首页> 外文期刊>International journal of oncology >Impaired gap junctions in human hepatocellular carcinoma limit intrinsic oxaliplatin chemosensitivity: A key role of connexin 26
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Impaired gap junctions in human hepatocellular carcinoma limit intrinsic oxaliplatin chemosensitivity: A key role of connexin 26

机译:人肝细胞癌的间隙连接受损限制了固有的奥沙利铂化学敏感性:连接蛋白26的关键作用

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Hepatocellular carcinoma (HCC) is generally believed to have low sensitivity to chemotherapeutic agents including oxaliplatin (OXA). Studies have demonstrated that gap junctions (GJs) composed of connexin (Cx) proteins have the potential to modulate drug chemosensitivity in multiple tumor cells. In the present study, we investigated the characteristics of Cx and GJs in HCC at both histologic and cytologic levels, and the effects of GJ and its effective components on OXA cytotoxicity in HCC cells in?vitro. Immunohistochemistry was performed in 76 HCCs and 20 normal liver tissues to detect and locate the expression of Cx26, Cx32 and Cx43. At cytologic levels, the expression and localization of Cxs were evaluated by RT-PCR, western blot and immunofluorescence assay, respectively. The GJ function between adjacent cells was detected using dye transfer assay. The role of GJs in the modulation of OXA toxicity in HCC cells was explored using pharmacologic and molecular biologic methods. We found that Cx expression in HCC tissues was significantly lower than in normal liver tissues, and the ‘internalization’ from cell membrane to cytoplasm was remarkable. In?vitro experiments revealed the presence of functional GJs in the SMMC-7721 HCC cells due to a small amount of Cx protein along the plasma membrane at cell-cell contacts. Regulation of this part of GJs positively influenced OXA cytotoxicity. Using RNA interference, only specific inhibition of Cx26 but not Cx32 or Cx43 reduced OXA cytotoxicity. Conversely, Cx26 overexpression by transfection of Cx26 plasmid DNA enhanced OXA cytotoxicity. This study demonstrated that during hepatocarcinogenesis, the reduced expression and internalization of Cx proteins impaired the GJ function, which further attenuated OXA cytotoxicity. Impaired GJ function may contribute to low intrinsic chemosensitivity of HCC cells to OXA, mediated by Cx26.
机译:一般认为,肝细胞癌(HCC)对包括奥沙利铂(OXA)在内的化学治疗剂敏感性低。研究表明,由连接蛋白(Cx)组成的间隙连接(GJ)具有调节多种肿瘤细胞对药物化学敏感性的潜力。在本研究中,我们研究了HCC中Cx和GJs在组织学和细胞学水平上的特征,以及GJ及其有效成分对体外HCC细胞OXA细胞毒性的影响。在76个肝癌和20个正常肝组织中进行了免疫组织化学,以检测和定位Cx26,Cx32和Cx43的表达。在细胞学水平上,分别通过RT-PCR,蛋白质印迹和免疫荧光测定法评估Cx的表达和定位。使用染料转移测定法检测相邻细胞之间的GJ功能。使用药理和分子生物学方法探讨了GJ在肝癌细胞中OXA毒性调节中的作用。我们发现,HCC组织中的Cx表达明显低于正常肝组织,并且从细胞膜到细胞质的“内在化”非常明显。体外实验显示SMMC-7721 HCC细胞中存在功能性GJ,这是由于沿细胞膜接触细胞膜的少量Cx蛋白所致。这部分GJ的调节对OXA细胞毒性产生积极影响。使用RNA干扰,仅特异性抑制Cx26而不抑制Cx32或Cx43可以降低OXA细胞毒性。相反,通过转染Cx26质粒DNA来过度表达Cx26增强了OXA细胞毒性。这项研究表明,在肝癌发生过程中,Cx蛋白的表达减少和内在化会损害GJ功能,从而进一步减弱OXA的细胞毒性。 GJ功能受损可能导致Cx26介导的HCC细胞对OXA的低固有化学敏感性。

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