首页> 美国卫生研究院文献>International Journal of Molecular Sciences >MicroRNA-128 Confers Anti-Endothelial Adhesion and Anti-Migration Properties to Counteract Highly Metastatic Cervical Cancer Cells’ Migration in a Parallel-Plate Flow Chamber
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MicroRNA-128 Confers Anti-Endothelial Adhesion and Anti-Migration Properties to Counteract Highly Metastatic Cervical Cancer Cells’ Migration in a Parallel-Plate Flow Chamber

机译:MicroRNA-128赋予抗内皮粘附和抗迁移性能来抵消平行板流量室中的高度转移性宫颈癌细胞的迁移

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摘要

Despite the distant metastasis of cervical cancer cells being a prominent cause of mortality, neither the metastasis capacity nor the in vitro conditions mimicking adhesion of cervical cancer cells to endothelial cells have been fully elucidated. Circulating metastatic cancer cells undergo transendothelial migration and invade normal organs in distant metastasis; however, the putative molecular mechanism remains largely uncertain. In this study, we describe the use of an in vitro parallel-plate flow chamber to simulate the dynamic circulation stress on cervical cancer cells and elucidate their vascular adhesion and metastasis. We isolate the viable and shear stress-resistant (SSR) cervical cancer cells for mechanistic studies. Remarkably, the identified SSR-HeLa and SSR-CaSki exhibited high in vitro adhesive and metastatic activities. Hence, a consistently suppressed miR-128 level was revealed in SSR cell clones compared to those of parental wild-type (WT) cells. Overexpressed miR-128 attenuated SSR-HeLa cells’ adherence to human umbilical cord vein endothelial cells (HUVECs); in contrast, suppressed miR-128 efficiently augmented the static adhesion capacity in WT-HeLa and WT-CaSki cells. Hence, amplified miR-128 modestly abolished in vitro SSR-augmented HeLa and CaSki cell movement, whereas reduced miR-128 aggravated the migration speed in a time-lapse recording assay in WT groups. Consistently, the force expression of miR-128 alleviated the SSR-enhanced HeLa and CaSki cell mobility in a wound healing assay. Notably, miR-128 mediated SSR-enhanced HeLa and CaSki cells’ adhesion and metastasis through suppressed ITGA5, ITGB5, sLex, CEACAM-6, MMP9, and MMP23 transcript levels. Our data provide evidence suggesting that miR-128 is a promising microRNA that prevented endothelial cells’ adhesion and transendothelial migration to contribute to the SSR-enhanced adhesion and metastasis progression under a parallel-plate flow chamber system. This indicates that the nucleoid-based miR-128 strategy may be an attractive therapeutic strategy to eliminate tumor cells resistant to circulation shear flow, prevent vascular adhesion, and preclude subsequent transendothelial metastasis.
机译:尽管宫颈癌细胞远处转移是一种突出的死亡原因,但既不阐明宫颈癌细胞对内皮细胞粘附到内皮细胞的粘附性的粘连性能。循环转移性癌细胞在远处转移中经历颅瓣迁移和侵入正常器官;然而,推定的分子机制在很大程度上仍然不确定。在这项研究中,我们描述了使用体外平行板流量室来模拟宫颈癌细胞上的动态循环应力,并阐明其血管粘附和转移。我们分离可行和剪切应力(SSR)宫颈癌细胞进行机械研究。值得注意的是,鉴定的SSR-HELA和SSR-CASKI在体外粘合剂和转移性活性上表现出高。因此,与父母野生型(WT)细胞相比,在SSR细胞克隆中揭示了一致抑制的miR-128水平。过表达MIR-128减毒的SSR-HELA细胞对人脐纤维内皮细胞(HUVEC)的粘附;相反,抑制MiR-128有效地增强了WT-HELA和WT-胱天基细胞中的静态粘附容量。因此,扩增miR-128适度地减少了体外SSR增强的HeLa和Caski细胞运动,而降低的miR-128在WT组中的延时记录测定中加剧了迁移速度。始终如一地,MiR-128的力表达减轻了伤口愈合测定中的SSR增强的Hela和Caski细胞迁移率。值得注意的是,MiR-128介导的SSR增强的Hela和Caski细胞的粘附和转移通过抑制ITGA5,ITGB5,Slex,CeAcam-6,MMP9和MMP23转录水平。我们的数据提供了证据,提示MiR-128是一种有前途的MicroRNA,可防止内皮细胞的粘附和转运迁移,以有助于平行板流量室系统下的SSR增强的粘附性和转移进展。这表明核核的miR-128策略可以是一种有吸引力的治疗策略,以消除抗循环剪切流动的肿瘤细胞,预防血管粘附,并阻止后续的颅骨转移。

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