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血管通透因子/血管内皮生长因子(VPF/VEGF)在肿瘤微血管内皮细胞的无腔质膜和囊泡-液泡细胞器中的超微结构定位。

Ultrastructural localization of vascular permeability factor/vascular endothelial growth factor (VPF/VEGF) to the abluminal plasma membrane and vesiculovacuolar organelles of tumor microvascular endothelium.

作者信息

Nagy J A, Senger D R, Dvorak H F, Dvorak A M

机构信息

Department of Pathology, Beth Israel Hospital, Boston, MA 02215.

出版信息

J Histochem Cytochem. 1995 Apr;43(4):381-9. doi: 10.1177/43.4.7534783.

Abstract

Vascular permeability factor/vascular endothelial growth factor (VPF/VEGF) is a cytokine secreted by many animal and human tumors, activated macrophages, keratinocytes, rheumatoid synovial cells, embryonic tissues, and by cultured epithelial and mesenchymal cell lines. It acts selectively on vascular endothelial cells to increase their permeability to circulating macromolecules and to stimulate their replication. Although not detectably expressed by vascular cells in the human and animal tumors we have studied, VPF/VEGF accumulates in the microvessels supplying tumors and certain inflammatory reactions in which VPF/VEGF is also overexpressed. Light microscopic immunohistochemistry lacked the resolution necessary to localize VPF/VEGF precisely in such vessels. Therefore, we used a pre-embedding immunocytochemical method to localize VPF/VEGF at the ultrastructural level in the new blood vessels that are elicited in the peritoneal walls of mice bearing a transplantable mouse ascites tumor of ovarian origin. Intense immunostaining for VPF/VEGF was observed on the abluminal plasma membrane of tumor-associated microvascular endothelial cells and in vesiculovacuolar organelles (VVOs) present in these same endothelial cells. (VVOs are recently described cytoplasmic organelles present in tumor vascular endothelium that provide an important pathway for extravasation of circulating macromolecules.) In contrast to labeling of the abluminal plasma membrane and VVO vesicles and vacuoles, endothelial cytoplasmic organelles, such as multivesicular bodies and Weibel-Palade bodies, and the underlying basal lamina, did not stain with antibodies to VPF/VEGF. The distribution of VPF/VEGF here described corresponds to that anticipated for high-affinity VFP/VEGF receptors, although binding of VPF/VEGF to other endothelial cell surface structures, such as plasma membrane proteoglycans, is also a possibility.

摘要

血管通透因子/血管内皮生长因子(VPF/VEGF)是一种由许多动物和人类肿瘤、活化的巨噬细胞、角质形成细胞、类风湿性滑膜细胞、胚胎组织以及培养的上皮和间充质细胞系分泌的细胞因子。它选择性地作用于血管内皮细胞,增加其对循环大分子的通透性,并刺激其增殖。尽管在我们研究的人类和动物肿瘤中的血管细胞中未检测到VPF/VEGF的表达,但VPF/VEGF在供应肿瘤的微血管以及某些炎症反应中积聚,在这些炎症反应中VPF/VEGF也过表达。光学显微镜免疫组织化学缺乏将VPF/VEGF精确地定位在这类血管中的分辨率。因此,我们采用包埋前免疫细胞化学方法,在超微结构水平上,对携带卵巢来源的可移植小鼠腹水瘤的小鼠腹膜壁中新生血管中的VPF/VEGF进行定位。在肿瘤相关微血管内皮细胞的无腔质膜上以及这些相同内皮细胞中存在的囊泡-液泡细胞器(VVOs)中观察到了强烈的VPF/VEGF免疫染色。(VVOs是最近描述的存在于肿瘤血管内皮中的细胞质细胞器,为循环大分子的外渗提供了重要途径。)与无腔质膜以及VVO囊泡和液泡的标记不同,内皮细胞质细胞器,如多囊泡体和魏尔-帕拉德小体,以及其下方的基膜,未被VPF/VEGF抗体染色。这里描述的VPF/VEGF的分布与高亲和力VFP/VEGF受体预期的分布一致,尽管VPF/VEGF与其他内皮细胞表面结构,如质膜蛋白聚糖结合也是有可能的。

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