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首页> 外文期刊>Neoplasia: an international journal for oncology research >Ectopic Overexpression of Sonic Hedgehog (Shh) Induces Stromal Expansion and Metaplasia in the Adult Murine Pancreas
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Ectopic Overexpression of Sonic Hedgehog (Shh) Induces Stromal Expansion and Metaplasia in the Adult Murine Pancreas

机译:Sonic Hedgehog(SHH)的异位过度表达诱导成人鼠胰腺的基质膨胀和细胞腺癌

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Ligand-dependent activation of the Hedgehog (Hh) signaling pathway has been implicated in both tumor initiation and metastasis of pancreatic ductal adenocarcinoma (PDAC). Prior studies in genetically engineered mouse models (GEMMs) have assessed the role of Hh signaling by cell autonomous expression of a constitutively active Gli2 within epithelial cells. On the contrary, aberrant pathway reactivation in the human exocrine pancreas occurs principally as a consequence of Sonic Hh ligand (Shh) overexpression from epithelial cells. To recapitulate the cognate pathophysiology of Hh signaling observed in the human pancreas, we examined GEMM where Hh ligand is conditionally overexpressed within the mature exocrine pancreas using a tamoxifen-inducible Elastase-Cre promoter (Ela-CreERT2;LSL-mShh). We also facilitated potential cell autonomous epithelial responsiveness to secreted Hh ligand by generating compound transgenic mice with concomitant expression of the Hh receptor Smoothened (Ela-CreERT2;LSL-mShh;LSL-mSmo). Of interest, none of these mice developed intraductal precursor lesions or PDAC during the follow-up period of up to 12 months after tamoxifen induction. Instead, all animals demonstrated marked expansion of stromal cells, consistent with the previously described epithelial-to-stromal paracrine Hh signaling. Hh responsiveness was mirrored by the expression of primary cilia within the expanded mesenchymal compartment and the absence within mature acinar cells. In the absence of cooperating mutations, Hh ligand overexpression in the mature exocrine pancreas is insufficient to induce neoplasia, even when epithelial cells coexpress the Smo receptor. This autochthonous model serves as a platform for studying epithelial stromal interactions in pancreatic carcinogenesis.
机译:刺猬(HH)信号通路的配体依赖性激活已涉及肿瘤引发和胰腺导管腺癌(PDAC)的转移。在基因工程的小鼠模型(Gemms)的事先研究已经评估了HH信号传导通过细胞自主表达在上皮细胞内的组成型活性Gli2的作用。相反,人口胰腺中的异常途径重新激活主要是由于上皮细胞的Sonic HH配体(SHH)过表达的结果。为了重新承载在人胰腺中观察到的HH信号的同源病理学生理学,我们检查了使用Tamoxifen诱导的弹性蛋白酶-CRE启动子(Ela-Creert2; LSL-MSHH)在成熟外胰岛素内有条件地过表达HH配体的Gemm。我们还通过产生具有HH受体的伴随的HH受体的化合物转基因小鼠(Ela-Creert2; LSL-MSHH; LSL-MSMO)通过产生化合物转基因小鼠,促进了分泌的HH配体的潜在细胞自主上皮反应性。感兴趣的是,这些小鼠中没有一个在三莫莫毒素诱导后在长达12个月的后续期间产生的内部前体病变或PDAC。相反,所有动物都表现出基质细胞的标记扩张,与先前描述的上皮 - 对基质旁静脉HH信号传导一致。 HH回应是通过在扩张间充质隔室内的原发性纤毛的表达和成熟酰基细胞内的不存在而反映。在没有合作突变的情况下,即使在上皮细胞共同缩写SMO受体时,成熟外分泌胰腺中的HH配体过表达不足以诱导肿瘤。这种自动加速的模型作为研究胰腺癌中皮基质相互作用的平台。

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