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血管床的动态重塑先于肿瘤生长:植入裸鼠体内的 MLS 卵巢癌球体。

Dynamic remodeling of the vascular bed precedes tumor growth: MLS ovarian carcinoma spheroids implanted in nude mice.

作者信息

Gilead A, Neeman M

机构信息

Department of Biological Regulation, The Weizmann Institute of Science, Rehovot, Israel.

出版信息

Neoplasia. 1999 Aug;1(3):226-30. doi: 10.1038/sj.neo.7900032.

Abstract

The goal of this study was to monitor the vascular bed during the lag phase in growth of implanted spheroids as a model of tumor dormancy. Vascular development and tumor growth were followed up by magnetic resonance imaging in a model system of MLS ovarian carcinoma spheroids implanted subcutaneously in female nude mice. Apparent vessel density in a 1-mm rim surrounding the spheroid was evaluated by gradient echo imaging as a measure of the angiogenic potential of the tumor. Vascular functionality and maturation were assessed by signal intensity changes in response to hyperoxia (elevated oxygen) and hypercapnia (elevated carbon dioxide), respectively. Tumor growth was delayed by 12 to 57 days after implantation. During this long period in which tumor volume did not change, up to 6 cycles of vascular development and regression were observed. We propose here that dynamic remodeling of the vascular bed may precede exit of tumors from dormancy. The sustained oscillations in the angiogenic response to the implanted spheroid are consistent with hypoxic regulation of vascular endothelial growth factor (VEGF), combined with the role of VEGF as an essential survival factor for newly formed blood vessels. Vascular maturation, manifested by physiological vasodilatory response to carbon dioxide, may be important for conferring vascular stability and exit from dormancy.

摘要

本研究的目的是在植入球体生长的延迟期监测血管床,以此作为肿瘤休眠模型。在雌性裸鼠皮下植入MLS卵巢癌球体的模型系统中,通过磁共振成像对血管发育和肿瘤生长进行随访。通过梯度回波成像评估球体周围1毫米边缘的表观血管密度,作为肿瘤血管生成潜力的指标。分别通过对高氧(氧气升高)和高碳酸血症(二氧化碳升高)的信号强度变化来评估血管功能和成熟度。植入后肿瘤生长延迟12至57天。在这段肿瘤体积不变的长时间内,观察到多达6个周期的血管发育和消退。我们在此提出,血管床的动态重塑可能先于肿瘤从休眠中退出。对植入球体的血管生成反应的持续振荡与血管内皮生长因子(VEGF)的缺氧调节一致,同时VEGF作为新生血管的重要生存因子发挥作用。以对二氧化碳的生理性血管舒张反应为表现的血管成熟,可能对赋予血管稳定性和从休眠中退出很重要。

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