首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >Small Vessels-Big Problems: Novel Insights into Microvascular Mechanisms of Diseases: Inhibition of endothelial nitric oxide synthase decreases breast cancer cell MDA-MB-231 adhesion to intact microvessels under physiological flows
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Small Vessels-Big Problems: Novel Insights into Microvascular Mechanisms of Diseases: Inhibition of endothelial nitric oxide synthase decreases breast cancer cell MDA-MB-231 adhesion to intact microvessels under physiological flows

机译:小血管-大问题:微血管疾病机理的新见解:内皮一氧化氮合酶的抑制作用降低了乳腺癌细胞MDA-MB-231在生理流下对完整微血管的粘附

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摘要

Nitric oxide (NO) at different concentrations may promote or inhibit tumor growth and metastasis under various conditions. To test the hypothesis that tumor cells prefer to adhere to the locations with a higher endothelial NO production in intact microvessels under physiological flows and to further test that inhibiting NO production decreases tumor cell adhesion, we used intravital fluorescence microscopy to measure NO production and tumor cell adhesion in postcapillary venules of rat mesentery under normal and reduced flow conditions, and in the presence of an endothelial nitric oxide synthase (eNOS) inhibitor, NG-monomethyl-l-arginine (l-NMMA). Rats (SD, 250–300 g) were anesthetized. A midline incision (∼2 inch) was made in the abdominal wall, and the mesentery was taken out from the abdominal cavity and spread over a coverslip for the measurement. An individual postcapillary venule (35–50 μm) was first loaded with 4,5-diaminofluorescein diacetate (DAF-2 DA), a fluorescent indictor for NO. Then the DAF-2 intensity was measured for 30 min under a normal or reduced flow velocity, with and without perfusion with MDA-MB-231 breast cancer cells, and in the presence of l-NMMA. We found that tumor cells prefer to adhere to the microvessel locations with a higher NO production such as curved portions. Inhibition of eNOS by l-NMMA attenuated the flow-induced NO production and reduced tumor cell adhesion. We also found that l-NMMA treatment for ∼40 min reduced microvessel permeability to albumin. Our results suggest that inhibition of eNOS is a good approach to preventing tumor cell adhesion to intact microvessels under physiological flows.
机译:在不同条件下,不同浓度的一氧化氮(NO)可能会促进或抑制肿瘤的生长和转移。为了检验在生理流下肿瘤细胞倾向于粘附在完整微血管中具有较高内皮一氧化氮产生的位置的假设,并进一步测试抑制一氧化氮产生会降低肿瘤细胞的粘附性,我们使用了活体荧光显微镜来测量一氧化氮的产生和肿瘤细胞在正常和减少流量的条件下,在存在内皮一氧化氮合酶(eNOS)抑制剂N G -单甲基-1-精氨酸(l-NMMA)的情况下,大鼠肠系膜后小静脉中的黏附。将大鼠(SD,250-300 g)麻醉。在腹壁上做一个中线切口(〜2英寸),从腹腔中取出肠系膜并铺在盖玻片上进行测量。首先在单个毛细血管后小静脉(35-50μm)中加入4,5-二氨基荧光素二乙酸酯(DAF-2 DA),它是NO的荧光指示剂。然后在正常或降低的流速下,在有或没有灌注MDA-MB-231乳腺癌细胞的情况下,在1-NMMA存在下,测量DAF-2强度30分钟。我们发现,肿瘤细胞更喜欢以更高的NO生成量粘附在微血管位置,例如弯曲部分。 1-NMMA对eNOS的抑制作用减弱了流动诱导的NO产生并降低了肿瘤细胞的粘附。我们还发现,l-NMMA处理约40分钟会降低微血管对白蛋白的渗透性。我们的结果表明,抑制eNOS是防止肿瘤细胞在生理流下粘附至完整微血管的好方法。

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