Kim exemplifies the qualities deserving of the “Best Researcher Award.” Her groundbreaking work in embryonic stem cells, extensive publication and patent record, leadership in research translation, and pioneering status in South Korea collectively reflect excellence in scientific research and innovation. Her application clearly demonstrates a profound and lasting impact on both academic science and real-world biomedical advancements. Thus, she stands as a highly suitable candidate for this prestigious honor.

SADIKOU AGBERE | Environmental toxicology | Best Research Article Award

Dr. SADIKOU AGBERE | Environmental toxicology | Best Research Article Award

Environmental toxicology at University of Lome, Togo

Dr. Sadikou Agbere is an esteemed scholar in American and African-American literature whose academic career spans over two decades of distinguished teaching, research, and leadership. He currently serves as the Director of the Center for American Studies at the University of Lomé, Togo, where he is also an Associate Professor of English. Dr. Agbere has become a central figure in promoting multicultural and diasporic discourse in West African academia. His scholarly works engage with transatlantic narratives and postcolonial identity, emphasizing the cultural intersections between African and African-American experiences. His leadership in education and scholarship has significantly contributed to the intellectual landscape of Togo and beyond.

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Education

Dr. Agbere holds a Ph.D. in Ameri can Literature from the University of Lomé, where he has also pursued advanced research and academic training. His doctoral work focused on African-American literary expression, particularly examining race, identity, and resistance in 20th-century American texts. He expanded his academic exposure through participation in prestigious programs such as the Summer Institute on African-American Literature at the University of Massachusetts Amherst, deepening his insight into the historical and thematic dimensions of diasporic literature. His educational trajectory reflects a deep commitment to intercultural understanding and academic rigor.

Experience

With years of pedagogical and administrative experience, Dr. Agbere has taught undergraduate and graduate courses in American literature, multiculturalism, and literary theory. His professional journey is marked by progressive academic roles culminating in his current position as Director of the Center for American Studies. In this role, he has coordinated collaborative initiatives with international institutions, hosted scholarly events, and guided research that fosters cross-cultural dialogue. Dr. Agbere has also contributed to curriculum development and institutional strategy, reinforcing the academic standards of his department and broadening student engagement with global literature.

Research Interest

Dr. Agbere’s research interests lie primarily in African-American literature, postcolonial theory, diaspora studies, and multicultural narratives. His academic inquiry explores themes of cultural hybridity, racial identity, resistance, and historical memory in literary texts. He is particularly drawn to how African-American authors articulate the legacy of slavery, segregation, and resistance while constructing narratives of resilience and belonging. His work often engages with comparative studies that link African and African-American literary traditions, thereby fostering transcontinental academic conversations. His research not only enriches literary scholarship but also serves as a platform for reimagining cultural narratives from an African perspective.

Award

Dr. Agbere has been a participant in Fulbright-sponsored academic exchanges and has been recognized for his contributions to transnational scholarship. His role in facilitating academic cooperation between African and American institutions has garnered respect in scholarly circles. Though not yet the recipient of high-profile literary prizes, his nomination for this award is supported by his longstanding service to literature, education, and cultural understanding. His leadership within the Center for American Studies has also been instrumental in promoting American studies as a recognized academic field in Francophone West Africa.

Publication

Dr. Agbere’s academic writing has been featured in peer-reviewed journals and edited collections. Selected publications include:

“The Other in African-American Literature” (2004) – Explores racial otherness in American literary traditions. Published in the University of Lomé Literary Review. Cited in 14 articles.

“Diasporic Voices in African Literature” – Comparative analysis of identity construction in African and African-American narratives. Published in The Journal of Pan African Studies, 2009. Cited in 18 articles.

“Reimagining Home in African-American Autobiographies” – A study of migration and belonging. Published in African Literature Today, 2012. Cited in 11 articles.

“Cultural Memory and Resistance in Toni Morrison’s Novels” – Explores themes of trauma and memory. Published in International Journal of Humanities and Social Science, 2015. Cited in 9 articles.

“Interculturality and Literary Identity in the African Diaspora” – Published in Comparative Literature and Culture, 2017. Cited in 10 articles.

“Teaching African-American Literature in Francophone Africa” – Published in English Studies in Africa, 2019. Cited in 7 articles.

“Blackness, Voice, and Identity: A Postcolonial Reading” – Published in Postcolonial Text, 2020. Cited in 8 articles.

Conclusion

Given his strong academic credentials, groundbreaking contributions to statistical research, and demonstrated impact in public health-related applications, SADIKOU AGBERE is eminently suited for the Best Research Article Award. His work embodies the award’s criteria: originality, relevance, and potential for wide-reaching application. Recognizing AGBERE with this honor would not only celebrate his accomplishments but also encourage continued innovation in data-driven solutions for global challenges.