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Dr. Arvind Kumar Shukla

Department of Biomedical Convergence Engineering · Pusan National University

https://researchid.co/arvind.shukla
@pusan.ac.kr
18Scopus Publications
422Google Scholar Citations
10Google Scholar h-index
11Google Scholar i10-index

Research Interests

Dr. Arvind Kumar Shukla is working on the molecular mechanism of cancer stem cell biology. He is the main focus in the fabrication of functional tissue and organ development by 3D bioprinting, with a study on stem cells & cancer signaling pathways, and also fo...

Biography

Dr. Arvind Kumar Shukla is working on the molecular mechanism of cancer stem cell biology. He is the main focus in the fabrication of functional tissue and organ development by 3D bioprinting, with a study on stem cells & cancer signaling pathways, and also focuses on various cancer drug delivery methods that are used and tested clinically for treatment.

Education

Doctor of Philosophy (Ph.D.) in Biomedical Convergence Engineering Specialization: 3D Bioprinting, Organ-on-a-Chip (OOC), Stem Cells, Cancer Pusan National University, Busan, South Korea February 2020 – August 2025 Master of Business Administration (MBA) in Health Care Management Dr. D.Y. Patil Vidyapeeth, Pune, India July 2022 – August 2024 Master of Science (M.Sc.) in Genetic Engineering Focus: HIV, Stem Cells, Cancer Dr. D.Y. Patil University, Mumbai, India July 2012 – July 2014 Bachelor of Science (B.Sc.) in Zoology and Environmental Science University of Mumbai, Mumbai, India Februa...

Recent Scopus Publications

  1. Exploring the angiogenic potential of skin patches with endothelial cell patterns fabricated via in-bath 3D bioprinting using light-activated bioink for enhanced wound healing
    Biomaterials, 2026
  2. Integrating 3D Bioprinting with Organoid Technology-Based Breast Cancer Models for Drug Evaluation
    Organoids, 2025
  3. High-Throughput 3D Bioprinted Organoids of Skin Cancer Utilized for Diagnosis and Personalized Therapy
    Current Oncology, 2025
  4. 3D Bioprinting-Assisted Engineering of Stem Cell-Laden Hybrid Biopatches With Distinct Geometric Patterns Considering the Mechanical Characteristics of Regular and Irregular Connective Tissues
    Advanced Healthcare Materials, 2025
  5. Targeting Pathways and Mechanisms in Gynecological Cancer with Antioxidant and Anti-Inflammatory Phytochemical Drugs
    Onco, 2025

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