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封装人间质干细胞(eMSCs)作为一种新型的针对乳腺癌干细胞的抗癌药物:3D 预刺激治疗性 MSCs 的开发。

Encapsulated human mesenchymal stem cells (eMSCs) as a novel anti-cancer agent targeting breast cancer stem cells: Development of 3D primed therapeutic MSCs.

机构信息

Division of Cancer Stem Cells and Cardiovascular Regeneration, School of Regenerative Medicine, Manipal Academy of Higher Education (MAHE), Bangalore, 560 065, India.

Stem Cell and Cancer Biology Laboratory, School of Pharmacy and Biomedical Sciences, Curtin Health Innovation Research Institute, Curtin University, Perth, WA, 6102, Australia; School of Human Sciences, The University of Western Australia, Perth, WA, 6009, Australia.

出版信息

Int J Biochem Cell Biol. 2019 May;110:59-69. doi: 10.1016/j.biocel.2019.02.001. Epub 2019 Feb 6.

Abstract

Breast cancer is a leading cause of mortality in women across the globe. The major reason for its recurrence and high mortality is due to the presence of a drug refractory and self-renewing population of cells, the cancer stem cells (CSCs). Mesenchymal stem cells (MSCs) have recently emerged as a promising cell-based therapeutic agent for the treatment of different cancer types. However, the anti-tumor effect of MSCs has been indicated to be substantially reduced by their in vivo tumor-trophic migration property and direct cell-to-cell integration with tumor stromal elements. To address this drawback, the present study uses a biomaterial, sodium alginate, for the encapsulation of MSCs from the perinatal tissue, Wharton's jelly (WJMSCs) into microbeads, to study the effect of WJMSCs beads on breast CSCs derived from two breast cancer cell lines, MDA-MB-231 and MCF7. Encapsulation with sodium alginate facilitated the prevention of direct cell-to-cell interaction and these microbeads provided a three-dimensional (3D) microenvironment for the encapsulated WJMSCs (eWJMSCs). Compared to two dimensional (2D) culture, eWJMSC increased proliferation of WJMSCs with an increase in pluripotency genes, epithelial to mesenchymal transition (EMT), immune-modulation, and angiogenesis. Interestingly, the tumor invasion suppressor protein E-cadherin was highly expressed in eWJMSCs as shown by Western blot analysis. In addition, eWJMSCs had an increased secretion of anti-inflammatory cytokines VEGF, TGF-β, TNF-α, IFN-γ, IL-10 and -6, and IL-3β when compared to 2D culture. Treatment of CSCs with eWJMSCs reduced cell viability, inhibited migration, and exerted an anti-angiogenic effect. eWJMSCs treatment of CSCs increased caspase 3/7 activity, nitric oxide production, and reactive oxygen species production, suggesting its anti-tumorigenic activity. Gene expression analysis revealed that CSCs treated with eWJMSCs had a downregulation of pro-proliferation markers, drug transporters, epithelial-mesenchymal transition-associated markers, and angiogenesis related genes. The mode of anti-proliferative action of WJMSCs beads was possibly through inhibition of the Wnt/β-catenin signaling pathway as indicated by the upregulation of the Wnt antagonists sFRP4 and DKK1. These data suggest that alginate-encapsulated WJMSCs could be an efficient cell contact-free system for developing stem cell-based therapies for CSCs.

摘要

乳腺癌是全球女性死亡的主要原因。其复发和高死亡率的主要原因是存在耐药和自我更新的细胞群体,即癌症干细胞(CSCs)。间充质干细胞(MSCs)最近已成为治疗不同癌症类型的有前途的基于细胞的治疗剂。然而,MSCs 的抗肿瘤作用已表明由于其体内肿瘤营养迁移特性和与肿瘤基质成分的直接细胞间融合而大大降低。为了解决这一缺点,本研究使用生物材料海藻酸钠将源自围产期组织(WJMSCs)的间充质干细胞封装成微珠,以研究 WJMSCs 珠对源自两种乳腺癌细胞系 MDA-MB-231 和 MCF7 的乳腺癌 CSCs 的影响。用海藻酸钠封装有助于防止直接的细胞间相互作用,并且这些微珠为封装的 WJMSCs(eWJMSCs)提供了三维(3D)微环境。与二维(2D)培养相比,eWJMSC 增加了 WJMSC 的增殖,并增加了多能性基因、上皮间质转化(EMT)、免疫调节和血管生成。有趣的是,Western blot 分析表明,eWJMSC 中高表达肿瘤侵袭抑制蛋白 E-钙粘蛋白。此外,与 2D 培养相比,eWJMSCs 增加了抗炎细胞因子 VEGF、TGF-β、TNF-α、IFN-γ、IL-10 和 -6 以及 IL-3β 的分泌。用 eWJMSCs 处理 CSCs 可降低细胞活力,抑制迁移并发挥抗血管生成作用。eWJMSC 处理 CSCs 可增加 caspase 3/7 活性、一氧化氮产生和活性氧产生,提示其抗肿瘤活性。基因表达分析显示,用 eWJMSCs 处理的 CSCs 下调了促增殖标志物、药物转运蛋白、上皮-间质转化相关标志物和血管生成相关基因。WJMSCs 珠的抗增殖作用模式可能是通过抑制 Wnt/β-catenin 信号通路,因为 Wnt 拮抗剂 sFRP4 和 DKK1 的上调表明了这一点。这些数据表明,海藻酸钠包封的 WJMSCs 可能是开发基于干细胞的 CSCs 治疗的有效无细胞接触系统。

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