Dr. Fuhou Li | Biotechnology | Best Researcher Award

Dr. Fuhou Li | Biotechnology | Best Researcher Award

Associate Professor, Jilin University, China

Dr. Fuhou Li 🎓 is an accomplished researcher and Associate Professor at the College of Animal Science, Jilin University, China. His expertise lies in silage research, ruminant nutrition, and microbial fermentation, with a strong focus on improving animal health and feed efficiency. Currently, he is a visiting scholar at the University of Illinois at Urbana-Champaign, furthering his research in animal science. Dr. Li has significantly contributed to understanding lactic acid bacteria’s role in silage fermentation, optimizing animal nutrition, and investigating rumen microbial communities. His work has been widely recognized through numerous high-impact publications in leading peer-reviewed journals. 📚🔬

Publication Profile

🎓 Education

Dr. Li earned his Ph.D. (2017-2021) and Master’s degree (2014-2017) from the College of Pastoral Agriculture Science and Technology, Lanzhou University, specializing in silage research and animal nutrition. His undergraduate studies (2010-2014) in grassland science were completed at Jilin Agricultural University. His strong academic background has enabled him to contribute significantly to the field of animal nutrition. 🎓📖

💼 Experience

Dr. Li’s academic journey includes postdoctoral research (2021-2024) at Lanzhou University, focusing on silage and ruminant nutrition. Since 2024, he has been serving as an Associate Professor at Jilin University, where he continues to advance research in animal science. His current role as a visiting scholar at the University of Illinois at Urbana-Champaign (2025-) further strengthens his international research collaborations. His extensive experience in microbial fermentation and animal feed optimization has made him a respected scientist in his field. 🏫🔬

🏆 Awards and Honors

Dr. Li has been recognized for his outstanding contributions to silage research and animal nutrition. His publications in top-tier journals, along with his active role in international conferences, have earned him accolades from the scientific community. His innovative research on lactic acid bacteria and fermentation quality has positioned him as a leading expert in ruminant nutrition. 🏅📜

🔬 Research Focus

Dr. Li’s research revolves around the effects of lactic acid bacteria on silage fermentation and animal health, microbial interactions in ruminant digestion, and optimizing silage quality to enhance livestock productivity. His work explores how microbial communities and enzyme-producing bacteria influence fermentation characteristics and nutrient availability in silage, benefiting both dairy and meat production industries. His findings contribute to sustainable livestock management and improved animal health. 🐄🌿

📖 Publications

Responses of microbial community composition and CAZymes encoding gene expression in ensiled Elymus nutans to altitudinal gradients in alpine region. Applied and Environmental Microbiology.

Effects of inoculating feruloyl esterase-producing Lactiplantibacillus plantarum A1 on ensiling characteristics, in vitro ruminal fermentation, and microbiota of alfalfa silage. Journal of Animal Science and Biotechnology.

Probiotic effect of feeding feruloyl esterase-producing Lactobacillus plantarum inoculated alfalfa silage on digestion, antioxidant, and immunity status of lactating dairy goats. Animal Nutrition.

Nutrient utilization of native herbage and oat forage as feed for Tibetan sheep (Ovis aries). Grassland Science.

The effects of Lactobacillus plantarum with feruloyl esterase-producing ability or high antioxidant activity on fermentation, chemical composition, and antioxidant status of alfalfa silage. Animal Feed Science and Technology.

Effects of class IIa bacteriocin-producing Lactobacillus species on fermentation quality and aerobic stability of alfalfa silage. Animals.

Pretreatment of Pennisetum sinese silages with ferulic acid esterase-producing lactic acid bacteria and cellulase at two dry matter contents: Fermentation characteristics, carbohydrate composition, and enzymatic saccharification. Bioresource Technology.

Ferulic acid esterase-producing lactic acid bacteria and cellulase pretreatments of corn stalk silage at two different temperatures: Ensiling characteristics, carbohydrate composition, and enzymatic saccharification. Bioresource Technology.

