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脂肪疗法:脂肪来源干细胞和外泌体对人类疾病及组织再生的临床作用

Fat Therapeutics: The Clinical Capacity of Adipose-Derived Stem Cells and Exosomes for Human Disease and Tissue Regeneration.

作者信息

Shukla Lipi, Yuan Yinan, Shayan Ramin, Greening David W, Karnezis Tara

机构信息

O'Brien Institute Department, St Vincent's Institute for Medical Research, Fitzroy, VIC, Australia.

Department of Plastic Surgery, St Vincent's Hospital, Fitzroy, VIC, Australia.

出版信息

Front Pharmacol. 2020 Mar 3;11:158. doi: 10.3389/fphar.2020.00158. eCollection 2020.

Abstract

Fat grafting is a well-established surgical technique used in plastic surgery to restore deficient tissue, and more recently, for its putative regenerative properties. Despite more frequent use of fat grafting, however, a scientific understanding of the mechanisms underlying either survival or remedial benefits of grafted fat remain lacking. Clinical use of fat grafts for breast reconstruction in tissues damaged by radiotherapy first provided clues regarding the clinical potential of stem cells to drive tissue regeneration. Healthy fat introduced into irradiated tissues appeared to reverse radiation injury (fibrosis, scarring, contracture and pain) clinically; a phenomenon since validated in several animal studies. In the quest to explain and enhance these therapeutic effects, adipose-derived stem cells (ADSCs) were suggested as playing a key role and techniques to enrich ADSCs in fat, in turn, followed. Stem cells - the body's rapid response 'road repair crew' - are on standby to combat tissue insults. ADSCs may exert influences either by releasing paracrine-signalling factors alone or as cell-free extracellular vesicles (EVs, exosomes). Alternatively, ADSCs may augment vital immune/inflammatory processes; or themselves differentiate into mature adipose cells to provide the 'building-blocks' for engineered tissue. Regardless, adipose tissue constitutes an ideal source for mesenchymal stem cells for therapeutic application, due to ease of harvest and processing; and a relative abundance of adipose tissue in most patients. Here, we review the clinical applications of fat grafting, ADSC-enhanced fat graft, fat stem cell therapy; and the latest evolution of EVs and nanoparticles in healing, cancer and neurodegenerative and multiorgan disease.

摘要

脂肪移植是整形外科中一种成熟的外科技术,用于修复组织缺损,近年来,因其假定的再生特性而被广泛应用。然而,尽管脂肪移植的使用越来越频繁,但对于移植脂肪存活或修复益处背后的机制仍缺乏科学认识。脂肪移植在放疗受损组织中用于乳房重建的临床应用首次提供了关于干细胞驱动组织再生临床潜力的线索。临床研究发现,将健康脂肪引入受辐射组织似乎能逆转辐射损伤(纤维化、瘢痕形成、挛缩和疼痛);这一现象在多项动物研究中得到了证实。为了解释和增强这些治疗效果,有人提出脂肪来源干细胞(ADSCs)发挥了关键作用,随后出现了在脂肪中富集ADSCs的技术。干细胞——身体快速反应的“道路维修队”——随时准备应对组织损伤。ADSCs可能通过单独释放旁分泌信号因子或作为无细胞细胞外囊泡(EVs,外泌体)发挥作用。或者,ADSCs可能增强重要的免疫/炎症过程;或者它们自身分化为成熟脂肪细胞,为工程组织提供“构建模块”。无论如何,由于易于获取和处理,以及大多数患者脂肪组织相对丰富,脂肪组织是用于治疗应用的间充质干细胞的理想来源。在这里,我们综述了脂肪移植、ADSC增强脂肪移植、脂肪干细胞治疗的临床应用;以及EVs和纳米颗粒在愈合、癌症、神经退行性疾病和多器官疾病方面的最新进展。

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