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人成年间充质干细胞的生物学特性分析及其对小鼠后肢缺血的影响

Analysis of Biological Properties of Human Adult Mesenchymal Stem Cells and Their Effect on Mouse Hind Limb Ischemia.

作者信息

García-Vázquez María-Dolores, Herrero de la Parte Borja, García-Alonso Ignacio, Morales María-Celia

机构信息

Cell Culture Facility and Clean Room for Cell Therapies,Biocruces Health Research Institute, Barakaldo, Spain.

Department of Surgery and Radiology and Physical Medicine, University of the Basque Country, Leioa, Spain.

出版信息

J Vasc Res. 2019;56(2):77-91. doi: 10.1159/000498919. Epub 2019 May 10.

Abstract

BACKGROUND

Due to their self-renewal, proliferation, differentiation, and angiogenesis-inducing capacity, human adipose mesenchymal stem cells (AMSC) have potential clinical applications in the treatment of limb ischemia. AMSC from healthy donors have been shown to induce neovascularization in animal models. However, when cells were obtained from donors suffering from any pathology, their autologous application showed limited effectiveness. We studied whether liposuction niche and obesity could determine the regenerative properties of cells meaning that not all cell batches are suitable for clinical practice.

METHODS

AMSC obtained from 10 donors, obese and healthy, were expanded in vitro following a good manufacturing practice-like production protocol. Cell viability, proliferation kinetics, morphological analysis, phenotype characterization, and stemness potency were assessed over the course of the expansion process. AMSC selected for having the most suitable biological properties were used as an experimental treatment in a preclinical mouse model of hind limb ischemia.

RESULT

All cell batches were positively characterized as mesenchymal stem cells, but not all of them showed the same properties or were successfully expanded in vitro, depending on the characteristics of the donor and the extraction area. Notably, AMSC from the abdomen of obese donors showed undesirable biological properties. AMSC with low duplication times and multilineage differentiation potential and forming large densely packed colonies, were able, following expansion in vitro, to increase neovascularization and repair when implanted in the ischemic tissue of mice.

CONCLUSION

An extensive AMSC biological properties study could be useful to predict the potential clinical efficacy of cells before in vivo transplantation. Thus, peripheral ischemia and possibly other pathologies could benefit from stem cell treatments as shown in our preclinical model in terms of tissue damage repair and regeneration after ischemic injury.

摘要

背景

由于人类脂肪间充质干细胞(AMSC)具有自我更新、增殖、分化和诱导血管生成的能力,在肢体缺血治疗中具有潜在的临床应用价值。已证明来自健康供体的AMSC可在动物模型中诱导新血管形成。然而,当从患有任何疾病的供体获取细胞时,其自体应用显示出有限的有效性。我们研究了抽脂微环境和肥胖是否会决定细胞的再生特性,这意味着并非所有细胞批次都适合临床实践。

方法

从10名肥胖和健康供体获取的AMSC按照类似药品生产质量管理规范的生产方案进行体外扩增。在扩增过程中评估细胞活力、增殖动力学、形态分析、表型特征和干性潜能。选择具有最合适生物学特性的AMSC用于后肢缺血的临床前小鼠模型的实验治疗。

结果

所有细胞批次均被阳性鉴定为间充质干细胞,但并非所有批次都表现出相同的特性,也并非都能在体外成功扩增,这取决于供体的特征和提取部位。值得注意的是,来自肥胖供体腹部的AMSC表现出不良的生物学特性。具有低倍增时间、多谱系分化潜能并形成大的密集菌落的AMSC在体外扩增后,植入小鼠缺血组织时能够增加新血管形成并促进修复。

结论

在体内移植前,对AMSC生物学特性进行广泛研究可能有助于预测细胞的潜在临床疗效。因此,如我们的临床前模型所示,外周缺血以及可能的其他疾病在缺血性损伤后的组织损伤修复和再生方面可能会从干细胞治疗中受益。

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