📚 Conclusion

Dr. Fuhou Li is a dedicated scientist whose research has significantly impacted the field of silage fermentation and ruminant nutrition. His extensive experience, high-impact publications, and ongoing international collaborations reflect his commitment to advancing animal science. Through his innovative research, he continues to drive improvements in animal feed efficiency, microbial interactions, and sustainable livestock nutrition. 🌱🔬🐑

Paramita Basu Mukherjee | Health Sciences | Best Researcher Award

Assoc. Prof. Dr. Paramita Basu Mukherjee | Health Sciences | Best Researcher Award

Associate Professor, New York College of Podiatric Medicine, United States

Dr. Paramita Basu is a distinguished scientist and educator specializing in infectious diseases, pharmaceutical sciences, and microbiology. Currently, she serves as an Associate Professor and Director of Infectious Diseases at the New York College of Podiatric Medicine and an Associate Professor of Pharmaceutical & Biomedical Sciences at Touro College of Pharmacy, New York. With a Ph.D. in Biological Sciences from St. John’s University, she has made significant contributions to research on biofilms, antibiotic resistance, and innovative learning methodologies. As a dedicated academic leader, she also chairs the Curriculum Committee at Touro College of Pharmacy, shaping the future of pharmaceutical education.

Publication Profile

🎓 Education

Dr. Basu earned her Ph.D. in Biological Sciences from St. John’s University, Queens, New York (2003-2008). Her research during this period focused on microbial resistance and biofilm control mechanisms, laying the foundation for her impactful work in microbiology and pharmaceutical sciences.

💼 Experience

With over a decade of experience in academia, Dr. Basu has held key positions in medical and pharmaceutical education. Since 2009, she has been an Associate Professor at Touro College of Pharmacy, where she teaches pharmaceutical and biomedical sciences. In 2022, she joined the New York College of Podiatric Medicine as the Director of Infectious Diseases, focusing on pre-clinical sciences and microbiology. Her expertise extends to curriculum development, interdisciplinary education, and research on antibiotic resistance in clinical settings.

🏆 Awards and Honors

Dr. Basu has received multiple recognitions for her outstanding research and academic contributions. She has been acknowledged for her pioneering work in antimicrobial resistance, biofilm studies, and the integration of audiovisual learning in medical education. Her research has been published in top-tier scientific journals, reflecting her impact on global microbiology and pharmaceutical sciences.

🔬 Research Focus

Dr. Basu’s research interests revolve around biofilm formation, antibiotic resistance mechanisms, and innovative drug therapies. Her work has significantly contributed to understanding Pseudomonas aeruginosa biofilms, Vibrio gazogenes interactions, and novel antibiotic treatments. Additionally, she explores the role of multimedia learning tools in medical education, aiming to improve student engagement and knowledge retention in pharmaceutical sciences.

🔎 Conclusion

Dr. Paramita Basu is a renowned microbiologist, educator, and researcher with a passion for antimicrobial resistance and innovative learning in pharmaceutical sciences. Her groundbreaking work in infectious disease research and medical education has solidified her position as a leader in the field. With a commitment to scientific advancement and student success, she continues to make a significant impact in pharmaceutical and biomedical sciences. 🚀

📚 Publications

Development and Control of Biofilms in Diabetic Foot Infections: A Narrative Review Acta Microbiologica Hellenica (2025) [🔗DOI: 10.3390/amh70010009]

Integration of an Audiovisual Learning Resource in a Podiatric Medical Infectious Disease Course: Multiple Cohort Pilot Study – JMIR Medical Education (2025) [🔗DOI: 10.2196/55206]

Study of the impact of introducing a multimedia learning tool in podiatric medical courses – Journal of Foot and Ankle Research (2024) [🔗DOI: 10.1002/jfa2.12018]

Antibiotic-Induced Changes in Efflux Transporter Expression: A Key Factor in Pseudomonas aeruginosa Biofilm Resistance – Journal of Experimental Biology and Agricultural Sciences (2024) [🔗DOI: 10.18006/2024.12(2).274.283]

Vibrio gazogenes-dependent disruption of aflatoxin biosynthesis in Aspergillus flavus – Frontiers in Microbiology (2023) [🔗DOI: 10.3389/fmicb.2023.1208961]

The Effect of Antibiotic Treatment and Gene Expression of Mex B Efflux Transporters on the Resistance in Pseudomonas Aeruginosa Biofilms Applied Microbiology (2023) [🔗DOI: 10.3390/applmicrobiol3030049]

Surveillance of SARS-CoV-2 RNA in open-water sewage canals – Access Microbiology (2022) [🔗DOI: 10.1099/acmi.0.000318]

