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Smad4 Loss Synergizes with TGFα Overexpression in Promoting Pancreatic Metaplasia, PanIN Development, and Fibrosis

机译:Smad4损失与TGFα过度表达协同促进胰腺化生,PanIN发育和纤维化。

摘要

Aims: While overexpression of TGFα has been reported in human pancreatic ductal adenocarcinoma (PDAC), mice with overexpressed TGFα develop premalignant pancreatic acinar-toductal metaplasia (ADM) but not PDAC. TGF-β signaling pathway is pivotal to the development of PDAC and tissue fibrosis. Here we sought to investigate the interplay between TGFα and TGF-β signaling in pancreatic tumorigenesis and fibrosis, namely via Smad4 inactivation. Methods: The MT-TGFα mouse was crossed with a new Smad4 conditional knock-out mouse (Smad4flox/flox;p48-Cre or S4) to generate Smad4flox/flox;MT-TGFα;p48-Cre (STP). After TGFα overexpression was induced with zinc sulfate water for eight months, the pancreata of the STP, MT-TGFα, and S4 mice were examined for tumor development and fibrotic responses. PanIN lesions and number of ducts were counted, and proliferation was measured by Ki67 immunohistochemistry (IHC). Qualitative analysis of fibrosis was analyzed by Trichrome Masson and Sirius Red staining, while vimentin was used for quantification. Expression analyses of fibrosis, pancreatitis, or desmoplasia associated markers (α-SMA, Shh, COX-2, Muc6, Col1a1, and Ctgf) were performed by IHC and/or qRT-PCR. Results: Our STP mice exhibited advanced ADM, increased fibrosis, increased numbers of PanIN lesions, overexpression of chronic pancreatitis-related marker Muc6, and elevated expression of desmoplasia-associated marker Col1A1, compared to the MT-TGFα mice. The inactivation of Smad4 in the exocrine compartment was responsible for both the enhanced PanIN formation and fibrosis in the pancreas. The phenotype of the STP mice represents a transient state from ADMs to PanINs, closely mimicking the interface area seen in human chronic pancreatitis associated with PDAC. Conclusion: We have documented a novel mouse model, the STP mice, which displayed histologic presentations reminiscent to those of human chronic pancreatitis with signs of early tumorigenesis. The STP mice could be a suitable animal model for interrogating the transition of chronic pancreatitis to pancreatic cancer.
机译:目的:虽然在人胰管腺癌(PDAC)中已报道过TGFα的过表达,但过表达TGFα的小鼠会发展为癌前胰腺腺泡-导管上皮化生(ADM),而不会发生PDAC。 TGF-β信号通路对PDAC和组织纤维化的发展至关重要。在这里我们试图研究胰腺肿瘤发生和纤维化中TGFα和TGF-β信号之间的相互作用,即通过Smad4失活。方法:将MT-TGFα小鼠与新的Smad4条件敲除小鼠(Smad4flox / flox; p48-Cre或S4)杂交,产生Smad4flox / flox;MT-TGFα; p48-Cre(STP)。用硫酸锌水诱导TGFα过表达8个月后,检查STP,MT-TGFα和S4小鼠的胰腺的肿瘤发展和纤维化反应。计数PanIN病变和导管数目,并通过Ki67免疫组织化学(IHC)测量增殖。通过Trichrome Masson和Sirius Red染色对纤维化进行定性分析,而波形蛋白则用于定量。通过IHC和/或qRT-PCR进行纤维化,胰腺炎或与异型增生相关的标志物(α-SMA,Shh,COX-2,Muc6,Col1a1和Ctgf)的表达分析。结果:与MT-TGFα小鼠相比,我们的STP小鼠表现出晚期ADM,纤维化增加,PanIN损伤数量增加,慢性胰腺炎相关标记Muc6的过表达以及与增生相关的标记Col1A1的表达升高。外分泌隔室中Smad4的失活是胰腺PanIN形成增强和纤维化的原因。 STP小鼠的表型代表从ADM到PanIN的过渡状态,非常类似于在与PDAC相关的人类慢性胰腺炎中看到的界面区域。结论:我们已经记录了一种新型小鼠模型STP小鼠,其组织学表现与具有早期肿瘤发生迹象的人类慢性胰腺炎相似。 STP小鼠可能是研究慢性胰腺炎向胰腺癌转变的合适动物模型。

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