一种廉价、简便的分离人羊膜间充质干细胞的方法

A. Shadmanesh, H. Nazari, A. Shirazi, E. Ahmadi, N. Shams-Esfandabadi
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引用次数: 0

摘要

背景:人羊膜间充质干细胞(hAMSCs)是一种可接近的细胞,可在体外培养产生大量医学细胞治疗所需的细胞。已经提出了几种分离hAMSCs的方案,但大多数方案都是多步骤且昂贵的。本文的目的是介绍一种单步、廉价的协议。方法:本研究选用剖宫产的人羊膜(hAM)。将AM切成小块,分离MSCs,只需一步消化而不是多步消化。分离细胞在不添加生长因子的情况下,加入10%胎牛血清(FBS)的Dulbeco,s Modified Eagle,s Medium-Low Glucose (DMEM-LG)培养基中培养。经80-90%的融合后,用流式细胞术鉴定贴壁细胞向脂肪细胞样细胞和骨细胞样细胞多向分化。结果:从hAM中分离的hAMSCs与其他MSCS一样表达CD105、CD90和CD73,但不表达CD34和CD45造血标志物。茜素红和油-红- o分别证实了分离细胞的成骨分化和成脂分化。结论:AM衍生的干细胞属于间充质干细胞家族。此外,这种方法使获得这种类型的干细胞变得更容易和更便宜。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Inexpensive and Simple Method for Isolation Mesenchymal Stem Cell of Human Amnion Membrane
Background: Background: Human-amnion membrane mesenchymal stem cells (hAMSCs) are the accessible cells that can be grown in in vitro condition to produce a great number of cells required for cell therapy in medicine. Several protocols have been proposed for isolation of hAMSCs, but the most of them are multi-step and expensive. The purpose of this article was to introduce a one-step, inexpensive protocol. Methods: In this study human amnion membrane (hAM) was obtained from selected caesarean-sectioned births. The AM was sliced into small pieces and to isolate MSCs, it was digested only with one step instead of multi-step. Isolated cells were cultured in Dulbeco,s Modified Eagle,s Medium-Low Glucose (DMEM-LG) with 10% fetal bovine serum (FBS) without adding growth factors. After 80-90% confluency, the adherent cells were characterized by flow cytometry and multi- potentiality differentiation toward adipocyte-, and osteocyte -like cells. Results: The results showed that hAMSCs isolated from hAM expressed CD105, CD90 and CD73 such as other MSCS, but did not express CD34 and CD45 hematopoietic markers. The osteogenic and adipogenic differentiation of the isolated cells were proven by Alizarin Red and Oil-Red-O straining, respectively. Conclusions: The results showed that the stem cells derived from the AM belonged to the mesenchymal stem cells family. Furthermore, this method made it easier and cheaper to obtain this type of stem cells.
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