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PL-hMSC 与 CH-hMSC 来源可溶性因子通过激活 TGF-β 并抑制 Wnt 信号通路抑制增殖但促进 hGBM 细胞迁移

英文原题:PL-hMSC and CH-hMSC derived soluble factors inhibit proliferation but improve hGBM cell migration by activating TGF-β and inhibiting Wnt signaling.

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PL-hMSC and CH-hMSC derived soluble factors inhibit proliferation but improve hGBM cell migration by activating TGF-β and inhibiting Wnt signaling.

PubMed 2024/05/29(内容时间) Biosci Rep Q2 · IF 4.5(JCR 2025)

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中文摘要

多形性胶质母细胞瘤(GBM)是最常见、侵袭性最强的脑肿瘤之一。GBM 对多数化疗药物耐药,导致患者死亡率较高。人间充质干细胞(hMSC)是肿瘤基质的一部分,已被证明参与 GBM 的发生和进展,但不同来源的 hMSC 可能对 GBM 细胞产生不同影响。

本研究从胎盘(PL-hMSC)和绒毛膜(CH-hMSC)中建立 hMSC,研究其释放的可溶性因子对人 GBM 细胞 U251 增殖、迁移、侵袭、基因表达和存活的影响。结果发现,CH-hMSC 和 PL-hMSC 来源的可溶性因子均以剂量依赖方式抑制 U251 细胞增殖。相反,两种 hMSC 来源的可溶性因子均增加 U251 迁移,但不影响其侵袭能力。这些 hMSC 来源的可溶性因子降低了促进 GBM 细胞增殖的 CyclinD1、E2Fs 和 MYC 基因表达,却提高了促进上皮间质转化(EMT)和 GBM 迁移的 TWIST 基因表达。功能研究提示,两类 hMSC 至少部分通过激活 TGF-β 并抑制 U251 细胞中的 Wnt/β-catenin 信号发挥作用。

本研究加深了对 GBM 细胞与妊娠组织来源 hMSC 相互作用的认识,这些知识或可用于调控 hMSC 与 GBM 的相互作用,开发更安全有效的干细胞疗法,改善患者生存和生活质量。

展开英文摘要原文

Glioblastoma multiforme (GBM) is one of the most common and aggressive brain tumors. GBM resists most chemotherapeutic agents, resulting in a high mortality rate in patients. Human mesenchymal stem cells (hMSCs), which are parts of the cancer stroma, have been shown to be involved in the development and progression of GBM.

However, different sources of hMSCs might affect GBM cells differently. In the present study, we established hMSCs from placenta (PL-hMSC) and chorion (CH-hMSC) to study the effects of their released soluble factors on the proliferation, migration, invasion, gene expression, and survival of human GBM cells, U251.

We found that the soluble factors derived from CH-hMSCs and PL-hMSCs suppressed the proliferation of U251 cells in a dose-dependent manner. In contrast, soluble factors derived from both hMSC sources increased U251 migration without affecting their invasive property.

The soluble factors derived from these hMSCs decreased the expression levels of CyclinD1, E2Fs and MYC genes that promote GBM cell proliferation but increased the expression level of TWIST gene, which promotes EMT and GBM cell migration. The functional study suggests that both hMSCs might exert their effects, at least in part, by activating TGF- and suppressing Wnt/ -catenin signaling in U251 cells.

Our study provides a better understanding of the interaction between GBM cells and gestational tissue-derived hMSCs. This knowledge might be used to develop safer and more effective stem cell therapy that improves the survival and quality of life of patients with GBM by manipulating the interaction between hMSCs and GBM cells.

论文信息

作者
Uthanaphun T、Manochantr S、Tantrawatpan C、Tantikanlayaporn D、Kheolamai P
第一作者单位
Master of Science Program in Stem Cell and Molecular Biology, Faculty of Medicine, Thammasat University, Pathumthani 12120, Thailand.Thailand
通讯作者单位
Center of Excellence in Stem Cell Research and Innovation, Faculty of Medicine, Thammasat University, Pathumthani 12120, Thailand.Thailand
文献类型
非美国政府资助研究
期刊
Bioscience reports2024 May 29
原文标识
PubMed 38687607 · DOI 10.1042/BSR20231964