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首页> 外文期刊>Journal of neuro-oncology. >Tumoral micro-blood vessels and vascular microenvironment in human astrocytic tumors. A transmission electron microscopy study.
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Tumoral micro-blood vessels and vascular microenvironment in human astrocytic tumors. A transmission electron microscopy study.

机译:人类星形细胞肿瘤中的肿瘤微血管和血管微环境。透射电子显微镜研究。

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The development of peritumoral edema is thought to be due to extravasation of plasma water and macromolecules through a defective blood-brain barrier (BBB), but the exact mechanism by which occurs is poorly understood. The aim of this study was analyze at submicroscopic level the morphological changes in both micro-blood vessels and vascular microenvironment of astrocytic tumors in an attempt of understanding the pathological aspects that may help in the future researches for the design of future therapeutic strategies. Biopsies of 25 patients with pathological diagnosis of astrocytic tumors were examined with the transmission electron microscope. Both open and close tight junctions were observed in the micro-blood vessels, inclusive in a same tumor. Cytoskeletal disorganization associated with disintegrated perijunctional actin filaments were seen. The paracellular space showed enlargement and commonly occupied by fluid proteinaceous, endothelial cells display oncotic and ischemic changes, basal lamina reveals enlargement, edema, vacuolization and collagen fibers disposed in irregular array. Pericytes exhibited edema and phagocytoced material, astrocytic perivascular-feet showed signs of oncosis and necrosis, cooption vessels totally surrounding by neoplastic cells also were seen. The ultrastructural abnormalities observed in both junctional complexes and vascular microenvironment suggest a multi-factorial pathobiology process, probably hypoxia intratumoral, calcium overload in endothelial cells, and degradative effects of metalloproteinases over the basal membrane appear as determinant factors that leading to structural modifications of junctional complexes, therefore, treatment with both HIF-1alpha and metalloproteinases inhibitors possibly can contribute with the pharmacological handling of the peritumoral edema associated with astrocytic tumors.
机译:肿瘤周围水肿的发展被认为是由于血浆水和大分子通过有缺陷的血脑屏障(BBB)渗出引起的,但对其发生的确切机制了解甚少。本研究的目的是在亚显微水平上分析星形细胞肿瘤微血管和血管微环境的形态变化,以试图了解可能有助于未来治疗策略设计的病理学方面。用透射电子显微镜检查了25例经病理诊断为星形细胞肿瘤的患者的活检。在微血管中观察到开放和紧密的紧密连接,包括在同一肿瘤中。可见与结节周围肌动蛋白丝分解相关的细胞骨架紊乱。旁细胞间隙增大,通常被液体蛋白占据,内皮细胞表现出渗透性和局部缺血性改变,基底层显示增大,水肿,空泡和胶原纤维排列不规则。周细胞显示出水肿和吞噬物质,星形细胞的血管周足显示出癌变和坏死的迹象,还看到了肿瘤细胞完全包围的增生血管。在连接复合物和血管微环境中观察到的超微结构异常表明,病理过程是多因素的,可能是低氧性肿瘤内,内皮细胞钙超载,以及金属蛋白酶在基膜上的降解作用,是导致连接复合物结构修饰的决定性因素。因此,同时使用HIF-1α和金属蛋白酶抑制剂治疗可能有助于与星形细胞肿瘤相关的肿瘤周围水肿的药理处理。

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