Song Guo Zheng | Drug Discovery and Development | Best Researcher Award

Prof. Song Guo Zheng | Drug Discovery and Development | Best Researcher Award

Chair Professor at Shanghai Jiao Tong University School of Medicine | China

Prof. Song Guo Zheng, M.D., Ph.D., is an internationally renowned immunologist and clinician-scientist specializing in rheumatology, molecular immunology, and translational medicine. He currently serves as Chair Professor and Dean of the School of Cell and Gene Therapy at Shanghai Jiao Tong University. With academic leadership roles across prestigious institutions in the U.S. and China, his pioneering work spans autoimmunity, cell therapy, and immunoregulation. A prolific author with over 110 peer-reviewed publications in top-tier journals, Prof. Zheng is also a highly decorated researcher and active leader in global immunology societies. His contributions continue to shape modern immunotherapy and precision medicine.

Publication Profile 

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Education 

Prof. Zheng earned his Ph.D. in Molecular Immunology from the University of Orleans, France (2011), and a Master’s in Pathology and Immunology from Shanghai Medical University (1992). He completed his M.D. at Anhui Medical University (1984). His clinical training included a residency in surgery at Chizhou City Hospital (1984–1989) and an internship at Shanghai Zhabei Hospital (1983–1984). He further pursued a pathology fellowship at Shanghai Medical University Cancer Hospital (1989–1993). These academic and clinical foundations laid the groundwork for a distinguished career in immunology, clinical research, and translational medicine across both China and the United States.

Experience 

Prof. Zheng currently serves as Chair Professor at Shanghai Jiao Tong University and Dean of the School of Cell and Gene Therapy (2023–Present). He previously held senior positions including the Ronald L. Whisler Chair in Rheumatology and Immunology at Ohio State University (2018–2022) and Director at Penn State University’s College of Medicine (2013–2018). His U.S. academic journey began at the University of Southern California as an assistant and associate professor (2004–2013), after postdoctoral work at USC and UCLA. With leadership in research, teaching, and clinical science, he has become a global authority in immunological therapeutics and rheumatology.

Awards

Prof. Zheng has received numerous prestigious honors, including the Outstanding Scientist Award (2023, USA) and the Distinguished Clinical Immunologist Award (2019, China). He was awarded the Edmund L. Dubois Award (2019), NIH STAR Award (2016–2021), and was Chair of NIH MOSS Study Section (2016). Notably, he earned the James R. Klinenberg Award for best immunologist in Southern California (2007) and the Freda Newton Memorial Scholar Award (2006). He is an elected member of The Henry Kunkel Society (2012) and a recipient of the ACR Investigator Award (2008–2010), reflecting his impactful and sustained contributions to clinical immunology.

Research Focus 

Prof. Zheng’s research centers on molecular immunology, particularly in autoimmune diseases, Treg/Th17 cell modulation, and immune tolerance mechanisms. He investigates immunometabolism, gene and cell therapy, and inflammatory signaling pathways with an emphasis on clinical translation. His studies on cytokines, nanomedicine, and immune checkpoint regulation aim to advance precision therapeutics for rheumatic and inflammatory diseases. He integrates cutting-edge techniques including single-cell sequencing, CRISPR-based modulation, and nano-drug delivery systems. His innovative research is highly cited and supports next-generation treatments for autoimmunity, cancer immunotherapy, and organ-specific inflammation, shaping global trends in immune-based medical interventions.

Publication Top Notes

Natural and induced CD4+ CD25+ cells educate CD4+ CD25− cells to develop suppressive activity: the role of IL-2, TGF-β, and IL-10

IL-2 is essential for TGF-β to convert naive CD4+ CD25− cells to CD25+ Foxp3+ regulatory T cells and for expansion of these cells

Role of vitamin A in the immune system

Generation ex vivo of TGF-β-producing regulatory T cells from CD4+ CD25− precursors

Vitamin D and chronic diseases

TGF-β requires CTLA-4 early after T cell activation to induce FoxP3 and generate adaptive CD4+ CD25+ regulatory cells

Natural and TGF-β–induced Foxp3+ CD4+ CD25+ regulatory T cells are not mirror images of each other

Role of TNF–TNF receptor 2 signal in regulatory T cells and its therapeutic implications

Cutting edge: Foxp3+ CD4+ CD25+ regulatory T cells induced by IL-2 and TGF-β are resistant to Th17 conversion by IL-6

Hall of fame among pro-inflammatory cytokines: interleukin-6 gene and its transcriptional regulation mechanisms

The ubiquitin ligase Stub1 negatively modulates regulatory T cell suppressive activity by promoting degradation of the transcription factor Foxp3

The role of the combination of IL-2 and TGF-β or IL-10 in the generation and function of CD4+ CD25+ and CD8+regulatory T cell subsets

Conclusion

Given his outstanding scientific productivity, leadership in global immunology communities, and groundbreaking research on immune regulation, Prof. Song Guo Zheng is highly suitable for the Best Researcher Award. His body of work demonstrates not only scientific depth and innovation but also sustained impact on the field of immunology and clinical medicine. With ongoing contributions and strategic improvements, he remains a central figure in advancing immune-based therapies and education worldwide.

