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The pro-adhesive and pro-survival effects of glucocorticoid in human ovarian cancer cells

机译:糖皮质激素在人卵巢癌细胞中的促黏附和促生存作用

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Cell adhesion to extracellular matrix (ECM) is controlled by multiple signaling molecules and intracellular pathways, and is pivotal for survival and growth of cells from most solid tumors. Our previous works demonstrated that dexamethasone (DEX) significantly enhances cell adhesion and cell resistance to chemotherapeutics by increasing the levels of integrin β1, α4, and α5 in human ovarian cancer cells. However, it is unclear whether the components of ECM or other membrane molecules are also involved in the pro-adhesive effect of DEX in ovarian cancer cells. In this study, we demonstrated that the treatment of cells with DEX did not change the expression of collagens (I, III, and IV), laminin, CD44, and its principal ligand hyaluronan (HA), but significantly increased the levels of intracellular and secreted fibronectin (FN). Inhibiting the expression of FN with FN1 siRNA or blocking CD44, another FN receptor, with CD44 blocking antibody significantly attenuated the pro-adhesion of DEX, indicating that upregulation of FN mediates the pro-adhesive effect of DEX by its interaction with CD44 besides integrin β1. Moreover, DEX significantly enhanced cell resistance to the chemotherapeutic agent paclitaxel (PTX) by activating PI-3K-Akt pathway. Finally, we found that DEX also significantly upregulated the expression of MUC1, a transmembrane glycoprotein. Inhibiting the expression of MUC1 with MUC1 siRNA significantly attenuated the DEX-induced effects of pro-adhesion, Akt-activation, and pro-survival. In conclusion, these results provide new data that upregulation of FN and MUC1 by DEX contributes to DEX-induced pro-adhesion and protects ovarian cancer cells from chemotherapy.
机译:细胞与细胞外基质(ECM)的粘附受多种信号分子和细胞内途径控制,对于大多数实体瘤中细胞的存活和生长至关重要。我们以前的研究表明,地塞米松(DEX)通过增加人类卵巢癌细胞中整联蛋白β1,α4和α5的水平来显着增强细胞粘附力和细胞对化学疗法的抵抗力。然而,尚不清楚ECM或其他膜分子的成分是否也参与DEX在卵巢癌细胞中的促粘连作用。在这项研究中,我们证明了使用DEX处理细胞不会改变胶原蛋白(I,III和IV),层粘连蛋白,CD44及其主要配体透明质酸(HA)的表达,但会显着提高细胞内和分泌的纤连蛋白(FN)。用FN1 siRNA抑制FN的表达或用CD44阻断抗体抑制另一种FN受体CD44可以显着减弱DEX的前粘连,这表明FN的上调通过除整合素β1之外还与CD44相互作用介导了DEX的前粘连作用。 。此外,DEX通过激活PI-3K-Akt途径显着增强了细胞对化疗药物紫杉醇(PTX)的抵抗力。最后,我们发现DEX还显着上调了MUC1(一种跨膜糖蛋白)的表达。用MUC1 siRNA抑制MUC1的表达可显着减弱DEX诱导的促粘连,Akt激活和促存活作用。总之,这些结果提供了新的数据,表明DEX上调FN和MUC1有助于DEX诱导的前粘连并保护卵巢癌细胞免受化学疗法的侵害。

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