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Nitric Oxide Inhibits Hetero-adhesion of Cancer Cells to Endothelial Cells: Restraining Circulating Tumor Cells from Initiating Metastatic Cascade

机译:一氧化氮抑制癌细胞对内皮细胞的异种粘附:抑制循环肿瘤细胞从转移级联的开始。

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摘要

Adhesion of circulating tumor cells (CTCs) to vascular endothelial bed becomes a crucial starting point in metastatic cascade. We hypothesized that nitric oxide (NO) may prevent cancer metastasis from happening by its direct vasodilation and inhibition of cell adhesion molecules (CAMs). Here we show that S-nitrosocaptopril (CAP-NO, a typical NO donor) produced direct vasorelaxation that can be antagonized by typical NO scavenger hemoglobin and guanylate cyclase inhibitor. Cytokines significantly stimulated production of typical CAMs by the highly-purified human umbilical vein endothelial cells (HUVECs). CAP-NO inhibited expression of the stimulated CAMs (particularly VCAM-1) and the resultant hetero-adhesion of human colorectal cancer cells HT-29 to the HUVECs in a concentration-dependent manner. The same concentration of CAP-NO, however, did not significantly affect cell viability, cell cycle and mitochondrial membrane potential of HT-29, thus excluding the possibility that inhibition of the hetero-adhesion was caused by cytotoxicity by CAP-NO on HT-29. Hemoglobin reversed the inhibition of CAP-NO on both the hetero-adhesion between HT-29 and HUVECs and VCAM-1 expression. These data demonstrate that CAP-NO, by directly releasing NO, produces vasorelaxation and interferes with hetero-adhesion of cancer cells to vascular endothelium via down-regulating expression of CAMs. The study highlights the importance of NO in cancer metastatic prevention.
机译:循环肿瘤细胞(CTC)与血管内皮床的粘附成为转移级联反应的关键起点。我们假设一氧化氮(NO)可以通过其直接的血管扩张和抑制细胞粘附分子(CAMs)来防止癌症转移的发生。在这里,我们显示S-亚硝基卡托普利(CAP-NO,一种典型的NO供体)产生了直接的血管舒张作用,可被典型的NO清道夫血红蛋白和鸟苷酸环化酶抑制剂所拮抗。细胞因子显着刺激了高度纯化的人脐静脉内皮细胞(HUVEC)产生的典型CAM。 CAP-NO以浓度依赖的方式抑制了受刺激的CAMs(特别是VCAM-1)的表达以及由此导致的人类结直肠癌细胞HT-29与HUVEC的异源粘附。但是,相同浓度的CAP-NO不会显着影响HT-29的细胞活力,细胞周期和线粒体膜电位,因此排除了CAP-NO对HT-29的细胞毒性引起的异质粘附抑制作用的可能性。 29。血红蛋白逆转了CAP-NO对HT-29和HUVEC之间的异质粘附以及VCAM-1表达的抑制作用。这些数据表明,CAP-NO通过直接释放NO产生血管舒张作用,并通过下调CAMs的表达来干扰癌细胞与血管内皮的异质粘附。该研究强调了NO在癌症转移预防中的重要性。

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