Dr. Amit Khanna – iPSC – Stem cells- Best Researcher Award

Dr. Amit Khanna - iPSC - Stem cells - Best Researcher Award

Yashraj Biotechnology - India 

Author Profile 

ORCID 

🎓 Early academic pursuits

Dr. Amit Khanna's journey into the scientific world began with a strong foundation in bioinformatics and life sciences, complemented by a master's degree in technology (m.tech) and a doctorate (ph.d). his academic training fostered a deep understanding of cellular biology, molecular pharmacology, and translational research, setting the stage for his later work in drug discovery and disease modeling. with a growing interest in combining biological systems with advanced simulation tools, he also developed an appreciation for cross-disciplinary areas such as power electronics, where data integration and control systems play crucial roles.

💼 Professional endeavors

Dr. Khanna boasts more than 18 years of industrial research experience, working with prestigious organizations such as syngene international, piramal life sciences (plsl), strand life sciences, and yashraj biotechnology limited. currently, he serves as the head of integrated drug discovery & development at yashraj biotechnology limited, where he leads high-performing teams in the development of cutting-edge in vitro models. previously, he held leadership roles including senior director at intonation research laboratories and group lead at syngene international, overseeing complex biological projects and assay development.

🔬 Contributions and research focus

Dr. Khanna has significantly advanced the field of drug discovery, especially in the areas of cancer, neurodegenerative, cardiovascular, and inflammatory disorders. his work includes the iPSC - Stem cells development and validation of human-relevant disease models using stem cells (including ipsc), crispr-engineered cells, and advanced 2d/3d co-culture systems. he has also contributed to the standardization of biochemical and cell-based assays and led target engagement studies involving cetsa, protac, and nanobret technologies. through a data-driven and milestone-gated approach, he ensures regulatory compliance and research excellence. his analytical and scientific strategy often parallels principles found in power electronics, such as feedback control and system optimization.

🌍 Impact and influence

Dr. Khanna's leadership has enabled transformative research outcomes that align with industry benchmarks and regulatory standards. by fostering collaborations with cross-functional teams and outsourcing partners, he has significantly influenced the trajectory of drug discovery programs in india. his work has directly contributed to the identification and optimization of clinical iPSC - Stem cells candidates like the jak kinase inhibitor for pruritus. he has also led the development of 21 cfr part 11–compliant data strategies, shaping robust data governance within the discovery biology landscape. as integrated technologies continue to gain traction in biomedical research, his emphasis on data alignment mirrors the precision required in power electronics control frameworks.

📚 Academic cites

Dr. Khanna’s scientific contributions have been cited in multiple high-impact research studies, particularly in translational biology and pharmacological modeling. his publications, iPSC - Stem cells collaborations, and presentations at industry forums reflect his dedication to innovation and scientific communication. while specific citation metrics are not listed here, his impact is evident in the successful delivery of numerous discovery-phase projects and the clinical progression of lead compounds.

🧬 Legacy and future contributions

With a commitment to scientific rigor and innovation, dr. khanna continues to push the boundaries of drug discovery and translational research. his strategic vision includes expanding into organ-on-chip models, personalized therapy development, and high-throughput screening platforms. as technology and biology converge, his interdisciplinary mindset positions him to integrate fields like power electronics into next-generation biomedical solutions. his long-term legacy will be defined by the nurturing of scientific talent, enhancement of disease model accuracy, and promotion of global research collaborations.

Notable  Publications 

Title: Generation of human-induced pluripotent stem cell line from PBMC of healthy donor using integration-free Sendai virus technology
Author(s): Jaganmay Sarkar, Shreya Dhepe, Amrita Shivalkar, Rutuja Kuhikar, Shruti More, Vijay Bhaskar Reddy Konala, Paresh Bhanushali, Amit Khanna
Journal: Stem Cell Research

Ms. Chanchal Choudhary – Molecular and Developmental Biology – Best Researcher Award

Ms. Chanchal Choudhary - Molecular and Developmental Biology - Best Researcher Award

Jawaharlal Nehru University - India 

Author Profile 

ORCID 

🎓 Early academic pursuits

Chanchal Choudhary’s academic journey began with a deep interest in molecular and developmental biology. She pursued a Doctor of Philosophy (PhD) in Life Sciences at Jawaharlal Nehru University, New Delhi. Her coursework, completed with an impressive CGPA of 8.06, laid a strong foundation in the intricacies of developmental biology. Her PhD research, titled "Understanding the role of TCTP2 in Dictyostelium discoideum," delved into the molecular dynamics of Translationally Controlled Tumor Protein (TCTP) and its critical role in various cellular processes.

🏢 Professional endeavors

Chanchal has amassed extensive experience in independent research and has been at the forefront of high-impact studies. Her work has led to several peer-reviewed publications and presentations at international conferences. This trajectory has not only honed her expertise but also positioned her as a leader in cross-functional projects. She has demonstrated a strong capability to mentor emerging scientists, fostering an environment of growth and innovation within her research teams.

