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

Assoc. Prof. Dr. Xincui Shi – Regenerative medical materials – Best Researcher Award 

Assoc. Prof. Dr. Xincui Shi - Regenerative medical materials - Best Researcher Award 

School of Chemistry and Environmental Engineering, Changchun University of Science and Technology - China 

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ORCID 

🎓 Early academic pursuits

Xincui Shi began her academic journey with a bachelor’s degree in organic chemistry from taishan university, shandong, china, in 2006. her strong foundational interest in polymer science led her to pursue a ph.d. in polymer chemistry and material science under the supervision of prof. yuesheng li at the state key laboratory of polymer physics and chemistry, changchun institute of applied chemistry, chinese academy of sciences. during her doctoral studies (2006–2011), she focused on organometallic synthesis and modification of polyolefins, gaining deep insights into stereospecific polymerization mechanisms. this solid academic base positioned her as a future leader in advanced materials and their applications in fields such as biomedical engineering and power electronics.

🧪 Professional endeavors

Xincui Shi has accumulated over a decade of research and teaching experience in prestigious chinese institutions. she currently serves as an associate professor at changchun university of science and technology, where she leads projects focused on recyclable elastomeric polyester materials and conductive biomaterials for wearable healthcare devices. her earlier career includes roles as an assistant research fellow and associate professor at the changchun institute of applied chemistry. under the guidance of renowned mentors like prof. peibiao zhang and prof. yanhou geng, she worked extensively on π-conjugated polymers, catalyst design, and living polymerization techniques, contributing to high-performance materials relevant to regenerative medicine and power electronics applications.

🔬 Contributions and research focus

Shi’s research is deeply rooted in polymer chemistry and material science, with particular emphasis on biodegradable and electroactive materials. her expertise lies in the design, synthesis, and functionalization of π-conjugated systems such as poly(3-hexylthiophene)s, block copolymers, and carbene-transition metal catalysts. notable contributions include her work on kumada Regenerative medical materials catalyst transfer polycondensation (kctp) for precision polymer synthesis and the development of conductive hydrogels for wearable sensors. her research addresses key challenges in nerve regeneration and tissue engineering, bridging the gap between polymer innovation and practical biomedical and power electronics applications.

🌍 Impact and influence

Xincui Shi's work holds substantial impact across interdisciplinary domains, especially in biomedical material design and environmentally friendly polymers. her contributions to the synthesis and modification of electroactive polyesters and scaffolds have advanced current approaches in neural repair. through her leadership in multiple research grants from the national natural Regenerative medical materials science foundation and educational commission of jilin province, she has nurtured scientific innovation and mentored the next generation of materials scientists. her interdisciplinary research, which merges chemical synthesis, materials engineering, and device application, is paving the way for new functional materials in emerging sectors like smart healthcare and power electronics.

📚 Academic cites

Shi has contributed to numerous peer-reviewed journals in polymer chemistry and materials science, with her publications frequently cited for their novelty and experimental precision. her work on controlled polymerization techniques, polyolefin copolymers, and conductive biomaterials is often referenced in studies related to sustainable material development and electrical Regenerative medical materials applications. her collaborations with experts from the chinese academy of sciences have yielded high-impact research that continues to influence both academic and industrial projects in polymers and power electronics.

🌱 Legacy and future contributions

With a career spanning over 15 years in research and academia, xincui shi is dedicated to fostering innovation in sustainable, functional polymer systems. her future work aims to deepen the understanding of structure–property relationships in biodegradable polyesters and their interface with biological systems. projects such as the construction of amphiphilic conductive fibrous scaffolds and non-conjugated conductive materials for neural injury repair signal a growing focus on translational science. by combining her knowledge of organic chemistry, polymer physics, and applied electronics, she is set to leave a lasting legacy in both academic research and real-world applications, especially in wearable biosensors and power electronics.

Notable Publications 

  • Title: A micropatterned conductive electrospun nanofiber mesh combined with electrical stimulation for synergistically enhancing differentiation of rat neural stem cells
    Author(s): Huanhuan Yan, Yu Wang, Linlong Li, Xiaosong Zhou, Xincui Shi, Yen Wei, Peibiao Zhang
    Journal: Journal of Materials Chemistry B

  • Title: Preparation of polycarbonate/gelatine microspheres using a high-voltage electrostatic technique for enhancing the adhesion and proliferation of mesenchymal stem cells
    Author(s): Chunxu Li, Linlong Li, Rui Ma, Zongliang Wang, Xincui Shi, Xiaoyu Yang, Yu Wang, Peibiao Zhang
    Journal: Journal of Materials Science

  • Title: Controlled synthesis of high molecular weight poly(3-hexylthiophene)s via Kumada catalyst transfer polycondensation with Ni(IPr)(acac)₂ as the catalyst
    Author(s): Xincui Shi
    Journal: (Journal name not provided—likely to be a chemistry or polymer science journal; please confirm source or DOI for precise citation)

