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脂肪干细胞的方法和程序:转化医学的现状和展望。

Methods and procedures in adipose stem cells: state of the art and perspective for translation medicine.

机构信息

Multidisciplinary Department of Medical-Surgical and Dental Specialties, Second University of Naples, Naples, Italy.

出版信息

J Cell Physiol. 2015 Mar;230(3):489-95. doi: 10.1002/jcp.24837.

Abstract

Stem cells have potential in the retrieval and repair of injured tissue and renovation of organ function. To date, several studies have been carried out to elucidate how differentiation of stem cells can be used in regenerative medicine applications. Adipose tissue is an abundant and accessible source of stem cell, useful for regenerative therapeutic use. Adipose stem cells (ASCs) are favorable for future translational research and can be applied in many clinical settings. Adipose tissue repair has been recently adopted in clinical trials to prove that ASCs can be successfully used in patients. Variability in cell culture procedures (isolation, characterization, and differentiation) may have an influence on the experimental outcome. In this report, we consider the selection mechanisms of ASCs using flow cytometry, cell culture, freezing/thawing, cell cycle evaluation, histochemistry/immunofluorescence, and differentiation of ASCs. Both researchers and regulatory institutions should consider a new policy for GMP procedures and protocols, paying special attention to stem cell bio-physiology, to facilitate more clinically oriented studies. ASCs show angiogenic properties, with prospects of repairing tissue damaged by radiotherapy, as well as possessing the ability to heal chronic wounds. They can also be useful in surgical practice. We focus on the potential clinical application of ASCs that are currently available regarding translational medicine and the methods and procedures for their isolation, differentiation, and characterization.

摘要

干细胞在受伤组织的检索和修复以及器官功能的更新方面具有潜力。迄今为止,已经进行了多项研究来阐明如何将干细胞的分化应用于再生医学应用中。脂肪组织是干细胞的丰富且易于获得的来源,可用于再生治疗用途。脂肪干细胞(ASCs)有利于未来的转化研究,并可应用于许多临床环境中。脂肪组织修复最近已被用于临床试验,以证明 ASCs 可以成功用于患者。细胞培养程序(分离、鉴定和分化)的变异性可能会对实验结果产生影响。在本报告中,我们考虑了使用流式细胞术、细胞培养、冷冻/解冻、细胞周期评估、组织化学/免疫荧光和 ASC 分化对 ASCs 的选择机制。研究人员和监管机构都应考虑为 GMP 程序和方案制定新政策,特别关注干细胞的生物生理学,以促进更具临床导向的研究。ASCs 具有血管生成特性,有望修复放射治疗引起的组织损伤,并且具有治愈慢性伤口的能力。它们在外科手术中也很有用。我们专注于目前可用于转化医学的 ASCs 的潜在临床应用,以及它们的分离、分化和鉴定的方法和程序。

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