🔬 Contributions and research focus

The cornerstone of Chanchal’s research lies in her in-depth exploration of TCTP2 in Dictyostelium discoideum. Her findings reveal the protein’s pivotal role in autophagy regulation, which is Molecular and Developmental Biology crucial for understanding cell proliferation, survival, and death. By elucidating the functions of TPT2, her research offers valuable insights into cellular dynamics and developmental biology. This study not only advances basic biological knowledge but also underscores the therapeutic potential of targeting TCTP in cancer treatment.

🌟 Accolades and recognition

Chanchal’s scholarly contributions have earned her recognition in the scientific community. Her research findings, published in esteemed journals, reflect her dedication and innovative Molecular and Developmental Biology approach. She has presented her work at prestigious international conferences, where she has been commended for her clarity and depth of knowledge. These accolades highlight her commitment to advancing the field of molecular and developmental biology.

🌍 Impact and influence

Chanchal’s work has significantly impacted the understanding of cellular processes in both basic and applied sciences. Her research on TCTP2 in Dictyostelium discoideum provides a Molecular and Developmental Biology framework for further studies on cell proliferation and autophagy. This has far-reaching implications for cancer research, potentially paving the way for novel therapeutic strategies. Her mentorship and collaborative projects have also influenced the next generation of scientists, fostering a culture of inquiry and discovery.

📚 Legacy and future contributions

Chanchal Choudhary’s legacy is rooted in her groundbreaking research and her dedication to the scientific community. As she continues her career, her future contributions are anticipated to further unravel the complexities of molecular biology and its applications in health and disease. Her ongoing commitment to addressing biological challenges through innovative research promises to leave a lasting impact on the field.

Notable Publications 

  • Title: Analyzing the functions of Translationally controlled tumor protein2 during growth, development and autophagy of Dictyostelium discoideum
    Authors: Chanchal Choudhary, Bhavya Jain, Shweta Saran
    Journal: Experimental Cell Research
    DOI: 10.1016/j.yexcr.2024.114400
    ISSN: 0014-4827
    Publication Date: January 2025
  • Title: In silico analysis of Translationally-Controlled Tumour Proteins of social amoeba Dictyostelium discoideum
    Authors: Chanchal Choudhary, Shweta Saran
    Journal: Biospectra
    DOI: 10.5281/ZENODO.14062730
    Publication Date: January 15, 2024

Mr. Anup Kodape – Biological Sciences – Best Researcher Award

Mr. Anup Kodape - Biological Sciences - Best Researcher Award

Academy of Scientific and Innovative Research - India

Author Profile

SCOPUS

ORCID

Early academic pursuits 🎓

Anup Ramdas Kodape’s academic journey began with a B.Sc. in Botany, Zoology, and Chemistry from Gondwana University, Gadchiroli. He further pursued an M.Sc. in Botany from HISLOP College, Nagpur, where he demonstrated a solid understanding of biological sciences. Currently, he is a Ph.D. candidate in Biological Sciences at CSIR-Central Food Technological Research Institute (CSIR-CFTRI), Mysore, under the Academy of Scientific and Innovative Research. His doctoral research focuses on food protectants and infestation control, particularly targeting the mitigation of aflatoxins in groundnut seeds.

Professional endeavors 🏢

Anup’s professional experience includes a diverse range of roles in both research and teaching. As a Senior Research Fellow at CSIR-CFTRI, Mysore, he is working on developing strategies to mitigate aflatoxins in groundnut seeds. His previous roles include Junior Research Fellow positions at both CSIR-CFTRI and CSIR-National Environmental Engineering Research Institute (NEERI). At NEERI, he worked on CO2 sequestration using algal photobioreactors and air pollution reduction. His teaching experience includes serving as an Assistant Professor at HISLOP College, where he conducted lectures and practicals in botany for undergraduate and postgraduate students.

Contributions and research focus 🔬

Anup’s research is primarily focused on food safety and environmental sustainability. His work at CSIR-CFTRI involves identifying fungal flora in groundnut seeds that produce aflatoxins and developing mitigation strategies using natural compounds, biocontrol, and endophytic challenges. His earlier work at CSIR-NEERI involved CO2 sequestration and air pollution management, showcasing his commitment to addressing Biological Sciences environmental issues through innovative approaches. His contributions significantly advance the understanding and management of aflatoxin contamination and environmental pollution.

Accolades and recognition 🏅

Anup has earned recognition for his academic and research achievements. He has qualified the GATE (Life Sciences) conducted by IIT Bombay Biological Sciences and the UGC NET JRF in Environmental Sciences, which highlights his proficiency in the field. His ongoing Ph.D. research is contributing valuable insights into food safety and environmental protection, garnering respect within the scientific community.

Impact and influence 🌍

Anup’s research has a substantial impact on both food safety and environmental sustainability. His work on aflatoxin mitigation is crucial for improving food security and safety, particularly in groundnut production. Additionally, his contributions to CO2 sequestration and air pollution Biological Sciences reduction are important for addressing global environmental challenges. His research influences practices in food technology and environmental engineering, benefiting both scientific and industrial communities.

Legacy and future contributions 🔮

Anup Ramdas Kodape is poised to leave a lasting legacy in the fields of food safety and environmental science. His innovative research on aflatoxin mitigation and environmental sustainability will likely continue to influence these areas significantly. As he advances in his career, his contributions are expected to further enhance food protection strategies and environmental management practices, contributing to global health and sustainability goals.

Notable Publications