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与密度梯度技术相比,使用符合GMP标准的织物过滤系统可以生产出更多具有相似亚群组成和功能特性的人骨髓间充质干细胞。

More Human BM-MSC With Similar Subpopulation Composition and Functional Characteristics Can Be Produced With a GMP-Compatible Fabric Filter System Compared to Density Gradient Technique.

作者信息

Spohn Gabriele, Witte Anne-Sophie, Kretschmer Anja, Seifried Erhard, Schäfer Richard

机构信息

Institute for Transfusion Medicine and Immunohematology, Goethe University Hospital, German Red Cross Blood Service Baden-Württemberg-Hessen gGmbH, Frankfurt am Main, Germany.

出版信息

Front Cell Dev Biol. 2021 Mar 29;9:638798. doi: 10.3389/fcell.2021.638798. eCollection 2021.

Abstract

BACKGROUND

Mesenchymal stromal cells (MSCs), multipotent progenitors that can be isolated from a variety of different tissues, are becoming increasingly important as cell therapeutics targeting immunopathologies and tissue regeneration. Current protocols for MSC isolation from bone marrow (BM) rely on density gradient centrifugation (DGC), and the production of sufficient MSC doses is a critical factor for conducting clinical MSC trials. Previously, a Good Manufacturing Practice (GMP)-compatible non-woven fabric filter device system to isolate MSCs was developed to increase the MSC yield from the BM. The aim of our study was to compare high-resolution phenotypic and functional characteristics of BM-MSCs isolated with this device and with standard DGC technology.

METHODS

Human BM samples from 5 donors were analyzed. Each sample was divided equally, processing by DGC, and with the filter device. Stem cell content was assessed by quantification of colony-forming units fibroblasts (CFU-F). Immunophenotype was analyzed by multicolor flow cytometry. trilineage differentiation potential, trophic factors, and IDO-1 production were assessed. Functionally, immunomodulatory potential, wound healing, and angiogenesis were assayed .

RESULTS

The CFU-F yield was 15-fold higher in the MSC preparations isolated with the device compared to those isolated by DGC. Consequently, the MSC yield that could be manufactured at passage 3 per mL collected BM was more than 10 times higher in the device group compared to DGC (1.65 × 10 vs. 1.45 × 10). The immunomodulatory potential and IDO-1 production showed donor-to-donor variabilities without differences between fabric filter-isolated and DGC-isolated MSCs. The results from the wound closure assays, the tube formation assays, and the trilineage differentiation assays were similar between the groups with respect to the isolation method. Sixty-four MSC subpopulations could be quantified with CD140aCD119CD146 as most common phenotype group, and CD140aCD119CD146MSCA-1CD106CD271 and CD140aCD119CD146MSCA-1CD106CD271 as most frequent MSC subpopulations. As trophic factors hepatocyte growth factor, epidermal growth factor, brain-derived neurotrophic factor, angiopoietin-1, and vascular endothelial growth factor A could be detected in both groups with considerable variability between donors, but independent of the respective MSC isolation technique.

CONCLUSION

The isolation of MSCs using a GMP-compatible fabric filter system device resulted in higher yield of CFU-F, producing substantially more MSCs with similar subpopulation composition and functional characteristics as MSCs isolated by DGC.

摘要

背景

间充质基质细胞(MSCs)是一种多能祖细胞,可从多种不同组织中分离得到,作为针对免疫病理和组织再生的细胞疗法,其重要性日益凸显。目前从骨髓(BM)中分离MSCs的方案依赖于密度梯度离心(DGC),而生产足够剂量的MSCs是开展MSCs临床试验的关键因素。此前,已开发出一种符合药品生产质量管理规范(GMP)的非织造布过滤装置系统来分离MSCs,以提高从BM中获得的MSCs产量。我们研究的目的是比较用该装置和标准DGC技术分离的BM-MSCs的高分辨率表型和功能特征。

方法

分析了来自5名供体的人BM样本。每个样本均分成两份,分别通过DGC和过滤装置进行处理。通过定量成纤维细胞集落形成单位(CFU-F)来评估干细胞含量。通过多色流式细胞术分析免疫表型。评估三系分化潜能、营养因子和吲哚胺2,3-双加氧酶-1(IDO-1)的产生。在功能方面,检测免疫调节潜能、伤口愈合和血管生成情况。

结果

与通过DGC分离的MSCs制剂相比,用该装置分离的MSCs制剂中CFU-F产量高15倍。因此,在第3代时,每毫升采集的BM中可生产的MSCs产量在装置组中比DGC组高10倍以上(1.65×(10^6)对1.45×(10^5))。免疫调节潜能和IDO-1的产生在供体之间存在差异,而在非织造布过滤分离的和DGC分离的MSCs之间没有差异。就分离方法而言,两组之间伤口闭合试验、管形成试验和三系分化试验的结果相似。可以用CD140aCD119CD146作为最常见的表型组,以及CD140aCD119CD146MSCA-1CD106CD271和CD140aCD119CD146MSCA-1CD106CD271作为最常见的MSCs亚群来定量64个MSCs亚群。作为营养因子,两组中均可检测到肝细胞生长因子、表皮生长因子、脑源性神经营养因子、血管生成素-1和血管内皮生长因子A,供体之间差异较大,但与各自的MSCs分离技术无关。

结论

使用符合GMP的非织造布过滤系统装置分离MSCs可使CFU-F产量更高,产生的MSCs数量显著更多,其亚群组成和功能特征与通过DGC分离的MSCs相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0c2/8044851/44322a00063c/fcell-09-638798-g001.jpg

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