In the everevolving world of biomedical science and engineering, the concept of cell encapsulation has revolutionized medical treatments and technologies. “Cell Encapsulation,” part of the Nanocapsule series, delves deep into the advanced techniques, applications, and innovations surrounding encapsulation and drug delivery systems. Whether you’re a professional in the field, an enthusiastic student, or a researcher, this book offers invaluable insights into how cell encapsulation plays a pivotal role in future medical advancements. The topics explored are relevant to not only those working in biomaterials but also those curious about the intersection of nanotechnology and human health
Cell encapsulation-An exploration of the fundamentals of cell encapsulation and its crucial role in controlled drug delivery
Nerve guidance conduit-Discusses how nerve regeneration and repair can benefit from encapsulated materials in nerve guidance
Microencapsulation-Focuses on microencapsulation technologies and their application in pharmaceuticals and vaccines
Biomaterial-A look at the types of biomaterials used in cell encapsulation, highlighting their properties and applications in medicine
Network of Excellence for Functional Biomaterials-Explores collaborative research networks and their contributions to functional biomaterials in cell encapsulation
Foreign body reaction-Details how the immune system responds to encapsulated materials and strategies to mitigate adverse reactions
Organ printing-Investigates the emerging field of 3D printing organs, emphasizing the role of encapsulation in successful bioprinting
Arginylglycylaspartic acid-Covers the role of this peptide in enhancing cell adhesion in tissue engineering and encapsulation
PLGA-Discusses the versatile polymer, PLGA, used in many encapsulation techniques, especially in drug delivery systems
Nanogel-Focuses on the use of nanogels in encapsulating cells and delivering active substances, revolutionizing treatment methods
Bioprinting drug delivery-Delves into how bioprinting technologies enable precise drug delivery using encapsulated cells
Artificial cell-An introduction to the development of artificial cells and their applications in biotechnology
Biopolymer-Examines biopolymers and their crucial role in creating biodegradable and biocompatible materials for cell encapsulation
Nanofiber-Describes the use of nanofibers in scaffolding for cell encapsulation and their role in tissue engineering
Tissue engineering of heart valves-Investigates how encapsulated cells are used in creating functional heart valves in tissue engineering
Hydrogel-Discusses hydrogels as a key material in encapsulation systems, particularly for tissue regeneration
Artificial bone-Focuses on the development of artificial bone tissue through encapsulated cells and biocompatible materials
Nanoscaffold-Covers the creation of nanoscaled scaffolds for cellular encapsulation and their use in regenerative medicine
Surface modification of biomaterials with proteins-Discusses how surface modifications with proteins enhance the performance of biomaterials in cell encapsulation
Thiomers-Explores thiomers, a class of materials with unique properties that improve cell encapsulation and stability
Medical textiles-An overview of how medical textiles can integrate cell encapsulation for improved health outcomes in wearable technologies
This book not only provides cuttingedge insights into cell encapsulation but also links it to a broader understanding of nanocapsules in medical science. With its accessible content and thorough breakdown of complex topics, this book is designed for professionals, students, and researchers alike. Invest in your knowledge and become a part of the next wave of innovations in biomedical engineering.