Saikat Chaudhuri | Drug Discovery and Development | Best Researcher Award

Saikat Chaudhuri | Drug Discovery and Development | Best Researcher Award

Assist. Prof. Dr. Saikat Chaudhuri at CSIR-Central Leather Research Institute, India.

Assist. Prof. Dr. Saikat Chaudhuri is an accomplished organic chemist specializing in natural product synthesis and green chemistry. 🎓 He earned his Ph.D. from IISER Bhopal, focusing on Clavine alkaloids, and holds degrees from Visva Bharati and Burdwan Universities. 🏅 He is a recipient of the Young Scientist Award (2024) and prestigious UGC fellowships. At CSIR-CLRI, he teaches and mentors students across disciplines, guiding numerous projects and theses. 📚 His innovative research, backed by major grants, has led to impactful publications in synthesis and catalysis. 🧪 His work fuels advancements in affordable pharmaceutical chemistry and sustainable methodologies.

Publication Profile 

Orcid

Education

Assist. Prof. Dr. Saikat Chaudhuri holds an impressive academic background in organic chemistry. He completed his Ph.D. in Organic Chemistry from IISER Bhopal (2013–2017) under the mentorship of Prof. Alakesh Bisai, focusing on the total syntheses of naturally occurring Clavine alkaloids 🧪. Prior to this, he earned his M.Sc. in Organic Chemistry from Visva Bharati University (2010–2012) 📘 and a B.Sc. (Hons.) in Chemistry from Burdwan University (2007–2010) 🔬. His strong academic foundation laid the groundwork for his research excellence and innovative contributions to synthetic organic chemistry and drug development.

Awards

Assist. Prof. Dr. Saikat Chaudhuri has been recognized with several prestigious honors throughout his academic journey. In 2024, he received the Young Scientist Award from the CRS Society, Vidyasagar University 🌟. Earlier, he was awarded the esteemed Dr. D.S. Kothari Postdoctoral Fellowship (2019–2021) by UGC, Government of India 🧪. During his doctoral research, he was a recipient of both Junior Research Fellowship (JRF) and Senior Research Fellowship (SRF) from UGC-NET (2013–2017) 📚. His early promise was evident when he earned the Swami Vivekananda Merit-cum-Means Scholarship (2011–2012) from the Govt. of West Bengal.

Research Focus 

Assist. Prof. Dr. Saikat Chaudhuri is a rising expert in synthetic organic chemistry and medicinal chemistry. His research focuses on the development of novel synthetic methodologies 🧪 for constructing complex heterocycles, such as indoles, benzazepinoindoles, and spiro compounds 🌱. These molecules show promising biological activity, including antibacterial and antifungal properties 💊🦠. He also explores green chemistry approaches, metal-free catalysis, and the total synthesis of natural products 🌍. His work significantly contributes to drug discovery and design, making him a valuable contributor to pharmaceutical research and sustainable chemistry.

Publication Top Notes

  • Synthesis of Dihydro‐benzazepinoindoles via an Oxidative Pictet–Spengler Reaction
  • A New Homogeneous Catalyst for the Synthesis of 3,3′‐Bis(indolyl)methanes: Collective Synthesis of Arundine, Turbomycin B, Arsindoline A, and Tris(1H‐Indol‐3‐yl)methane*
  • A Transition Metal‐Free Strategy for Dihydrobenzazepinoindole via KI‐Mediated Oxidative Pictet–Spengler Reaction
  • Pentafluorophenol‐Catalyzed Metal‐Free Fischer Indole Synthesis: A Novel Approach to Carbazole Derivatives and Desbromoarborescidine A*
  • Water Mediated Chemoselective Synthesis of Novel Spiro Benzoxazinoindoline and Extended Synthesis of Spiro Benzoxazinoindene Derivatives*
  • A Practical and Metal‐Free Approach Towards Synthesis of Spiro‐Benzazepinoindole Derivatives via Pentafluorophenol Catalyzed Pictet‐Spengler Reaction**
  • Efficient, One‐Pot, Green Syntheses of Analogues of 3,4‐Dihydro‐2H Pyrroles as Potential New Antifungal and Antibacterial Agents.
  • A convenient proline catalysed Paal–Knorr synthesis of highly substituted pyrrole: construction of a pyrrolo[2,1-a]isoquinoline scaffold
  • Syntheses of Novel Spirobenzazepinoindole Derivatives via Lewis‐Acid Catalyzed Pictet‐Spengler Cyclization
  • Self-Healable Hydrogels from Vegetable Oil: Preparation, Mechanism, and Applications
  • A Comprehensive Review of Synthetic Approaches Toward Lamellarin D and its Analogous
  • Catalytic Asymmetric Approach to the Naturally Occurring Clavine Alkaloid, (+)-Lysergine
  • Harnessing leather waste in polymer matrix for sustainable smart <scp>shape‐stable</scp> phase change materials
  • Green synthetic approaches for medium ring-sized heterocycles of biological and pharmaceutical interest

