在体外实验中,缺氧可增强多种腺癌中明胶酶的活性。

P. Ridgway, P. Ziprin, N. Alkhamesi, P. Paraskeva, D. Peck, A. Darzi
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引用次数: 21

摘要

背景:在多种肿瘤类型中,实体腺癌的缺氧和蛋白酶上调被独立地认为是不良预后指标。作者假设基质金属蛋白酶(MMP)在缺氧环境下的直接反应中上调。材料和方法将结肠癌(SW1222)、乳腺癌(MDA-MB231)和胰腺(PSN-1)肿瘤细胞系暴露于缺氧(1%氧气/94%氮气/5%二氧化碳)环境中长达24小时。通过侵入基质涂覆的8微米Transwell过滤器来确定对缺氧环境的反应。用明胶酶谱法测定mmp2和mmp9的活性。采用ELISA (Biotrak)检测组织金属蛋白酶抑制剂1 (TIMP-1)的表达。使用特异性明胶酶抑制剂(MMPI)测定蛋白酶表达与侵袭能力的相关性;Calbiochem)。结果所有肿瘤细胞系在72 h内侵袭增强(各组均P < 0.01)。在SW1222和PSN-1细胞系中,mmp2和mmp9活性同时显著升高。MDA-MB231s显示mmp9表达增加,并在未知的103-kDa明胶酶中表达增加(P < 0.001)。通过添加一种特定的明胶酶抑制剂,证实了相互依赖性,从而减弱了缺氧增强的侵袭。结论缺氧可通过明胶酶上调引起细胞侵袭能力增强,但不影响细胞活力。这提示了一种解释蛋白酶分泌实体腺癌患者预后较差的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hypoxia augments gelatinase activity in a variety of adenocarcinomas in vitro.
BACKGROUND Hypoxia within solid adenocarcinomas and protease up-regulation has been independently implicated as poor prognostic indicators in a variety of tumor types. The authors hypothesize that Matrix Metalloproteases (MMP) are up-regulated in direct response to a hypoxic environment. MATERIALS AND METHODS Colonic (SW1222), breast (MDA-MB231), and pancreatic (PSN-1) tumor cell lines were exposed to hypoxia (1% oxygen/94% nitrogen/5% carbon dioxide) for periods of up to 24 h. Reaction to a hypoxic environment was determined via invasion across a Matrigel-coated 8-microm Transwell filter. Activity of MMP 2 and 9 was assessed using gelatin zymography. Expression of tissue inhibitor of metalloproteases 1 (TIMP-1) was quantified using ELISA (Biotrak). Correlation between protease expression and invasive capacity was determined using a specific gelatinase inhibitor (MMPI; Calbiochem). RESULTS All tumor lines demonstrated augmented invasion over 72 h (P < 0.01 all groups). Concomitant significant increase in MMP 2 and 9 activity was observed in the SW1222 and PSN-1 lines. MDA-MB231s showed increase in MMP 9 expression and in a unidentified 103-kDa gelatinase (P < 0.001). The hypoxia-augmented invasion was attenuated by the addition of a specific gelatinase inhibitor confirming interdependence. CONCLUSIONS Hypoxia induces an increased invasive capacity via gelatinase up-regulation without loss of cell viability. This suggests a mechanism explaining the poorer prognosis seen in patients with protease-secreting solid adenocarcinomas.
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