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没食子酸表没食子儿茶素酯通过抑制口腔鳞状细胞癌功能性侵袭伪足的形成来抑制癌症侵袭。

Epigallocatechin-3 gallate inhibits cancer invasion by repressing functional invadopodia formation in oral squamous cell carcinoma.

机构信息

Department of Dental Hygiene, College of Health Science, Eulji University, 212 Yangji-dong, Sujeong-gu, Seongnam 461-713, Republic of Korea.

出版信息

Eur J Pharmacol. 2013 Sep 5;715(1-3):286-95. doi: 10.1016/j.ejphar.2013.05.008. Epub 2013 May 22.

Abstract

Although the polyphenol EGCG has various beneficial biological effects, its effect on cytoskeletal activities during cancer invasion is not well defined, and the precise molecular mechanisms are largely unknown. Here, we provide molecular evidence on the anti-invasion effect of EGCG in OSCC cells using an in vitro 3-D culture system and in vivo athymic mouse model. Briefly, EGCG exerted an inhibitory effect on the Matrigel-based Transwell invasion and migration of OSCC cells. These effects were not due to decreased cell viability or adhesion capacity to ECM. EGCG-treated OSCC cells possessed fully extended actin fibers without invadopodia, indicating a loss of ECM degradation capacity. Decreased phosphorylation of Src, CTTN, and FAK also followed EGCG treatment. Additionally, EGCG reduced activation of RhoA in dominant-negative RhoA N19 and constitutively active RhoA Q63E cells, and inhibited the invasive capability of these cells in the 3-D cell growth model. Furthermore, the administration of EGCG led to substantial inhibition of tumor growth and activation of invadopodial proteins in the tumor tissues of mice inoculated with OSCC cells. The data indicate the potential value of EGCG as an invadopodia-targeted anti-invasive agent in cancer therapy.

摘要

虽然多酚 EGCG 具有多种有益的生物学效应,但它对癌症侵袭过程中细胞骨架活性的影响尚未明确,其确切的分子机制在很大程度上尚不清楚。在这里,我们使用体外 3-D 培养系统和体内无胸腺鼠模型,为 EGCG 在口腔鳞状细胞癌(OSCC)细胞中的抗侵袭作用提供了分子证据。简而言之,EGCG 对基于 Matrigel 的 OSCC 细胞的 Transwell 侵袭和迁移具有抑制作用。这些作用不是由于细胞活力降低或对细胞外基质的黏附能力降低所致。用 EGCG 处理的 OSCC 细胞具有完全伸展的肌动蛋白纤维,而没有侵袭伪足,表明其丧失了细胞外基质降解能力。EGCG 处理后 Src、CTTN 和 FAK 的磷酸化也随之减少。此外,EGCG 降低了显性负性 RhoA N19 和组成性活性 RhoA Q63E 细胞中 RhoA 的激活,并且抑制了这些细胞在 3-D 细胞生长模型中的侵袭能力。此外,EGCG 的给药导致在接种 OSCC 细胞的小鼠肿瘤组织中肿瘤生长的显著抑制和侵袭伪足蛋白的激活。这些数据表明 EGCG 作为癌症治疗中针对侵袭伪足的抗侵袭剂具有潜在的价值。

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