Sara Franzi | Biology Transplantology | Women Researcher Award

Dr. Sara Franzi | Biology Transplantology | Women Researcher Award

Researcher | Policlinico of Milan | Italy

Dr. Sara Franzi is a Researcher at the IRCCS Ca’ Granda Ospedale Maggiore Policlinico in Milan, specializing in transplantation biology and biomedical research. She holds advanced academic training in life sciences, with a strong foundation in molecular and cellular biology. Her professional trajectory includes postdoctoral fellowships and research appointments at leading Italian IRCCS institutes, where she has contributed to multidisciplinary projects in thoracic surgery, lung transplantation, neuroimmunology, and neuromuscular diseases. Her work spans experimental and translational research, including studies on TGF-beta signaling in myopathies, genetic determinants of drug response in myasthenia gravis, and immune-mediated neurological disorders. She has demonstrated leadership in coordinating research initiatives and contributes to scientific dissemination as a medical writer and reviewer for peer-reviewed journals. Dr. Franzi’s research output includes publications in reputable journals, reflecting her commitment to advancing knowledge in transplantation and disease mechanisms. Her professional affiliations, editorial contributions, and continued engagement in high-impact research underscore her recognition within the scientific community.

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Na Eun Lee | Extracellular Vesicles | Best Researcher Award

Ms. Na Eun Lee | Extracellular Vesicles | Best Researcher Award

Senior Research Scientist | Sungkyunkwan University | South Korea

Ms. Na Eun Lee, Ph.D. Candidate at the Department of Health Sciences and Technology (SAIHST), Sungkyunkwan University, is an accomplished researcher specializing in regenerative medicine, stem cell biology, and translational health sciences. She holds a Master’s degree in Health Sciences and Technology from Sungkyunkwan University and a Bachelor’s degree in Applied Biochemistry from Konkuk University. Currently pursuing her doctoral studies, she integrates molecular and cellular approaches to advance extracellular vesicle-based therapeutics and skin rejuvenation technologies. Throughout her professional career, Ms. Lee has held senior scientific and leadership positions at prominent biomedical companies and research institutions, where she directed projects in cell therapy development, angiogenesis research, and clinical translation. Her scholarly contributions include publications in high-impact journals such as Cytotherapy, Biochemical and Biophysical Research Communications, and the International Journal of Molecular Sciences, highlighting innovations in mesenchymal stromal cell biology and nano-encapsulation delivery systems. Renowned for her expertise in extracellular vesicle analysis, molecular diagnostics, and regenerative research, Ms. Lee’s work bridges fundamental science and clinical application. She has been recognized for her research excellence and leadership in biomedical innovation, contributing actively to the advancement of stem cell-based therapeutic strategies and representing a distinguished example of scientific dedication and translational impact in the field of health sciences and technology.

Profiles: ORCID

Featured Publications

1 S. J. Yang, J. K. Son, S. J. Hong, N. E. Lee, D. Y. Shin, S. H. Park, S. B. An, Y. C. Sung, J. B. Park, and H. M. Yang, et al., “Ectopic vascularized bone formation by human umbilical cord-derived mesenchymal stromal cells expressing bone morphogenetic factor-2 and endothelial cells,” Biochemical and Biophysical Research Communications.

2 N. E. Lee, S. J. Kim, S. J. Yang, S. Y. Joo, H. Park, K. W. Lee, H. M. Yang, and J. B. Park, “Comparative characterization of mesenchymal stromal cells from multiple abdominal adipose tissues and enrichment of angiogenic ability via CD146 molecule,” Cytotherapy.

3 H. M. Yang, H. J. Choi, D. P. Hong, S. Y. Joo, N. E. Lee, J. Y. Song, Y. L. Choi, J. Lee, D. Choi, B. Kim, et al., “The analysis of mutations and exon deletions at TSC2 gene in angiomyolipomas associated with tuberous sclerosis complex,” Experimental and Molecular Pathology.