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Vascular Apoptosis and Involution in Gliomas Precede Neovascularization: A Novel Concept for Glioma Growth and Angiogenesis

机译:胶质瘤中的血管凋亡和内卷化在新血管形成之前:胶质瘤生长和血管生成的新概念。

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Vascular changes in gliomas were analyzed by implanting fluorescent-labeled glioma 261 cells in the brains of 28 mice. Seven animals were killed each week for 4 weeks. We investigated the expression of angiopoietin-2 (Ang-2) by in situ hybridization and compared it with the distribution of apoptotic cells identified by DNA strand breaks (using the terminal deoxynucleotidyl transferase-mediated biotinylated deoxyuridine triphosphate nick end labeling [TUNEL] method) and transmission electron microscopy (TEM). As early as 1 week after implantation, tumor cells accumulated around vessels, which expressed Ang-2 and were TUNEL negative. TEM showed tumor cells adjacent to the vascular cells "lifting up" the normal astrocytic feet processes away from the endothelial cells and disrupting normal pericytic cuffing. After 2 weeks the number of perivascular glioma cells had increased. No increase in the number of blood vessels was detected at this time. Vascular cells remained positive for Ang-2 and rare ones were TUNEL positive. TEM showed closely packed proliferating perivascular tumor cells. After 3 weeks, there was vascular involution with scant zones of tumor necrosis. Ang-2 was still detected in vascular cells, but now numerous vascular cells were TUNEL positive. In addition, TEM showed apoptotic vascular cells. After 4 weeks, there were extensive areas of tumor necrosis with pseudopalisading and adjacent angiogenesis. Ang-2 was detected in vascular cells at the edge of the tumors in the invaded brain and in vessels surrounded by tumor cells. At both 3 and 4 weeks, most of the TUNEL-positive tumor cells lacked morphological features characteristic of apoptosis and displayed features consistent with necrotic cell death as determined by TEM. Only rare tumor cells appeared truly apoptotic. In contrast, the TUNEL-positive endothelial cells and pericytes were round and shrunken, with condensed nuclear chromatin by TEM, suggesting that vascular cells were undergoing an apoptotic cell death. These results suggest that vascular cell apoptosis and involution preceded tumor necrosis and that angiogenesis is a later event in tumor progression in experimental gliomas. Moreover, Ang-2 is detected prior to the onset of apoptosis in vascular cells and could be linked to vascular involution.
机译:通过将荧光标记的神经胶质瘤261细胞植入28只小鼠的大脑中来分析神经胶质瘤的血管变化。每周杀死7只动物,持续4周。我们通过原位杂交研究了血管生成素2(Ang-2)的表达,并将其与通过DNA链断裂鉴定的凋亡细胞分布进行了比较(使用末端脱氧核苷酸转移酶介导的生物素化脱氧尿苷三磷酸缺口末端标记[TUNEL]方法)和透射电子显微镜(TEM)。早在植入后1周,肿瘤细胞就在血管周围积聚,表达Ang-2并呈TUNEL阴性。 TEM显示,与血管细胞相邻的肿瘤细胞从正常内皮细胞“提起”,远离内皮细胞并破坏正常的周细胞套囊。 2周后,血管周围神经胶质瘤细胞的数量增加。此时未检测到血管数量增加。血管细胞对Ang-2保持阳性,而稀有细胞为TUNEL阳性。 TEM显示紧密堆积的增殖性血管周肿瘤细胞。 3周后,出现血管内消融,肿瘤坏死区很少。在血管细胞中仍检测到Ang-2,但现在许多血管细胞都呈TUNEL阳性。另外,TEM显示出凋亡的血管细胞。 4周后,出现了广泛的肿瘤坏死区域,伴有假性苍白和邻近的血管生成。在被侵袭的脑部肿瘤边缘的血管细胞和被肿瘤细胞包围的血管中检测到Ang-2。在第3和第4周,大多数TUNEL阳性肿瘤细胞缺乏凋亡的形态学特征,并且显示出与通过TEM确定的坏死细胞死亡一致的特征。只有罕见的肿瘤细胞出现真正的凋亡。相反,TUNEL阳性的内皮细胞和周细胞是圆形和收缩的,通过TEM浓缩核染色质,表明血管细胞正在凋亡。这些结果表明,在肿瘤坏死之前,血管细胞的凋亡和内卷化,而在实验性​​神经胶质瘤中,血管生成是肿瘤进展中的较晚事件。而且,Ang-2在血管细胞凋亡开始之前被检测到,并且可能与血管的复旧有关。

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