This book emphasizes the importance of the extracellular matrix (ECM) in diseases and explains how this knowledge can be applied to tissue engineering.
This book emphasizes the importance of the extracellular matrix (ECM) in diseases and explains how this knowledge can be applied to tissue engineering.
This book presents a comprehensive exploration of the potential applications of natural biopolymeric composites in tissue engineering, regenerative medicine, and drug delivery.
This book presents a comprehensive exploration of the potential applications of natural biopolymeric composites in tissue engineering, regenerative medicine, and drug delivery.
This volume in the Cell Biology and Translational Medicine series continues to explore the promising applications of stem cells in regenerative medicine.
This volume in the Cell Biology and Translational Medicine series continues to explore the promising applications of stem cells in regenerative medicine.
This book highlights most advanced 3D printing techniques used for the manufacture of Bio-implants in regenerative medicine, the same behaviour these printed scaffolds have when they are biologically tested.
This book highlights most advanced 3D printing techniques used for the manufacture of Bio-implants in regenerative medicine, the same behaviour these printed scaffolds have when they are biologically tested.
Although nanotechnology applied to medicine has a potentially huge impact on drug delivery and tissue engineering, significant challenges need to be resolved before clinically viable nanomedicine or nanobiomedicine therapies will be available.
While the potential of stem cells is recognized, their proliferation and differentiation must be more precisely controlled to maximize the production of therapeutically relevant cells and for cell replacement therapies to minimize contamination with residual cells that can give rise to side effects.
With cardiovascular disease remaining one of the primary causes of morbidity and mortality worldwide, there is a great need to further understand the molecular basis of this disease class and develop new therapeutic or preventative measures.
Regenerative medicine aims to cure chronic intractable diseases by replacing malfunctioning cells and tissues with healthy ones and enhancing their repair and regeneration.
Regenerative medicine aims to cure chronic intractable diseases by replacing malfunctioning cells and tissues with healthy ones and enhancing their repair and regeneration.
This volume examines regenerative medicine (RM) through a global bioethics lens that foregrounds the structural asymmetries, epistemic exclusions, and governance disparities shaping its development and uptake.
The field of 3D bioprinting has witnessed significant growth over the past decade, with groundbreaking advances in the development of bioprinted tissues, organs, and implants.
The field of 3D bioprinting has witnessed significant growth over the past decade, with groundbreaking advances in the development of bioprinted tissues, organs, and implants.
This volume examines regenerative medicine (RM) through a global bioethics lens that foregrounds the structural asymmetries, epistemic exclusions, and governance disparities shaping its development and uptake.
This book provides a comprehensive and up-to-date overview of wound healing, from its biological foundations to the most advanced therapeutic frontiers.
This book provides a comprehensive and up-to-date overview of wound healing, from its biological foundations to the most advanced therapeutic frontiers.
This volume in the Cell Biology and Translational Medicine series continues to explore the promising applications of stem cells in regenerative medicine.
This volume in the Cell Biology and Translational Medicine series continues to explore the promising applications of stem cells in regenerative medicine.
This book presents a focused overview of biocompatible nanocomposites, emphasizing recent advancements in material design, synthesis techniques, and their expanding applications in biomedicine.