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对基质血管成分进行短期塑料贴壁培养可得到符合GMP标准的可预测细胞产物。

A short-term plastic adherence incubation of the stromal vascular fraction leads to a predictable GMP-compliant cell-product.

作者信息

Born Stephan, Dörfel Max Johannes, Hartjen Philip, Haschemi Yekani Seyed Ali, Luecke Julia, Meutsch Juliane Katharina, Westphal Julie Katharina, Birkelbach Moritz, Köhnke Robert, Smeets Ralf, Krueger Michael

机构信息

OXACELL® AG, Potsdam, Germany.

Department of Oral and Maxillofacial Surgery, University Hospital Hamburg-Eppendorf, Hamburg, Germany.

出版信息

Bioimpacts. 2019;9(3):161-172. doi: 10.15171/bi.2019.20. Epub 2019 Mar 25.

Abstract

Mesenchymal stromal/stem cells (MSCs) derived from fat tissue are an encouraging tool for regenerative medicine. They share properties similar to the bone marrow-derived MSCs, but the amount of MSCs per gram of fat tissue is 500x higher. The fat tissue can easily be digested by collagenase, releasing a heterogeneous cell fraction called stromal vascular fraction (SVF) which contains a variable amount of stromal/stem cells. In Europe, cell products like the SVF derived from fat tissue are considered advanced therapy medicinal product (ATMPs). As a consequence, the manufacturing process has to be approved via GMP-compliant process validation. The problem of the process validation for SVF is the heterogeneity of this fraction. Here, we modified existing purification strategies by adding an additional plastic adherence incubation of maximal 20 hours after SVF isolation. The resulting cell fraction was characterized and compared to SVF as well as cultivated adipose-derived stromal/stem cells (ASCs) with respect to viability and cell yield, the expression of surface markers, differentiation potential and cytokine expression. Short-term incubation significantly reduced the heterogeneity of the resulting cell fraction compared to SVF. The cells were able to differentiate into adipocytes, chondrocytes, and osteoblasts. More importantly, they expressed trophic proteins which have been previously associated with the beneficial effects of MSCs. Furthermore, GMP compliance of the production process described herein was acknowledged by the national regulatory agencies (DE_BB_01_GMP_2017_1018). Addition of a short purification-step after the SVF isolation is a cheap and fast strategy to isolate a homogeneous uncultivated GMP-compliant cell fraction of ASCs.

摘要

源自脂肪组织的间充质基质/干细胞(MSCs)是再生医学中一种令人鼓舞的工具。它们具有与源自骨髓的MSCs相似的特性,但每克脂肪组织中MSCs的含量要高500倍。脂肪组织很容易被胶原酶消化,释放出一种异质细胞组分,称为基质血管组分(SVF),其中含有数量不等的基质/干细胞。在欧洲,像源自脂肪组织的SVF这样的细胞产品被视为高级治疗用医药产品(ATMPs)。因此,生产过程必须通过符合GMP的工艺验证来批准。SVF工艺验证的问题在于该组分的异质性。在此,我们通过在SVF分离后增加最长20小时的额外塑料贴壁孵育来改进现有的纯化策略。对所得细胞组分进行了表征,并在活力和细胞产量、表面标志物表达、分化潜能和细胞因子表达方面与SVF以及培养的脂肪来源的基质/干细胞(ASCs)进行了比较。与SVF相比,短期孵育显著降低了所得细胞组分的异质性。这些细胞能够分化为脂肪细胞、软骨细胞和成骨细胞。更重要的是,它们表达了先前与MSCs的有益作用相关的营养蛋白。此外,本文所述生产过程的GMP合规性得到了国家监管机构(DE_BB_01_GMP_2017_1018)的认可。在SVF分离后添加一个简短的纯化步骤是一种廉价且快速的策略,用于分离出符合GMP标准的未培养的均质ASC细胞组分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98cb/6726751/f028e5d6d5b7/bi-9-161-g001.jpg

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