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不同培养基对不同孕期来源的胎盘间充质干细胞的诱导及其表型的影响。

Influence of culture media on the derivation and phenotype of fetal-derived placental mesenchymal stem/stromal cells across gestation.

机构信息

Department of Obstetrics and Gynaecology, Faculty of Medical and Health Sciences, University of Auckland, New Zealand.

Maurice Wilkins Centre, University of Auckland, Auckland, New Zealand.

出版信息

Placenta. 2020 Nov;101:66-74. doi: 10.1016/j.placenta.2020.09.002. Epub 2020 Sep 2.

Abstract

INTRODUCTION

Derivation of pure fetal placental mesenchymal stem/stromal cells (pMSCs) is key to understand their role in placental development. However, isolated pMSCs are often contaminated by maternal-derived decidual MSCs (dMSCs). EGM-2 medium promotes the derivation of term fetal pMSCs, but the extent of first-trimester maternal pMSC contamination remains unclear. Culture media can also affect MSC phenotype. Here, we examined the effects of culture media on maternal pMSC contamination and fetal pMSC phenotype across gestation.

METHODS

pMSCs were derived from first-trimester or term placentae in advanced-DMEM/F12 medium or EGM-2 medium. Proportions of maternal (XX) and fetal (XY) cells in male pMSC cultures were determined by fluorescence in-situ hybridization. pMSC phenotype was analysed by flow cytometry, immunohistochemistry and Alamar blue proliferation assays.

RESULTS

When derived in advanced-DMEM/F12, all first trimester pMSC isolates exhibited maternal contamination (>72% XX cells, n = 5), whilst 7/9 term pMSC isolates were >98% fetal. When derived in EGM-2, all first trimester (n = 4) and term (n = 9) pMSC isolates contained 95-100% fetal cells. Fetal pMSCs in EGM-2 proliferated 2-fold (first-trimester) or 4-fold (term) faster than those in advanced-DMEM/F12 (p < 0.05, n = 3). Fetal pMSCs in both media expressed the generic MSC marker profile (CD90, CD105+, CD73, CD31-, CD34-, CD144-). However, pMSCs transferred from EGM-2 to advanced-DMEM/F12 increased expression of smooth muscle cell markers calponin and α-smooth muscle actin, and decreased expression of the vascular cell marker VEGFR2 (n = 3).

CONCLUSIONS

Deriving first-trimester pMSC in EGM-2 dramatically reduces maternal dMSC contamination. Media affects fetal pMSC phenotype, and careful consideration should be given to application specific culture conditions.

摘要

简介

纯胎儿胎盘间充质干细胞(pMSCs)的衍生对于理解其在胎盘发育中的作用至关重要。然而,分离的 pMSCs 经常受到母体来源的蜕膜间充质干细胞(dMSCs)的污染。EGM-2 培养基促进了足月胎儿 pMSCs 的衍生,但孕早期母体 pMSC 污染的程度尚不清楚。培养基也会影响 MSC 表型。在这里,我们研究了培养基对妊娠各期母体 pMSC 污染和胎儿 pMSC 表型的影响。

方法

pMSCs 分别从孕早期和足月胎盘在高级-DMEM/F12 培养基或 EGM-2 培养基中衍生而来。通过荧光原位杂交确定男性 pMSC 培养物中母体(XX)和胎儿(XY)细胞的比例。通过流式细胞术、免疫组织化学和 Alamar blue 增殖测定分析 pMSC 表型。

结果

在高级-DMEM/F12 中衍生时,所有孕早期 pMSC 分离物均表现出母体污染(>72% XX 细胞,n=5),而 9/9 例足月 pMSC 分离物均>98%为胎儿。在 EGM-2 中衍生时,所有孕早期(n=4)和足月(n=9)pMSC 分离物均含有 95-100%的胎儿细胞。EGM-2 中的胎儿 pMSCs 增殖速度比高级-DMEM/F12 中快 2 倍(孕早期)或 4 倍(足月)(p<0.05,n=3)。两种培养基中的胎儿 pMSCs 均表达通用 MSC 标志物谱(CD90、CD105+、CD73、CD31-、CD34-、CD144-)。然而,从 EGM-2 转移到高级-DMEM/F12 的 pMSCs 增加了平滑肌细胞标志物钙调蛋白和α-平滑肌肌动蛋白的表达,并降低了血管细胞标志物 VEGFR2 的表达(n=3)。

结论

在 EGM-2 中衍生孕早期 pMSC 可显著减少母体 dMSC 污染。培养基会影响胎儿 pMSC 表型,因此应仔细考虑应用特定的培养条件。

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