Shanthi Veerappapillai | Drug Discovery and Development | Best Researcher Award

Shanthi Veerappapillai | Drug Discovery and Development | Best Researcher Award

Dr Shanthi Veerappapillai, Vellore Institute of Technology, India

Dr. Shanthi Veerappapillai is a distinguished Professor at VIT University, specializing in Bioinformatics and Computational Biology. With a Ph.D. from VIT, her research interests include computational protein analysis, drug resistance studies, and virtual screening, particularly focusing on infectious diseases like HIV and tuberculosis. She has led multiple funded research projects and published over 130 peer-reviewed articles. Dr. Veerappapillai has been recognized with awards like the Women Achiever Award for Sponsored Research Excellence (2020) and has supervised numerous Ph.D. graduates. Her dedication to education and research is also reflected in her active participation in conferences and professional societies. 👩‍🔬📚💻🌍

Publication Profile

Google Scholar

Education Qualification

Dr. Shanthi Veerappapillai holds a Ph.D. in Bioinformatics from VIT University, Tamil Nadu, India, and an M.Tech in Chemical Process and Design from SASTRA University, Tamil Nadu, India. She also earned a B.Tech in Chemical Engineering from EGS Pillai Engineering College, Bharathidasan University, Tamil Nadu, India. With a strong foundation in both chemical engineering and bioinformatics, Dr. Veerappapillai brings a multidisciplinary approach to her research and academic work. Her diverse academic background equips her with the expertise to bridge the gap between technology and biology, contributing to advancements in various scientific fields. 🧬⚙️🎓

Leadership in Research

Dr. Shanthi Veerappapillai is a dedicated scientist with extensive leadership experience as Principal Investigator (PI) in multiple prominent projects. Her research spans critical areas such as drug repurposing strategies and cancer research, showcasing her expertise in advancing both medical and computational biology. Through her work, she has contributed significantly to the development of innovative therapeutic approaches, emphasizing her commitment to enhancing healthcare and medical research. Her ability to lead and collaborate on large-scale projects underscores her impact in the field, making her a valuable asset in shaping the future of medical science and computational biology. 🧬🔬💊

Mentorship and Teaching

Dr. Shanthi Veerappapillai is a distinguished academic with vast experience in supervising successful Ph.D. candidates and teaching specialized subjects in biotechnology and bioinformatics. Her dedication to fostering academic development is evident in her role as a mentor to future researchers. With a passion for guiding students through advanced research topics, she has contributed significantly to shaping the next generation of experts in her field. Her work in biotechnology and bioinformatics continues to inspire students, encouraging innovation and critical thinking in these dynamic disciplines. 👩‍🔬📚🎓🔬👩‍💻

Community Engagement

Dr. Shanthi Veerappapillai is a dedicated academician who has made significant contributions to the scientific community through her active involvement in organizing conferences and workshops. As a member of various professional bodies, Dr. Veerappapillai continuously strengthens her presence in the academic world, sharing her expertise and collaborating with fellow researchers. Her commitment to advancing knowledge and fostering professional connections has had a lasting impact on her field. With a focus on promoting growth in the academic and scientific community, Dr. Veerappapillai’s efforts continue to inspire others. 🌍🧑‍🏫📚

Awards and Achievement

Dr. Shanthi Veerappapillai is a distinguished researcher with 131 peer-reviewed journal articles and an H-index of 14. She received the Best Chapter Award from BRSI-VIT for her exceptional contributions in 2023. She was honored with the Women Achiever Award for Sponsored Research Excellence in 2020 and has been a Research Fellow at INTI International University, Malaysia since June 2023. Dr. Veerappapillai’s academic journey includes producing 100% results in Chemical Engineering Thermodynamics courses and securing university ranks and prizes for academic excellence. She has also received several accolades, including a Best Poster Presentation Award at VIT University. 🏆📚👩‍🔬🌟

Research Focus

Dr. V. Shanthi’s research primarily focuses on molecular simulation, bioinformatics, and computational approaches to drug discovery. She has explored mechanisms of drug resistance, particularly in influenza virus neuraminidase, using molecular simulations to understand oseltamivir resistance. Her work also spans polypharmacology, investigating therapeutic agents for non-small cell lung cancer, and the identification of potential inhibitors for various viruses like H5N1. Additionally, she has contributed to bioprocess industry applications, drug repurposing, and plant-based therapeutic compounds. Her research aims at enhancing drug design, discovering novel therapeutic agents, and understanding the molecular interactions that govern drug efficacy. 🔬💊🦠💡

Publication Top Notes

Exploring the cause of oseltamivir resistance against mutant H274Y neuraminidase by molecular simulation approach

Current progress and future perspectives of polypharmacology: From the view of non-small cell lung cancer

Bioactive Amento flavone isolated from Cassia fistula L. leaves exhibits therapeutic efficacy

Application of heat exchangers in bioprocess industry: a review

Multi-dimensional screening strategy for drug repurposing with statistical framework—a new road to influenza drug discovery

Identification of potential inhibitors of H5N1 influenza A virus neuraminidase by ligand-based virtual screening approach

Role of the cation-π interaction in therapeutic proteins: A comparative study with conventional stabilizing forces