Khaydar Yunusov | Drug Discovery and Development | Best Researcher Award

Khaydar Yunusov | Drug Discovery and Development | Best Researcher Award

Prof. Khaydar Yunusov at Institute of Polymer Chemistry and Physics Uzbekistan Academy of Sciences, Uzbekistan.

Prof. Khaydar Yunusov is a distinguished polymer chemist from Uzbekistan with extensive expertise in nanotechnology, cellulose chemistry, and biomaterials. Since 2007, he has held key research and leadership roles at the Institute of Polymer Chemistry and Physics, contributing significantly to polymer-based biomedical innovations. 💊 He holds a Doctor of Science and leads groundbreaking projects on nanostructured antibacterial films, antiviral eye medications, and burn treatments. 📘 With several patents, international collaborations 🌍, and editorial roles in leading journals, Prof. Yunusov is a pioneering force in sustainable polymer research and nanomedical applications.

Publication Profile 

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Education

Prof. Khaydar Yunusov began his academic journey at the Tashkent Chemical Technological Institute, earning a Bachelor’s degree in Chemistry (2006) and a Master’s in Cellulose, Paper Chemistry, and Technology (2008). 📘 Driven by scientific excellence, he pursued a Doctor of Science in Technical Sciences (2009–2016), focusing on advanced polymer research. Since 2018, he has served as a Senior Scientific Researcher in Nanochemistry, Nanophysics, and Nanotechnology. 🧪 His research delves into nanostructured bactericidal preparations based on cellulose and its derivatives, emphasizing synthesis, properties, and production technologies. 🧬 His academic background provides a solid foundation for pioneering innovations in polymer science.

Experience

Prof. Khaydar Yunusov has cultivated a rich professional career in polymer science, beginning in 2007 as a researcher at the Institute of Polymer Chemistry and Physics, Uzbek Academy of Sciences, Tashkent. 📍 Over the years, he advanced through roles including junior researcher, senior researcher, and project manager, earning his Doctor of Science along the way. 🔬 His expertise spans polymer and cellulose chemistry, nanotechnology, and biomaterials. From 2019 to 2023, he served as a lab and project manager, driving innovation in nanostructured materials. 💼 Prof. Yunusov’s professional path reflects unwavering dedication to scientific discovery and technological advancement.

Research Focus 

Prof. Khaydar Yunusov is a pioneering scientist whose research spans polymer chemistry, cellulose technology, and nanochemistry. His core focus lies in designing biocompatible nanomaterials 🧫 such as nanostructured drug delivery systems, microneedles, hydrogels, and functional films for medical applications 🎯. He actively explores biodegradable polymers, nanoparticle synthesis (silver, selenium, zinc oxide), and antimicrobial and anticancer therapies 💊. His work intersects biotechnology, materials science, and pharmaceutical engineering, advancing targeted treatments and regenerative medicine 🧠🦠. With numerous high-impact publications, Prof. Yunusov is shaping the future of smart biomaterials and sustainable polymeric solutions.

Publication Top Notes

  • A red cell membrane-camouflaged nanoreactor for enhanced starvation/chemodynamic/ion interference therapy for breast cancer
  • A three-dimensional printable conductive composite dressing for accelerating wound healing under electrical stimulation
  • Core-shell structured microneedles with programmed drug release functions for prolonged hyperuricemia management ( vol 12, pg 1064, 2024)
  • Fabrication of hollow microneedles with double-layer shell structure for rapid and prolonged local anesthesia
  • Homemade isothermal amplification-initiated Cas14a assay for rapid quantitative detection of aquatic RNA virus gene with no PAM
  • Iontophoresis-driven transdermal drug delivery system based on porous microneedles for hyperuricemia treatment
  • Real-time microbial growth curve (RMGC) system: an improved microplate reader with a graphical interface for automatic and high-throughput monitoring of microbial growth curves
  • Two-directions mechanical strength and high-barrier mechanisms of cellulose nanocrystal- based hybrids reinforced packaging with nacre-mimetic structure
  • Physico-chemical characteristics of dialdehyde carboxymethylcellulose/sericin graft copolymer
  • Synthesis, Characterization, and Cytotoxic Activity of Stable Selenium Nanoparticles‐Incorporated Carboxymethylcellulose Solution
  • Impact of cellulose supramolecular structure on its carboxymethylation reaction activity
  • Advances in the formation and properties of nanofiber biomaterials from polyvinyl alcohol/carboxymethylcellulose/nanosilver systems for medical applications
  • Obtaining Dialdehyde Carboxymethylcellulose Through Microwave Treatment
  • Core-shell structured microneedles with programmed drug release functions for prolonged hyperuricemia management