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Macrophage infiltration and angiogenesis in human malignancy

机译:人类恶性肿瘤中的巨噬细胞浸润和血管生成

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It is well recognized that human tumours are hypoxic compared to normal adjacent tissues and that hypoxia is related to a poor outcome regardless of modality of treatment, including surgery alone, radiotherapy or chemotherapy. Hypoxia regulates a complex programme of gene transcription via hypoxia-inducible factors 1 and 2 (HIF-1, -2).. We have shown that in breast cancer and many other tumour types, tumour-associated macrophages express high levels of HIF-2a compared to normal tissue macrophages and compared to the tumour This high macrophage HIF-2a is an independent prognostic factor for poor outcome The mechanisms up-regulating HIF-2a in macrophages may include inflammatory cytokines as well as hypoxia Differentiation of monocytes into macrophages increases the basal level of HIF-2a protein and changes the programme of hypoxia. Many of these inducible genes are involved in inflammation and angiogenesis Thus, the conversion of a peripheral monocyte into a macrophage generates a complex new programme of hypoxia-responsive genes that may contribute to angiogenesis and the complex microenviionment within the tumour, and as such provides important targets for therapy.
机译:众所周知,与正常相邻的组织相比,人类肿瘤是缺氧,并且缺氧与差的结果有关,无论治疗的形态,包括单独的手术,放疗或化疗。缺氧通过缺氧诱导因子1和2(HIF-1,-2)调节基因转录的复杂程序。我们表现出乳腺癌和许多其他肿瘤类型,肿瘤相关的巨噬细胞表达高水平的HIF-2a与正常组织巨噬细胞相比,与肿瘤相比,这种高巨噬细胞HIF-2a是较差的结果的独立预后因素,其巨噬细胞上调HIF-2a的机制可能包括炎症细胞因子以及单核细胞的缺氧分化到巨噬细胞中增加了基础HIF-2A蛋白水平并改变缺氧程序。这些诱导基因中的许多涉及炎症和血管生成,因此外周单核细胞转化为巨噬细胞产生复杂的缺氧响应基因的新程序,这些基因可能有助于血管生成和肿瘤内的复杂微生活,并且如此重要治疗的目标。

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