iPSCs in Tissue Engineering
iPSCs in Tissue Engineering
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- More about iPSCs in Tissue Engineering
The book "iPSCs in Tissue Engineering,Volume 11" discusses the use of induced pluripotent stem cells (iPSCs) in tissue engineering, covering their generation for various tissues and organs. Written by renowned authors, it is a valuable resource for researchers and scientists in stem cell therapy, cell biology, regenerative medicine, and tissue engineering.
Format: Paperback / softback
Length: 430 pages
Publication date: 17 August 2021
Publisher: Elsevier Science Publishing Co Inc
The series Advances in Stem Cell Biology is a timely and comprehensive collection of cutting-edge information and groundbreaking discoveries in the field of stem cell biology.
In the context of tissue engineering, the volume titled iPSCs in Tissue Engineering, Volume 11 delves into the emerging applications of induced pluripotent stem cells (iPSCs). Somatic cells, which are cells derived from the body's tissues, can be reprogrammed into iPSCs by expressing specific transcription factors. Over the past 15 years, these cells have revolutionized biomedical research.
This book aims to provide a comprehensive exploration of the advancements in research regarding the utilization of iPSCs for the generation of diverse tissues and organs, including but not limited to the lungs, trachea, salivary glands, skeletal muscle, liver, intestine, kidney, and even the brain. Written by esteemed authors from around the world, this volume caters to researchers and scientists with interests in stem cell therapy, cell biology, regenerative medicine, and tissue engineering.
The utilization of iPSCs holds immense potential for advancing medical treatments and therapies. By harnessing the ability to reprogram somatic cells into iPSCs, researchers can create personalized cells that can be used to replace damaged or diseased tissues. This has the potential to revolutionize the field of regenerative medicine and lead to new treatments for a wide range of diseases.
Furthermore, iPSCs can be used to study human development and disease in a more precise and controlled manner. By generating iPSCs from patients with specific genetic disorders or diseases, researchers can study the underlying causes of these conditions and develop new therapies that target the root cause of the disease.
In conclusion, the series Advances in Stem Cell Biology and the volume titled iPSCs in Tissue Engineering, Volume 11 are essential resources for researchers and scientists seeking to stay at the forefront of this rapidly evolving field. By providing comprehensive information and groundbreaking discoveries, these books contribute to the understanding of stem cell biology and its potential applications in tissue engineering and regenerative medicine.
Weight: 908g
Dimension: 192 x 235 x 25 (mm)
ISBN-13: 9780128238097
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