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首页> 外文期刊>Journal of cellular and molecular medicine. >Piezo type mechanosensitive ion channel component 1 facilitates gastric cancer omentum metastasis
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Piezo type mechanosensitive ion channel component 1 facilitates gastric cancer omentum metastasis

机译:压电式机械敏感离子通道组分1促进胃癌Omentum转移

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摘要

The peritoneum, especially the omentum, is a common site for gastric cancer (GC) metastasis. Our aim was to expound the role and mechanisms of Piezo1 on GC omentum metastasis. A series of functional assays were performed to examine cell proliferation, clone formation, apoptosis, Ca 2 influx, mitochondrial membrane potential (MMP) and migration after overexpression or knockdown of Piezo1. A GC peritoneal implantation and metastasis model was conducted. After infection by si‐Piezo1, the number and growth of tumours were observed in abdominal cavity. Fibre and angiogenesis were tested in metastatic tumour tissues. Piezo1 had higher expression in GC tissues with omentum metastasis and metastatic lymph node tissues than in GC tissues among 110 patients. High Piezo1 expression was associated with lymph metastasis, TNM and distant metastasis. Overexpressed Piezo1 facilitated cell proliferation and suppressed cell apoptosis in GC cells. Moreover, Ca 2 influx was elevated after up‐regulation of Piezo1. Piezo1 promoted cell migration and Calpain1/2 expression via up‐regulation of HIF‐1α in GC cells. In vivo, Piezo1 knockdown significantly inhibited peritoneal metastasis of GC cells and blocked EMT process and angiogenesis. Our findings suggested that Piezo1 is a key component during GC omentum metastasis, which could be related to up‐regulation of HIF‐1α.
机译:腹膜,尤其是Opentum,是胃癌(GC)转移的常见部位。我们的目标是阐述Piezo1对GC Omentum转移的作用和机制。进行一系列功能测定以检查细胞增殖,克隆形成,细胞凋亡,Ca 2流入,线粒体膜电位(MMP)和在过表达或压电1张扣后迁移。进行了GC腹膜植入和转移模型。通过Si-piezo1感染后,在腹腔中观察到肿瘤的数量和生长。在转移性肿瘤组织中测试纤维和血管生成。 Piezo1在GC组织中具有更高的表达,在110名患者中的GC组织中具有圆形转移和转移性淋巴结组织。高压电1表达与淋巴转移,TNM和远距离转移有关。过表达的PIEZO1促进GC细胞中的细胞增殖和抑制细胞凋亡。此外,Ca 2流入在压电1的上调后升高。通过GC细胞中HIF-1α的上调促进细胞迁移和CALPAIN1 / 2表达。在体内,压电1敲低显着抑制了GC细胞的腹膜转移,并阻断了EMT过程和血管生成。我们的研究结果表明,GC Omentum转移期间Piezo1是关键组分,其可能与HIF-1α的上调相关。

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