Assoc. Prof. Dr. Jun Xiu sheng – Cancer treatment – Best Researcher Award

Assoc. Prof. Dr. Jun Xiu sheng - Cancer treatment - Best Researcher Award

The First Affiliated Hospital of Dalian Medical University - China 

Author Profile 

SCOPUS 

ORCID 

🎓 Early academic pursuits

Jun Xiu sheng began his academic journey with a strong foundation in clinical medicine. from 2006 to 2011, he pursued a seven-year undergraduate program in clinical medicine at dalian medical university, followed by graduate studies from 2011 to 2013 at the same institution. in 2013, he embarked on a ph.d. in oncology at the graduate school of dalian medical university, sharpening his focus on cancer biology and therapy. his academic path was further enriched through a prestigious exchange scholar program at the medical university of wisconsin, usa, from 2015 to 2016, where he gained international exposure and research insight.

🩺 Professional endeavors

After completing his advanced education, jun xiu sheng joined the first affiliated hospital of dalian medical university. he served as a resident in the department of radiotherapy from 2016 to 2018 and quickly rose through the ranks to become an attending physician (2018–2020). since december 2020, he has held the position of deputy chief physician, where he also serves as an associate professor. his clinical expertise lies in radiation oncology, contributing to the development of novel therapeutic strategies in cancer care. jun xiu sheng’s interest in interdisciplinary approaches, including those inspired by power electronics systems, has made his clinical methods highly adaptive and innovative.

🔬 Contributions and research focus

With a ph.d. in oncology, jun xiu sheng has dedicated his research efforts to understanding the molecular and cellular mechanisms behind tumor resistance and radiotherapy. his recent work explores how melatonin modulates rna splicing in esophageal cancer cells, potentially increasing radiotherapy sensitivity. melatonin, known for its use in treating central nervous system Cancer treatment diseases, has shown promise in suppressing tumor growth. through bioinformatics and rna-seq analysis, jun xiu sheng has investigated the role of variable splicing in radiation resistance, aiming to unlock therapeutic pathways to improve cancer treatment outcomes. integrating ideas from power electronics systems, he also explores regulatory networks in tumor biology.

🌍 Impact and influence

Jun Xiu sheng’s research has not only advanced our understanding of cancer biology but also influenced therapeutic strategies in radiation oncology. by uncovering mechanisms related to rna Cancer treatment variable splicing and the effects of melatonin on tumor cells, he has provided critical insight into resistance pathways. his collaborative roles in national-level projects, including the national natural science foundation of china, have elevated his profile within the academic and medical communities. his interdisciplinary thinking, including applying models from power electronics, offers new paradigms in cancer signal processing and therapy modulation.

📚 Academic cites

Jun Xiu sheng has participated in several major research projects. he contributed to a study on circular rna generation funded by the national natural science foundation of china, and another Cancer treatment on the function of rna variable splicing in tumor radiotherapy resistance. as a principal investigator, he led projects on aspirin-induced rna splicing in lung cancer and on the immune regulation of head and neck squamous cell carcinoma (hnscc). his ongoing research into esophageal cancer immunotherapy and prognosis demonstrates a sustained commitment to scholarly contribution and scientific innovation.

🧬 Legacy and future contributions

Looking forward, jun xiu sheng is committed to deepening his exploration of tumor microenvironments, radiotherapy resistance mechanisms, and immune system interactions in cancer. his current projects funded by liaoning provincial programs and education departments reflect his active role in shaping the future of oncology. he envisions integrating computational and systemic models—akin to feedback loops found in power electronics—to decode complex biological responses in tumors. his legacy will be defined by a blend of rigorous scientific inquiry, clinical excellence, and forward-thinking applications in precision medicine.

Notable Publications 

Title: The role of oncostatin M in esophageal cancer and its potential as a prognostic marker
Author(s): Guangxiang Ding, Xianwei Li, Hongtao Yin, Bing Sun, Junxiu Sheng
Journal: Computers in Biology and Medicine, 2025

Dr. Vikas Shukla – Nanomedicine and Immunology – Best Researcher Award

Dr. Vikas Shukla - Nanomedicine and Immunology - Best Researcher Award

AIIMS, New Delhi - India 

Author Profile

GOOGLE SCHOLAR 

Early academic pursuits 📚

Vikas Shukla's academic journey began with a deep-rooted passion for nanobiotechnology and immunology. He dedicated himself to gaining a solid foundation in the life sciences, eventually leading him to pursue advanced studies in these cutting-edge fields. His education, characterized by rigorous training, provided the tools necessary for his future contributions to scientific research. Over the years, vikas built an impressive knowledge base in bacterial culture, cell culture, and immunoassays, which would serve as the backbone of his research career.

Professional endeavors 🏢

currently serving as a research scientist-II at the all india institute of medical sciences (aiims) in new delhi, india, vikas brings over 8 years of extensive experience to the forefront. His role at aiims, within the department of plastic, reconstructive & burns surgery, involves not only laboratory-based research but also project management. This balance between hands-on science and overseeing project timelines ensures that he contributes effectively to the scientific and clinical goals of his department.

Contributions and research focus 🔬

Vikas's research primarily revolves around nanobiotechnology and immunology, with a keen focus on innovative solutions in medical science. He has demonstrated exceptional expertise in bacterial culture, cell culture, immunoassays, and small animal handling. His work seeks to bridge the gap between complex scientific Nanomedicine and Immunology theories and their real-world applications, particularly in healthcare. Vikas’s research outputs have helped advance understanding in both fundamental immunological responses and the application of nanotechnology in therapeutic treatments.

Accolades and recognition 🏅

throughout his career, vikas has received commendations for his meticulous work and contributions to the field. His ability to keep projects both on time and on Nanomedicine and Immunology budget while maintaining high scientific standards has not gone unnoticed. He is widely recognized among his peers and colleagues for his diligence, precision, and ability to translate complex scientific concepts into more accessible knowledge. His exceptional communication skills have further bolstered his reputation as a skilled researcher and project manager.

Impact and influence 🌍

Vikas’s research holds significant implications for the fields of immunology and nanobiotechnology, particularly within clinical settings. His work on developing innovative medical treatments and enhancing immunological responses has the potential to save lives and improve patient outcomes. His influence extends beyond the laboratory, as his project management skills ensure that critical research is completed efficiently, benefiting both the scientific community and society as a whole.

Legacy and future contributions 🔮

looking ahead, Vikas Shukla’s legacy will likely be defined by his contributions to advancing the use of nanotechnology in medicine. His ongoing work at aiims and within the broader scientific community will continue to impact the development of new therapeutic approaches and enhance our understanding of immune Nanomedicine and Immunology responses. His commitment to pushing the boundaries of science while managing complex projects ensures that his influence will be felt for years to come.

Notable Publications 

Smart Drug-Delivery Systems in the Treatment of Rheumatoid Arthritis: Current, Future Perspectives  2021

Dynamic light scattering (DLS) particle size analysis for biomedical nanotechnology  2023

Downmodulation of lysophosphatidic acid by Berberine loaded folate-conjugated glycol chitosan nanoparticles  2022

Therapeutic use of mesenchymal stem cells against SARS-Cov-2: present and future prospects  2022

Phytomedicine Meets Nanotechnology: A Cellular Approach to Rheumatoid Arthritis Treatment 2024