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Creating a tumor-resistant microenvironment: cell-mediated delivery of TNFα completely prevents breast cancer tumor formation in vivo.

机译:创建抗肿瘤的微环境:TNFα的细胞介导递送完全防止了体内乳腺癌的形成。

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摘要

Here, we provide the necessary proof of concept, that it is possible to metabolically create a non-permissive or "hostile" stromal microenvironment, which actively prevents tumor engraftment in vivo. We developed a novel genetically engineered fibroblast cell line that completely prevents tumor formation in mice, with a 100% protection rate. No host side effects were apparent. This could represent a viable cellular strategy for preventing and treating a variety of human cancers. More specifically, we examined the autocrine and paracrine effects of the cellular delivery of TNFα on breast cancer tumor growth and cancer metabolism. For this purpose, we recombinantly overexpressed TNFα in human breast cancer cells (MDA-MB-231) or human immortalized fibroblasts (hTERT-BJ1). Our results directly show that TNFα functions as a potent tumor suppressor. Remarkably, TNFα-expressing breast cancer cells were viable, without any significant increases in their basal apoptotic rate. However, after 4 weeks post-implantation, TNFα-expressing breast cancer cells failed to form any tumors in xenografted mice (0 tumors/10 injections), ultimately conferring 100% protection against tumorigenesis. Similarly, TNFα-overexpressing fibroblasts were also viable, without any increases in apoptosis. Significantly, complete tumor suppression was obtained by co-injecting TNFα expressing stromal fibroblasts with human breast cancer cells, indicating that paracrine cell-mediated delivery of TNFα can also prevent tumor engraftment and growth (0 tumors/10 injections). Mechanistically, TNFα induced autophagy and mitochondrial dysfunction in both epithelial cancer cells and stromal fibroblasts, preventing energy transfer from the tumor microenvironment, likely "starving" the cancer cells to death. In addition, via qRT-PCR analysis of MDA-MB-231 cells, we observed that TNFα mediated the upregulation of gene transcripts associated with inflammation and senescence [IL-1-β, IL-6, IL-8, MCP-1, COX-2, p21(WAF1/CIP1)] and downregulated known tumor-promoting genes (collagen VI and MMP2). Recombinant overexpression of TNFα receptor(s) in MDA-MB-231 cells also significantly reduced tumor growth, but was not as effective as the TNFα ligand itself in preventing tumor growth. Thus, we propose that stromal cell-mediated delivery of TNFα to human tumors [using transfected fibroblasts or mesenchymal stem cells (hMSCs)] may be a novel and effective strategy for the prevention and treatment of human cancers.KEYWORDS:apoptosis, autophagy, breast cancer, cancer prevention, cellular therapy, fibroblast mediated delivery, mitochondrial dysfunction, tumor cell engraftment, tumor growth, tumor necrosis factor (TNF)
机译:在这里,我们提供了必要的概念证明,可以通过代谢产生一种非许可的或“敌对的”基质微环境,从而积极地阻止体内肿瘤的植入。我们开发了一种新型的基因工程成纤维细胞系,可完全防止小鼠肿瘤形成,保护率达100%。没有宿主副作用是明显的。这可能代表了一种预防和治疗多种人类癌症的可行细胞策略。更具体地,我们检查了TNFα的细胞递送对乳腺癌肿瘤生长和癌症代谢的自分泌和旁分泌作用。为此,我们在人乳腺癌细胞(MDA-MB-231)或永生化成纤维细胞(hTERT-BJ1)中重组过表达TNFα。我们的结果直接表明TNFα可以有效抑制肿瘤。值得注意的是,表达TNFα的乳腺癌细胞是可行的,其基础凋亡率没有任何显着增加。然而,在植入后4周后,表达TNFα的乳腺癌细胞在异种移植小鼠中未形成任何肿瘤(0个肿瘤/ 10次注射),最终赋予了100%的抗肿瘤发生保护能力。同样,过表达TNFα的成纤维细胞也是可行的,而凋亡却没有增加。重要的是,通过将表达TNFα的基质成纤维细胞与人乳腺癌细胞共同注射获得了完全的肿瘤抑制,这表明旁分泌细胞介导的TNFα的递送也可以防止肿瘤的植入和生长(0肿瘤/ 10次注射)。从机制上讲,TNFα诱导上皮癌细胞和基质成纤维细胞中的自噬和线粒体功能障碍,阻止能量从肿瘤微环境转移,可能使癌细胞“饿死”甚至死亡。此外,通过对MDA-MB-231细胞的qRT-PCR分析,我们观察到TNFα介导了与炎症和衰老相关的基因转录物的上调[IL-1-β,IL-6,IL-8,MCP-1, COX-2,p21(WAF1 / CIP1)]和下调了已知的促肿瘤基因(胶原VI和MMP2)。 MDA-MB-231细胞中TNFα受体的重组过表达也显着降低了肿瘤的生长,但在预防肿瘤生长方面不如TNFα配体本身有效。因此,我们建议[使用转染的成纤维细胞或间充质干细胞(hMSCs)]基质细胞介导的TNFα向人肿瘤的传递可能是预防和治疗人癌症的一种新颖有效的策略。关键词:细胞凋亡,自噬,乳腺癌癌症,癌症预防,细胞疗法,成纤维细胞介导的传递,线粒体功能障碍,肿瘤细胞植入,肿瘤生长,肿瘤坏死因子(TNF)

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