首页> 外文期刊>Molecular cancer research: MCR >Vascular remodeling marks tumors that recur during chronic suppression of angiogenesis.
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Vascular remodeling marks tumors that recur during chronic suppression of angiogenesis.

机译:血管重塑标志着在慢性抑制血管生成过程中复发的肿瘤。

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The potential for avoiding acquired resistance to therapy has been proposed as one compelling theoretical advantage of antiangiogenic therapy based on the normal genetic status of the target vasculature. However, previous work has demonstrated that tumors may resume growth after initial inhibition if antiangiogenic blockade is continued for an extended period. The mechanisms of this recurrent growth are unclear. In these studies, we characterized molecular changes in vasculature during apparent resumption of xenograft growth after initial inhibition by vascular endothelial growth factor blockade, "metronome" topotecan chemotherapy, and combined agents in a xenograft murine model of human Wilms' tumor. Tumors that grew during antiangiogenic blockade developed as viable clusters surrounding strikingly remodeled vessels. These vessels displayed significant increases in diameter and active proliferation of vascular mural cells and expressed platelet-derived growth factor-B, a factor that functions to enhance vascular integrity via stromal cell recruitment. In addition, remodeled vessels were marked by expression of ephrinB2, required for proper assembly of stromal cells into vasculature. Thus, enhanced vascular stability appears to characterize tumor vessel response to chronic antiangiogenesis, features that potentially support increased perfusion and recurrent tumor growth.
机译:根据靶脉管系统的正常遗传状况,已经提出了避免对疗法产生抗药性的潜力,作为抗血管生成疗法的一项令人信服的理论优势。但是,先前的研究表明,如果长期持续进行抗血管生成的阻滞,肿瘤可能会在最初抑制后恢复生长。这种周期性增长的机制尚不清楚。在这些研究中,我们表征了在人类维尔姆斯肿瘤异种移植小鼠模型中通过血管内皮生长因子阻滞,“节拍器”拓扑替康化疗和联合用药初步抑制后异种移植生长的明显恢复过程中,脉管系统的分子变化。抗血管生成阻滞过程中生长的肿瘤发展成围绕着显着重塑血管的可行簇。这些血管显示出血管壁细胞直径的显着增加和活性增殖,并表达了血小板衍生的生长因子-B,该因子通过基质细胞募集来增强血管完整性。另外,重塑的血管以ephrinB2的表达为标志,这是基质细胞正确组装成脉管系统所必需的。因此,增强的血管稳定性似乎表征了肿瘤血管对慢性抗血管生成的反应,这些特征可能支持增加的灌注和复发性肿瘤生长。

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