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实体瘤中涉及过氧亚硝酸盐和基质金属蛋白酶的血管通透性增强。

Enhanced vascular permeability in solid tumor involving peroxynitrite and matrix metalloproteinases.

作者信息

Wu J, Akaike T, Hayashida K, Okamoto T, Okuyama A, Maeda H

机构信息

Department of Microbiology, Kumamoto University School of Medicine, Kumamoto 860-0811, Japan.

出版信息

Jpn J Cancer Res. 2001 Apr;92(4):439-51. doi: 10.1111/j.1349-7006.2001.tb01114.x.

Abstract

Peroxynitrite (ONOO(-)), which is generated from nitric oxide (NO) and superoxide anion (O(2)(.-)) under pathological conditions, plays an important role in pathophysiological processes. Activation of matrix metalloproteinases (MMPs) contributes to tumor angiogenesis and metastasis. NO mediates the enhanced vascular permeability and retention (EPR) effect in solid tumors, and ONOO(-)activates proMMP to MMP in vitro. In this study, we examined the role of ONOO(-)in the EPR effect in solid tumors and normal tissues as related to MMP activation. Authentic ONOO(-), at 50 nmol or higher concentrations, induced the enhanced vascular permeability in normal dorsal skin of mice. ONOO(-)scavengers ebselen and uric acid significantly suppressed the EPR effect in mouse sarcoma 180 (S-180) tumors. Indirect evidence for formation of ONOO(-)in S-180 and mouse colon adenocarcinoma (C-38) tumors included strong immunostaining for nitrotyrosine in the tumor tissue, predominantly surrounding the tumor vessels. MMP inhibitor BE16627B (66.6 mg / kg i.v., given 2 times) or SI-27 (10 mg / kg i.p., given 2 times) significantly suppressed the ONOO(-)-induced EPR effect in S-180 tumors and in normal skin. Soybean trypsin inhibitor (Kunitz type), broad-spectrum proteinase inhibitor ovomacroglobulin, and bradykinin receptor antagonist HOE 140 also significantly suppressed the ONOO(-)-induced EPR effect in normal skin tissues. These data suggest that ONOO(-)may be involved in and promote the EPR effect in tumors, which could be mediated partly through activation of MMPs and a subsequent proteinase cascade to generate potent vasoactive mediators such as bradykinin.

摘要

过氧亚硝酸盐(ONOO(-))在病理条件下由一氧化氮(NO)和超氧阴离子(O(2)(.-))生成,在病理生理过程中起重要作用。基质金属蛋白酶(MMPs)的激活有助于肿瘤血管生成和转移。NO介导实体瘤中的血管通透性增强和滞留(EPR)效应,并且ONOO(-)在体外将前MMP激活为MMP。在本研究中,我们研究了ONOO(-)在实体瘤和正常组织的EPR效应中与MMP激活相关的作用。50 nmol或更高浓度的纯ONOO(-)可诱导小鼠正常背部皮肤的血管通透性增强。ONOO(-)清除剂依布硒啉和尿酸显著抑制小鼠肉瘤180(S-180)肿瘤中的EPR效应。S-180和小鼠结肠腺癌(C-38)肿瘤中ONOO(-)形成的间接证据包括肿瘤组织中硝基酪氨酸的强免疫染色,主要围绕肿瘤血管。MMP抑制剂BE16627B(66.6 mg / kg静脉注射,给药2次)或SI-27(10 mg / kg腹腔注射,给药2次)显著抑制S-180肿瘤和正常皮肤中ONOO(-)诱导的EPR效应。大豆胰蛋白酶抑制剂(Kunitz型)、广谱蛋白酶抑制剂卵巨球蛋白和缓激肽受体拮抗剂HOE 140也显著抑制正常皮肤组织中ONOO(-)诱导的EPR效应。这些数据表明,ONOO(-)可能参与并促进肿瘤中的EPR效应,这可能部分通过MMP的激活和随后的蛋白酶级联反应来介导,以产生有效的血管活性介质如缓激肽。

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