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首页> 外文期刊>The American journal of Chinese medicine >Pachymic Acid Sensitizes Gastric Cancer Cells to Radiation Therapy by Upregulating Bax through Hypoxia
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Pachymic Acid Sensitizes Gastric Cancer Cells to Radiation Therapy by Upregulating Bax through Hypoxia

机译:厚酸通过缺氧上调 Bax 使胃癌细胞对放射治疗敏感

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We have previously shown that pachymic acid (PA) inhibited tumorigenesis of gastric cancer (GC) cells. However, the exact mechanism underlying the radiation response of GC was still elusive. To evaluate the effects of PA treatment on radiation response of GC cell lines both in vitro and in vivo, a colony formation assay and xenograft mouse model were employed. Changes in Bax and HIF1 alpha expressions were assessed in GC cells following PA treatment. Luciferase reporter and chromatin immune-precipitation assays were carried out to investigate the regulation of Bax through HIF1 alpha. Stable HIF1 alpha knockdown was introduced into GC cells to further study the mechanism underlying PA-enhanced response to radiation both in vitro and in vivo. PA greatly enhanced the sensitivity of GC cells to radiation in vitro and in vivo, upregulated Bax expression and inhibited hypoxia. Bax expression was under hypoxia inhibition, and PA increased Bax expression through repressing HIF1 alpha. Stable HIF1 alpha overexpression in GC cells abolished the sensitizing effect of PA on GC cells to radiation both in vitro and in vivo. PA functions as a radiation sensitizing compound in GC. PA treatment induces the expression of pro-apoptotic factor Bax by inhibiting hypoxia/HIF1 alpha, supporting the therapeutic potential of PA in radiation therapy against GC.
机译:我们之前已经证明,厚酸(PA)抑制胃癌(GC)细胞的肿瘤发生。然而,GC辐射反应的确切机制仍然难以捉摸。为了评估 PA 处理对体外和体内 GC 细胞系辐射反应的影响,采用菌落形成测定和异种移植小鼠模型。评估 PA 处理后 GC 细胞中 Bax 和 HIF1 α 表达的变化。进行荧光素酶报告基因和染色质免疫沉淀测定,以研究 Bax 通过 HIF1 α 的调控。将稳定的 HIF1 α 敲低引入 GC 细胞中,以进一步研究 PA 增强体外和体内辐射反应的机制。PA大大增强了GC细胞对体外和体内辐射的敏感性,上调了Bax的表达,抑制了缺氧。Bax表达在缺氧抑制下,PA通过抑制HIF1α增加Bax表达。GC 细胞中稳定的 HIF1 α 过表达消除了 PA 对 GC 细胞在体外和体内辐射的致敏作用。PA在气相色谱中起着辐射增敏化合物的作用。PA 治疗通过抑制缺氧/HIF1 α 诱导促凋亡因子 Bax 的表达,支持 PA 在针对 GC 的放射治疗中的治疗潜力。

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