New Horizons in Stem Cell Research

D. Choi
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引用次数: 1

Abstract

generate injured tissues and organs in the body. Therefore, this special issue has been published to review the clinical implication of using various stem cell types (from pluripotent to adult including direct differentiated cells) to heal patients suffering from chronic human disorders such as cerebrovascular diseases, chronic liver diseases, cardiovascular disorders, musculoskeletal diseases, and fatal cancers. The emergence of human embryonic stem cell (ESC) lines is one of the most important achievements in the biological sciences during the previous century and has raised a broad scientific and social interest as it is believed embryonic stem cells can be utilized in the near future as a powerful source of material for cell transplantation in regenerative medicine. Studies with human ESC have enabled us to elucidate the gene expression patterns related to pluripotency and to initiate basic research allowing medical scientists to create induced pluripotent stem cells by several methods. Understanding genetic manipulation that can direct stem cells to develop into various lineages of terminally differentiated cells enable us directly to make differentiated cells from various cell sources. In terms of clinical application, adult stem cells including mesenchymal stem cells have become a central focus in the real world. The establishment of an outstanding research laboratory for stem cell research and regenerative medicine involves translational research including the development of Good Manufacturing Practice (GMP) and clean room facilities in companies and medical schools. Further development and the establishment of systems for the production of autologous adult stem cells for clinical usage increase our capabilities for treating patients who have suffered from chronic diseases.
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干细胞研究的新视野
在体内产生受伤的组织和器官。因此,本期特刊将回顾利用各种干细胞类型(从多能干细胞到成人干细胞,包括直接分化细胞)治疗慢性人类疾病(如脑血管疾病、慢性肝病、心血管疾病、肌肉骨骼疾病和致命癌症)的临床意义。人类胚胎干细胞(ESC)系的出现是上个世纪生物科学领域最重要的成就之一,并引起了广泛的科学和社会兴趣,因为人们相信胚胎干细胞在不久的将来可以作为再生医学中细胞移植的强大材料来源。对人类ESC的研究使我们能够阐明与多能性相关的基因表达模式,并启动基础研究,使医学科学家能够通过几种方法创建诱导多能性干细胞。了解基因操纵可以指导干细胞发育成各种终末分化细胞谱系,使我们能够直接从各种细胞来源制造分化细胞。在临床应用方面,包括间充质干细胞在内的成体干细胞已成为现实世界的中心焦点。建立一个卓越的干细胞研究和再生医学研究实验室涉及转化研究,包括在公司和医学院开发良好生产规范(GMP)和无尘室设施。进一步发展和建立用于临床的自体成体干细胞生产系统,提高了我们治疗慢性疾病患者的能力。
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