Antimicrobial Resistance in Pseudomonas aeruginosa Biofilms – Journal of Pure and Applied Microbiology (2021) [🔗DOI: 10.22207/JPAM.15.4.79]

Mr. yuxin fang | Biomedical Engineering | Best Researcher Award

Mr. yuxin fang | Biomedical Engineering | Best Researcher Award

Doctoral Candidate, chongqing university, China

Yuxin Fang is a dedicated doctoral candidate at Chongqing University, specializing in cutting-edge surgical navigation methods. With a strong background in biomedical engineering and computer-aided surgery, Yuxin has made significant strides in real-time 3D localization for surgical procedures. His pioneering work on electric field-based surgical navigation has bridged the gap between medical technology and precision surgery, achieving instrument positioning accuracy within 2mm in real tissues. Through interdisciplinary research and collaborations, Yuxin continues to push the boundaries of surgical automation, revolutionizing the way minimally invasive procedures are performed.

Publication Profile

Scopus

🎓 Education

Yuxin Fang is currently pursuing a PhD at Chongqing University, focusing on biomedical engineering and surgical navigation technology. His academic journey has been driven by a passion for integrating computer science, physics, and medicine to develop innovative solutions for real-world healthcare challenges.

🏆 Experience

With extensive research experience in medical technology, Yuxin has contributed to multiple groundbreaking projects, including electric field-based surgical navigation and automated surgical platforms. His expertise spans real-time 3D localization, biomedical instrumentation, and AI-driven surgical automation. He has also collaborated with the Department of Physics at the University of Warwick, UK, and the Center of Critical Care Medicine at Southwest Hospital, China, to refine and implement his research findings.

🏅 Awards and Honors

Yuxin’s contributions to biomedical engineering have been recognized through various academic and professional accolades. His innovative research has earned him international recognition, including editorial appointments with esteemed journals such as the International Journal of Computer Science and Information Technology. His work is widely cited, demonstrating its impact on the field of surgical navigation.

🔬 Research Focus

Yuxin Fang’s research is centered on electric field-based surgical navigation, real-time 3D localization, and automated surgical systems. His work addresses a critical gap in precision surgery by developing radiation-free, high-accuracy navigation methods using miniaturized equipment. By integrating this technology into robotic surgical platforms, he is paving the way for next-generation, fully automated surgical procedures that enhance patient safety and surgical outcomes.

🔚 Conclusion

With an unwavering commitment to innovation, Yuxin Fang is shaping the future of surgical technology. His groundbreaking work in surgical navigation is setting new standards in medical precision, bridging the gap between engineering and healthcare. Through his research, collaborations, and academic contributions, Yuxin continues to make a lasting impact on the field of biomedical engineering and beyond. 🚀

📚 Publications

MUHAMMAD ANWAR | Biotechnology | Best Researcher Award

Assoc. Prof. Dr. MUHAMMAD ANWAR | Biotechnology | Best Researcher Award

Associate Professor, Hainan University, China

Dr. Muhammad Anwar is a renowned Molecular Biologist and Genetic Engineer specializing in metabolic engineering, biosynthesis, and plant biotechnology 🌱🧬. With extensive expertise in molecular biology, metabolic pathways, and bioinformatics, he has significantly contributed to understanding flavonoid and terpenoid biosynthesis, plant defense mechanisms, and genetic transformation techniques. Currently serving as an Associate Professor at Hainan University, China, Dr. Anwar has a robust academic and research background spanning over a decade in leading international institutions. His impactful research has led to several high-impact publications in molecular genetics, secondary metabolite biosynthesis, and plant breeding, making him a prominent figure in plant sciences and metabolic engineering.

Publication Profile

🎓 Education 

Dr. Anwar holds a Ph.D. in Agriculture/Horticulture (2014-2018) from Fujian Agriculture and Forestry University, China, where he specialized in genetic and metabolic engineering of plants. He pursued a Postdoctoral Research Fellowship (2019-2023) at Shenzhen University, China, focusing on biosynthesis and functional genomics of medicinal compounds. His academic journey began with an M.Sc. (Hons) in Agriculture (2006-2008) from PMAS Arid Agriculture University, Pakistan, where he worked on salicylic acid’s impact on plant growth. His undergraduate degree, B.Sc. (Hons) in Agriculture/Horticulture (2002-2006), was completed at Bahauddin Zakariya University, Pakistan, laying the foundation for his illustrious career.

