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Precision 3D Printing in Pharmaceutical Sciences (eBook)

A Transformative Shift in Drug Manufacturing and Delivery Systems
eBook Download: PDF
2025
521 Seiten
Wiley-Scrivener (Verlag)
978-1-394-33756-9 (ISBN)

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This book provides a roadmap for creating customized, precision drug delivery systems and advancing personalized medicine by introducing the revolutionary, transformative role of 3D printing technology in medicine.

The convergence of advanced manufacturing techniques with the complexities of pharmaceutical formulation has opened new frontiers of innovation, enabling unprecedented precision in drug delivery, tailored therapies, and complex dosage designs. From the creation of personalized drug formulations designed to meet the specific needs of individual patients to the development of complex, multi-functional drug delivery systems, the chapters within this volume explore a wide array of applications. This book is a groundbreaking resource that delves into the transformative role of 3D printing technology in the pharmaceutical field. Offering insights into customized and precision drug delivery systems, it highlights the synergy between advanced manufacturing techniques and pharmaceutical sciences. The book provides a balanced blend of theory and practical applications, presenting a roadmap for researchers and professionals to integrate 3D printing into their pharmaceutical processes. It discusses the role of innovative materials, cutting-edge technologies, and regulatory perspectives while highlighting the challenges and future trends in the field. By offering contributions from distinguished experts, the book serves as a comprehensive reference for understanding the potential of 3D printing to revolutionize drug delivery and advance personalized medicine.

Readers will find this volume:

  • Explores cutting-edge 3D printing applications in pharmaceutical sciences, emphasizing precision and innovation;
  • Covers practical and theoretical insights into customized drug delivery systems using 3D printing;
  • Includes detailed case studies and emerging trends for academic and industrial professionals;
  • Features contributions from leading experts and researchers in the field.

Audience

Pharmaceutical scientists, academics, industrial researchers, formulation chemists, biotechnology professionals, and students specializing in pharmaceutical technology, drug delivery systems, and biopharmaceuticals.

Kuldeep Vinchurkar, PhD, works in the Department of Pharmaceutics, Sandip Institute of Pharmaceutical Sciences, affiliated to Savitribai Phule Pune University, Nashik, Maharashtra, India with more than 11 years of research and teaching experience. He has published five books, seven patents, and more than 30 research and review publications in national and international journals. His research interests include 3D printing, artificial intelligence, and novel drug delivery systems, especially gastroretentive drug delivery.

Sheetal Mane, PhD is an Assistant Professor of Pharmaceutics at NMT Gujarati College of Pharmacy, Indore, Madhya Pradesh, India and has more than nine years of experience. She has published eight book chapters and 17 research papers in reputed journals and conferences. Her research focuses on novel drug delivery systems.

Dinesh Kumar Mishra, PhD is a Professor in the Department of Pharmacy at Guru Ghasidas Vishwavidyalaya with more than 20 years of experience in teaching, research, and administration. He holds three national patents and has authored five books, ten chapters, and more than 80 publications in peer-reviewed national and international journals. He specializes in novel drug delivery systems, particularly lipid-based nanocarriers, transdermal drug delivery, vaccines, and product development.


This book provides a roadmap for creating customized, precision drug delivery systems and advancing personalized medicine by introducing the revolutionary, transformative role of 3D printing technology in medicine. The convergence of advanced manufacturing techniques with the complexities of pharmaceutical formulation has opened new frontiers of innovation, enabling unprecedented precision in drug delivery, tailored therapies, and complex dosage designs. From the creation of personalized drug formulations designed to meet the specific needs of individual patients to the development of complex, multi-functional drug delivery systems, the chapters within this volume explore a wide array of applications. This book is a groundbreaking resource that delves into the transformative role of 3D printing technology in the pharmaceutical field. Offering insights into customized and precision drug delivery systems, it highlights the synergy between advanced manufacturing techniques and pharmaceutical sciences. The book provides a balanced blend of theory and practical applications, presenting a roadmap for researchers and professionals to integrate 3D printing into their pharmaceutical processes. It discusses the role of innovative materials, cutting-edge technologies, and regulatory perspectives while highlighting the challenges and future trends in the field. By offering contributions from distinguished experts, the book serves as a comprehensive reference for understanding the potential of 3D printing to revolutionize drug delivery and advance personalized medicine. Readers will find this volume: Explores cutting-edge 3D printing applications in pharmaceutical sciences, emphasizing precision and innovation; Covers practical and theoretical insights into customized drug delivery systems using 3D printing; Includes detailed case studies and emerging trends for academic and industrial professionals; Features contributions from leading experts and researchers in the field. Audience Pharmaceutical scientists, academics, industrial researchers, formulation chemists, biotechnology professionals, and students specializing in pharmaceutical technology, drug delivery systems, and biopharmaceuticals.
Erscheint lt. Verlag 27.10.2025
Reihe/Serie Sustainable Computing and Optimization
Sprache englisch
Themenwelt Naturwissenschaften Chemie
ISBN-10 1-394-33756-6 / 1394337566
ISBN-13 978-1-394-33756-9 / 9781394337569
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