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Increased Fibrosis and Interstitial Fluid Pressure in Two Different Types of Syngeneic Murine Carcinoma Grown in Integrin β3-Subunit Deficient Mice

机译:整合素β3-亚基缺陷型小鼠生长的两种不同类型的同基因鼠癌的纤维化和间质液压力升高

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摘要

Stroma properties affect carcinoma physiology and direct malignant cell development. Here we present data showing that αVβ3 expressed by stromal cells is involved in the control of interstitial fluid pressure (IFP), extracellular volume (ECV) and collagen scaffold architecture in experimental murine carcinoma. IFP was elevated and ECV lowered in syngeneic CT26 colon and LM3 mammary carcinomas grown in integrin β3-deficient compared to wild-type BALB/c mice. Integrin β3-deficiency had no effect on carcinoma growth rate or on vascular morphology and function. Analyses by electron microscopy of carcinomas from integrin β3-deficient mice revealed a coarser and denser collagen network compared to carcinomas in wild-type littermates. Collagen fibers were built from heterogeneous and thicker collagen fibrils in carcinomas from integrin β3-deficient mice. The fibrotic extracellular matrix (ECM) did not correlate with increased macrophage infiltration in integrin β3-deficient mice bearing CT26 tumors, indicating that the fibrotic phenotype was not mediated by increased inflammation. In conclusion, we report that integrin β3-deficiency in tumor stroma led to an elevated IFP and lowered ECV that correlated with a more fibrotic ECM, underlining the role of the collagen network for carcinoma physiology.
机译:基质性质影响癌的生理和直接恶性细胞的发展。在这里,我们提供的数据显示,由基质细胞表达的αVβ3参与了实验性鼠癌中组织液压力(IFP),细胞外体积(ECV)和胶原蛋白支架结构的控制。与野生型BALB / c小鼠相比,在整合素β3缺陷型的同系CT26结肠癌和LM3乳腺癌中,IFP升高且ECV降低。整联蛋白β3缺乏对癌症的生长速度或血管形态和功能没有影响。通过电子显微镜对整联蛋白β3缺陷小鼠的癌进行分析后发现,与野生型同窝仔的癌相比,胶原网络更粗糙,更致密。在整联蛋白β3缺陷小鼠的癌中,胶原纤维是由异质且较厚的胶原纤维构成的。纤维化细胞外基质(ECM)与携带CT26肿瘤的整合素β3缺陷型小鼠的巨噬细胞浸润增加无关,表明纤维化表型不是由炎症增加介导的。总之,我们报道肿瘤基质中的整合素β3缺乏症导致IFP升高和ECV降低,这与更多的纤维化ECM相关,这强调了胶原蛋白网络对于癌症生理的作用。

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