  • Title: Kumada catalyst transfer polycondensation for controlled synthesis of polyfluorenes using 1,3-bis(diarylphosphino)propanes as ligands
    Author(s): Xincui Shi
    Journal: (Journal name not provided—please confirm source or DOI for accurate identification)

Ms. Mojdeh Rajabi – Tissue engineering – Best Researcher Award

Ms. Mojdeh Rajabi - Tissue engineering - Best Researcher Award

Amirkabir University of Technology - Iran

Author Profile

SCOPUS

Early academic pursuits 🎓

Mojdeh Rajabi's academic journey began with a strong foundation in materials science engineering, where she earned her B.Sc. from the University of Science & Technology in Tehran, Iran, in 1993. Her keen interest in mechanical engineering and innovation led her to pursue an M.Sc. in Mechanical Engineering at the University of Saskatchewan, Canada, which she completed in 1996. Building on this diverse academic background, she is currently a Ph.D. candidate in Biomedical Engineering at Amirkabir University of Technology (Tehran Polytechnic), focusing on tissue engineering.

Professional endeavors 💼

Throughout her career, Mojdeh has gained substantial experience in both academia and industry. She held leadership roles in various companies, including serving as the Manager of Quality Monitoring and Productivity at Alborz Apadana Steel from 2019 to 2023. She was also a Senior Project Manager at Materials Innovation & Process Engineering Consultants (MIPEC) between 2013 and 2019, where she worked on complex materials engineering projects. Additionally, Mojdeh's engineering expertise was honed at automotive giants such as Supplying Automotive Parts Corporation (SAPCO) and Zamyad Automotive Corporation, where she contributed to development, procurement, and design engineering.

Contributions and research focus 🔬

Mojdeh’s research is primarily focused on tissue engineering and biomedical applications, where she integrates her mechanical and materials science expertise. As a Ph.D. candidate, she is responsible for the Tissue Engineering Laboratory at Amirkabir University of Technology, where she conducts cutting-edge research in the development of biomaterials and regenerative medicine. Her work aims to bridge the gap between mechanical engineering and biology to advance medical Tissue engineering technologies that can improve the quality of life. Additionally, she co-authored the book "Neurocognitive mechanisms of attention," which explores computational models and their relevance in disease states.

Academic contributions 📚

In academia, Mojdeh has consistently contributed to the education of future engineers and researchers. She has taught B.Sc. courses in mechanical and biomedical engineering at Shahab Danesh University and the University of Applied Science & Technology in Tehran. Her teaching roles, coupled with her expertise in tissue Tissue engineering engineering, have enabled her to mentor students and foster the development of new talent in the biomedical field. Additionally, her work as a freelance editor of technical papers from 2018 to 2024 has further solidified her role in advancing academic excellence.

Accolades and recognition 🏅

Mojdeh Rajabi's academic and industrial work has garnered her recognition in both the engineering and biomedical communities. Her contributions to research and Tissue engineering development, particularly in the field of tissue engineering, have been published in reputable journals and books, with one of her most notable works being a co-authored publication in Academic Press on neurocognitive mechanisms of attention. Her extensive experience in both teaching and industry has made her a respected figure in her field, often sought for her expertise in quality monitoring, product development, and biomedical research.

Impact and influence 🌍

Mojdeh's work in tissue engineering and mechanical engineering continues to influence both research and industry. Her innovative approach to integrating mechanical engineering principles with biomedical applications has led to advancements in the development of new materials and medical devices. Additionally, her role in academia allows her to pass on her knowledge to the next generation of engineers, ensuring that her impact will be felt for years to come. Through her contributions to both industry and education, Mojdeh has become a key player in advancing biomedical and engineering technologies.

Legacy and future contributions 🔮

Looking ahead, Mojdeh Rajabi’s legacy is defined by her commitment to interdisciplinary research and education in the fields of engineering and biomedical sciences. Her ongoing Ph.D. research in tissue engineering promises to offer new insights into the development of materials that can be used in regenerative medicine, with the potential to revolutionize treatments for a variety of medical conditions. Mojdeh’s future contributions will undoubtedly continue to drive innovation, bridging the gap between mechanical engineering and the life sciences to create meaningful solutions for healthcare challenges.

Notable Publications 

  • Title: Sustained release of heparin from PLLA micropartricles for tissue engineering applications
    Authors: Rajabi, M., Shabani, I., Ahmadi Tafti, S.H., Shabani, A.
    Journal: Polymer Testing, 2024, Volume 140, Article 108628
  • Title: Neurocognitive Mechanisms of Attention: Computational Models, Physiology, and Disease States
    Authors: Baghdadi, G., Towhidkhah, F., Rajabi, M.
    Book: Neurocognitive Mechanisms of Attention: Computational Models, Physiology, and Disease States, 2021, pp. 1–427