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In vivo reprogramming in regenerativ...
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Yilmazer, Acelya.
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In vivo reprogramming in regenerative medicine
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
In vivo reprogramming in regenerative medicine/ edited by Acelya Yilmazer.
其他作者:
Yilmazer, Acelya.
出版者:
Cham :Springer International Publishing : : 2017.,
面頁冊數:
xvii, 103 p. :ill., digital ;24 cm.
內容註:
Chapter 1. Introduction to in vivo cell Reprogramming Technology -- Chapter 2. In vivo Reprogramming for Regenerating Insulin-Secreting Cells -- Chapter 3. Direct Reprogramming to Beta Cells -- Chapter 4. In vivo Lineage Reprogramming of Fibroblasts to Cardiomyocytes for Heart Regeneration -- Chapter 5: In vivo cell Reprogramming for Long-term Pluripotency -- Chapter 6: In vivo Transient Reprogramming Towards Pluripotency for Tissue Repair and Regeneration -- Chapter 7. Challenges and Future Perspectives for in vivo Reprogramming Technology.
Contained By:
Springer eBooks
標題:
Regenerative medicine. -
電子資源:
http://dx.doi.org/10.1007/978-3-319-65720-2
ISBN:
9783319657202
In vivo reprogramming in regenerative medicine
In vivo reprogramming in regenerative medicine
[electronic resource] /edited by Acelya Yilmazer. - Cham :Springer International Publishing :2017. - xvii, 103 p. :ill., digital ;24 cm. - Stem cell biology and regenerative medicine,2196-8985. - Stem cell biology and regenerative medicine..
Chapter 1. Introduction to in vivo cell Reprogramming Technology -- Chapter 2. In vivo Reprogramming for Regenerating Insulin-Secreting Cells -- Chapter 3. Direct Reprogramming to Beta Cells -- Chapter 4. In vivo Lineage Reprogramming of Fibroblasts to Cardiomyocytes for Heart Regeneration -- Chapter 5: In vivo cell Reprogramming for Long-term Pluripotency -- Chapter 6: In vivo Transient Reprogramming Towards Pluripotency for Tissue Repair and Regeneration -- Chapter 7. Challenges and Future Perspectives for in vivo Reprogramming Technology.
There have been significant improvements in the development of cell based therapies; however, current treatment strategies still suffer from some problems: the need for long in vitro culture conditions, inefficient delivery of cells by scaffolds and low incorporation and grafting efficiencies. Therefore, in vivo reprogramming has emerged as a novel treatment technology. In the process of in vivo reprogramming, cells switch to another cell type within the living organism. Leaders in the field discuss how in vivo reprogramming can be used for tissue repair and regeneration in different organs, including pancreas, liver and heart. Furthermore, recent studies on in vivo cell reprogramming towards pluripotency are also reviewed. Current challenges of these preclinical studies are discussed and hypothesis and suggestions are given in order to improve the current strategies to achieve translation into clinic.
ISBN: 9783319657202
Standard No.: 10.1007/978-3-319-65720-2doiSubjects--Topical Terms:
1002441
Regenerative medicine.
LC Class. No.: R856
Dewey Class. No.: 610.28
In vivo reprogramming in regenerative medicine
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Chapter 1. Introduction to in vivo cell Reprogramming Technology -- Chapter 2. In vivo Reprogramming for Regenerating Insulin-Secreting Cells -- Chapter 3. Direct Reprogramming to Beta Cells -- Chapter 4. In vivo Lineage Reprogramming of Fibroblasts to Cardiomyocytes for Heart Regeneration -- Chapter 5: In vivo cell Reprogramming for Long-term Pluripotency -- Chapter 6: In vivo Transient Reprogramming Towards Pluripotency for Tissue Repair and Regeneration -- Chapter 7. Challenges and Future Perspectives for in vivo Reprogramming Technology.
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There have been significant improvements in the development of cell based therapies; however, current treatment strategies still suffer from some problems: the need for long in vitro culture conditions, inefficient delivery of cells by scaffolds and low incorporation and grafting efficiencies. Therefore, in vivo reprogramming has emerged as a novel treatment technology. In the process of in vivo reprogramming, cells switch to another cell type within the living organism. Leaders in the field discuss how in vivo reprogramming can be used for tissue repair and regeneration in different organs, including pancreas, liver and heart. Furthermore, recent studies on in vivo cell reprogramming towards pluripotency are also reviewed. Current challenges of these preclinical studies are discussed and hypothesis and suggestions are given in order to improve the current strategies to achieve translation into clinic.
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