首页> 外文期刊>Neoplasia: an international journal for oncology research >Genetic and Pharmacologic Inhibition of Complement Impairs Endothelial Cell Function and Ablates Ovarian Cancer Neovascularization
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Genetic and Pharmacologic Inhibition of Complement Impairs Endothelial Cell Function and Ablates Ovarian Cancer Neovascularization

机译:遗传和药理学抑制补体损害内皮细胞功能和蒸煮的卵巢癌新生血管

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Complement activation plays a critical role in controlling inflammatory responses. To assess the role of complement during ovarian cancer progression, we crossed two strains of mice with genetic complement deficiencies with transgenic mice that develop epithelial ovarian cancer (TgMISIIR-TAg). TgMISIIR-TAg mice fully or partially deficient for complement factor 3 (C3) (Tg+C3KO and Tg+C3HET, respectively) or fully deficient for complement factor C5a receptor (C5aR) (Tg+C5aRKO) develop either no ovarian tumors or tumors that were small and poorly vascularized compared to wild-type littermates (Tg+C3WT, Tg+C5aRWT). The percentage of tumor infiltrating immune cells in Tg+C3HET tumors compared to Tg+C3WT controls was either similar (macrophages, B cells, myeloid-derived suppressor cells), elevated (effector T cells), or decreased (regulatory T cells). Regardless of these ratios, cytokine production by immune cells taken from Tg+C3HET tumors was reduced on stimulation compared to Tg+C3WT controls. Interestingly, CD31+ endothelial cell (EC) function in angiogenesis was significantly impaired in both C3KO and C5aRKO mice. Further, using the C5aR antagonist PMX53, tube formation of ECs was shown to be C5a-dependent, possibly through interactions with the VEGF165 but not VEGF121 isoform. Finally, the mouse VEGF164 transcript was underexpressed in C3KO livers compare to C3WT livers. Thus, we conclude that complement inhibition blocks tumor outgrowth by altering EC function and VEGF165 expression.
机译:补体激活在控制炎症反应方面发挥着关键作用。为了评估卵巢癌进展期间补体的作用,我们跨越了两种小鼠的遗传补充缺乏,转基因小鼠,产生上皮卵巢癌(TGMISIIR-TAG)。 TGMISIIR标签小鼠完全或部分缺乏补体因子3(C3)(分别为TG + C3KO和TG + C3HET)或完全缺乏补体因子C5A受体(C5AR)(TG + C5Akno),形成无卵巢肿瘤或肿瘤与野生型凋落物(TG + C3WT,TG + C5ARWT)相比,血管较差。与Tg + C3wt对照相比,Tg + C3het肿瘤中肿瘤浸润免疫细胞的百分比是相似的(巨噬细胞,B细胞,髓样抑制细胞),升高(效应器T​​细胞)或降低(调节T细胞)。无论这些比例如何,与Tg + C3WT对照相比,通过从Tg + C3het肿瘤中取出的免疫细胞产生细胞因子产生。有趣的是,C3KO和C5arko小鼠中,血管生成的CD31 +内皮细胞(EC)功能显着受到损害。此外,使用C5AR拮抗剂PMX53,显示ECS的管形成为C5A依赖性,可能通过与VEGF165的相互作用而不是VEGF121同种型。最后,在C3KO肝脏中,小鼠VEGF164转录物在与C3WT肝脏相比的C3KO肝脏中是缺陷的。因此,我们得出结论,通过改变EC功能和VEGF165表达,补体抑制阻断肿瘤过度。

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