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首页> 外文期刊>Journal of experimental & clinical cancer research : >The TGFβ-SMAD3 pathway inhibits IL-1α induced interactions between human pancreatic stellate cells and pancreatic carcinoma cells and restricts cancer cell migration
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The TGFβ-SMAD3 pathway inhibits IL-1α induced interactions between human pancreatic stellate cells and pancreatic carcinoma cells and restricts cancer cell migration

机译:TGFβ-SMAD3途径抑制IL-1α诱导的人胰腺星状细胞与胰腺癌细胞之间的相互作用,并限制癌细胞迁移

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Background The most abundant cells in the extensive desmoplastic stroma of pancreatic adenocarcinomas are the pancreatic stellate cells, which interact with the carcinoma cells and strongly influence the progression of the cancer. Tumor stroma interactions induced by IL-1α/IL-1R1 signaling have been shown to be involved in pancreatic cancer cell migration. TGFβ and its receptors are overexpressed in pancreatic adenocarcinomas. We aimed at exploring TGFβ and IL-1α signaling and cross-talk in the stellate cell cancer cell interactions regulating pancreatic adenocarcinoma cell migration. Methods Human pancreatic stellate cells were isolated from surgically resected pancreatic adenocarcinomas and cultured in the presence of TGFβ or pancreatic adenocarcinoma cell lines. The effects of TGFβ were blocked by inhibitors or amplified by silencing the endogenous inhibitor of SMAD signaling, SMAD7. Pancreatic stellate cell responses to IL-1α or to IL-1α-expressing pancreatic adenocarcinoma cells (BxPC-3) were characterized by their ability to stimulate migration of cancer cells in a 2D migration model. Results In pancreatic stellate cells, IL-1R1 expression was found to be down-regulated by TGFβ and blocking of TGFβ signaling re-established the expression. Endogenous inhibition of TGFβ signaling by SMAD7 was found to correlate with the levels of IL-1R1, indicating a regulatory role of SMAD7 in IL-1R1 expression. Pancreatic stellate cells cultured in the presence of IL-1α or in co-cultures with BxPC-3 cells enhanced the migration of cancer cells. This effect was blocked after treatment of the pancreatic stellate cells with TGFβ. Silencing of stellate cell expression of SMAD7 was found to suppress the levels of IL-1R1 and reduce the stimulatory effects of IL-1α, thus inhibiting the capacity of pancreatic stellate cells to induce cancer cell migration. Conclusions TGFβ signaling suppressed IL-1α mediated pancreatic stellate cell induced carcinoma cell migration. Depletion of SMAD7 upregulated the effects of TGFβ and reduced the expression of IL-1R1, leading to inhibition of IL-1α induced stellate cell enhancement of carcinoma cell migration. SMAD7 might represent a target for inhibition of IL-1α induced tumor stroma interactions.
机译:背景技术胰腺腺癌的广泛的增生基质中最丰富的细胞是胰腺星状细胞,其与癌细胞相互作用并强烈影响癌症的进展。已显示由IL-1α/ IL-1R1信号传导诱导的肿瘤基质相互作用与胰腺癌细胞迁移有关。 TGFβ及其受体在胰腺腺癌中过表达。我们旨在探索调节胰腺腺癌细胞迁移的星状细胞癌细胞相互作用中的TGFβ和IL-1α信号传导和串扰。方法从手术切除的胰腺腺癌中分离人胰腺星状细胞,并在存在TGFβ或胰腺腺癌细胞系的情况下进行培养。 TGFβ的作用被抑制剂阻断或通过沉默SMAD信号转导的内源抑制剂SMAD7而增强。胰腺星状细胞对IL-1α或表达IL-1α的胰腺腺癌细胞(BxPC-3)的反应的特征在于它们在2D迁移模型中刺激癌细胞迁移的能力。结果在胰腺星状细胞中,IL-1R1表达被TGFβ下调,阻断TGFβ信号重新建立了表达。发现SMAD7对TGFβ信号转导的内源抑制与IL-1R1的水平相关,表明SMAD7在IL-1R1表达中的调节作用。在IL-1α存在下或与BxPC-3细胞共培养的胰腺星状细胞增强了癌细胞的迁移。用TGFβ处理胰腺星状细胞后,该作用被阻断。发现沉默SMAD7的星状细胞表达可抑制IL-1R1的水平并降低IL-1α的刺激作用,从而抑制胰腺星状细胞诱导癌细胞迁移的能力。结论TGFβ信号转导抑制了IL-1α介导的胰腺星状细胞诱导的癌细胞迁移。耗尽SMAD7会上调TGFβ的作用并降低IL-1R1的表达,从而导致抑制IL-1α诱导星状细胞增强癌细胞迁移。 SMAD7可能代表抑制IL-1α诱导的肿瘤基质相互作用的靶标。

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