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再生医学中的干细胞重编程。

Reprogramming stem cells in regenerative medicine.

作者信息

Mao Jiayi, Saiding Qimanguli, Qian Shutong, Liu Zhimo, Zhao Binfan, Zhao Qiuyu, Lu Bolun, Mao Xiyuan, Zhang Liucheng, Zhang Yuguang, Sun Xiaoming, Cui Wenguo

机构信息

Department of Plastic and Reconstructive Surgery Shanghai Ninth People's Hospital Shanghai Jiao Tong University School of Medicine Shanghai China.

Department of Orthopaedics Shanghai Key Laboratory for Prevention and Treatment of Bone and Joint Diseases Shanghai Institute of Traumatology and Orthopaedics Ruijin Hospital Shanghai Jiao Tong University School of Medicine Shanghai China.

出版信息

Smart Med. 2022 Dec 25;1(1):e20220005. doi: 10.1002/SMMD.20220005. eCollection 2022 Dec.

Abstract

Induced pluripotent stem cells (iPSCs) that are generated from adult somatic cells are induced to express genes that make them pluripotent through reprogramming techniques. With their unlimited proliferative capacity and multifaceted differentiation potential and circumventing the ethical problems encountered in the application of embryonic stem cells (ESC), iPSCs have a broad application in the fields of cell therapy, drug screening, and disease models and may open up new possibilities for regenerative medicine to treat diseases in the future. In this review, we begin with different reprogramming cell technologies to obtain iPSCs, including biotechnological, chemical, and physical modulation techniques, and present their respective strengths, and limitations, as well as the recent progress of research. Secondly, we review recent research advances in iPSC reprogramming-based regenerative therapies. iPSCs are now widely used to study various clinical diseases of hair follicle defects, myocardial infarction, neurological disorders, liver diseases, and spinal cord injuries. This review focuses on the translational clinical research around iPSCs as well as their potential for growth in the medical field. Finally, we summarize the overall review and look at the potential future of iPSCs in the field of cell therapy as well as tissue regeneration engineering and possible problems. We believe that the advancing iPSC research will help drive long-awaited breakthroughs in cellular therapy.

摘要

通过重编程技术,由成体细胞产生的诱导多能干细胞(iPSC)被诱导表达使其具有多能性的基因。iPSC具有无限的增殖能力和多方面的分化潜能,并且规避了胚胎干细胞(ESC)应用中遇到的伦理问题,在细胞治疗、药物筛选和疾病模型等领域具有广泛的应用,可能为未来再生医学治疗疾病开辟新的可能性。在这篇综述中,我们首先介绍了获得iPSC的不同重编程细胞技术,包括生物技术、化学和物理调控技术,并阐述了它们各自的优势、局限性以及研究的最新进展。其次,我们综述了基于iPSC重编程的再生疗法的最新研究进展。目前,iPSC被广泛用于研究各种临床疾病,如毛囊缺陷、心肌梗死、神经疾病、肝脏疾病和脊髓损伤。本综述重点关注围绕iPSC的转化临床研究及其在医学领域的发展潜力。最后,我们总结了整个综述,展望了iPSC在细胞治疗以及组织再生工程领域的潜在未来和可能存在的问题。我们相信,不断推进的iPSC研究将有助于推动细胞治疗领域期待已久的突破。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bf2/11235200/72bf91ed1c81/SMMD-1-e20220005-g011.jpg

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