👨‍🏫 Experience 

With a stellar career spanning academia and industry, Dr. Anwar is currently an Associate Professor at Hainan University, China (2023–Present), where he leads research in molecular genetics, metabolic pathways, and plant biotechnology. Prior to this, he served as a Postdoctoral Research Fellow at Shenzhen University (2019-2023), focusing on genetic transformation and biosynthetic pathways. His earlier roles include Assistant Professor at the University College of Management Sciences (2018-2019) and research positions at WWF Pakistan, Pakistan Agriculture Research Council, and The Bank of Punjab, contributing to agricultural biotechnology and finance. His expertise in genetic transformation, bioinformatics analysis, and plant defense mechanisms has paved the way for groundbreaking discoveries in plant sciences.

🏆 Awards & Honors

Dr. Anwar has been the recipient of numerous prestigious awards 🎖️, including the International Young Researcher Fund from the National Science Foundation of China (2020-2022). He was awarded the China Government Scholarship (CSC) (2014-2018) for his Ph.D. and the USA Need-Based Scholarship (2006-2008) for his Master’s degree. His excellence extends beyond academics, having received multiple medals and certificates in sports and extracurricular activities. Additionally, he has played an active role in various international training programs, including the Advanced Training Program on Rice Agriculture under the Belt and Road Initiative.

🔬 Research Focus 

Dr. Anwar’s research is centered on molecular biology, genetic engineering, and biosynthetic pathways 🧪. His key focus areas include flavonoid and terpenoid biosynthesis, gene cloning, transcriptomics, bioinformatics, and secondary metabolite regulation in plants. He has led several projects in Agrobacterium-mediated genetic transformation, transcriptomics, and metabolomics of medicinal plants. His contributions to the identification and functional characterization of R2R3-MYB transcription factors in flower pigmentation and plant defense mechanisms have been widely recognized. His interdisciplinary approach combines computational biology, metabolic engineering, and synthetic biology to enhance crop resilience and secondary metabolite production.

🔚 Conclusion

Dr. Muhammad Anwar stands as a pioneering scientist in molecular biology, genetic engineering, and metabolic pathways 🏆. His commitment to advancing plant biotechnology, biosynthetic pathways, and functional genomics has led to groundbreaking discoveries that bridge the gap between fundamental plant sciences and applied agricultural research. His multi-disciplinary expertise, international collaborations, and dedication to scientific innovation continue to make a lasting impact on genetic transformation, plant defense mechanisms, and bioinformatics-driven molecular breeding. 🌱🔬👨‍🔬

📚 Publications 

NtMYB3, an R2R3-MYB from Narcissus, Regulates Flavonoid BiosynthesisInternational Journal of Molecular Sciences, 2019 (6.2 IF) 🧬 🔗 Read More

Gene pyramiding improved cell membrane stability under heat stress in cottonBMC Plant Biology, 2024 (4.3 IF) 🌿 🔗 Read More

Computational Identification and Characterization of Glycosyltransferase 47 Gene Family in Sorghum bicolorProcesses, 2025 🏗️ 🔗 Read More

Recent advancement and strategy on bio-hydrogen production from photosynthetic microalgaeBioresource Technology, 2019 (11.88 IF) 💡 🔗 Read More

Metabolic and Genetic Engineering of Phenylpropanoid and Terpenoid Biosynthetic PathwaysInternational Journal of Molecular Sciences, 2021 (6.2 IF) 🌱 🔗 Read More

Mitigating chromium stress in tomato plants using green-silicone nanoparticlesScientia Horticulturae, 2024 (4.3 IF) 🍅 🔗 Read More

The chloroplast genome of Chrozophora sabulosa and its evolutionary position in ChrozophoraBMC Genomics, 2024 (4.3 IF) 🧬 🔗 Read More

Melatonin foliar application promotes anthocyanin accumulation and oxidative stress managementScientia Horticulturae, 2024 (4.3 IF) 🌿 🔗 Read More

A Decade of Progress in Rhizoengineering for Salinity AmeliorationPlant Stress, 2023 (5.0 IF) 🌍 🔗 Read More

Multi-epitopes vaccine design for SARS-CoV-2 using an immunoinformatic approachHeliyon, 2024 (4.0 IF) 🦠 🔗 Read More