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92K-GL(基质金属蛋白酶-9)和72K-GL(基质金属蛋白酶-2)由人类口腔鳞状细胞癌在体内产生,并且在体外可增强FIB-CL(基质金属蛋白酶-1)的活性。

92K-GL (MMP-9) and 72K-GL (MMP-2) are produced in vivo by human oral squamous cell carcinomas and can enhance FIB-CL (MMP-1) activity in vitro.

作者信息

Pickett K L, Harber G J, DeCarlo A A, Louis P, Shaneyfelt S, Windsor L J, Bodden M K

机构信息

Department of Orthodontics, University of Alabama at Birmingham, USA.

出版信息

J Dent Res. 1999 Jul;78(7):1354-61. doi: 10.1177/00220345990780071001.

Abstract

Previous studies have shown a correlation between the production of certain matrix metalloproteinases (MMPs), especially the gelatinases, by malignant tumors and the progression of these cancers as they invade and metastasize through the extracellular matrix and basement membranes. However, very few of these studies examined this relationship in human oral cancer in vivo, and none addressed the issue of how combinations of the MMPs may further enhance tumor progression. To determine which MMPs are produced in vivo by human oral cancers, we used specific anti-human-MMP antibodies and immunocytochemistry (ICC) methods to examine oral cancer tissue specimens from 20 surgery patients. The ICC data indicated that 72-kDa (72K-GL) and 92-kDa gelatinases (92K-GL) were produced in vivo by discreet clusters of tumor cells and by stromal fibroblasts, vascular endothelial cells (72K-GL), and PMNs (92K-GL). Some stromal fibroblasts near the tumors also appeared to produce fibroblast-type collagenase (FIB-CL), a finding confirmed by Western blot analysis of media conditioned by oral tumor explant cultures. ICC results indicated that 5 of the 20 tumors coincidentally produced all three MMPs. To examine how the two gelatinases and FIB-CL may interact in vitro to degrade fibrillar type I collagen, a major structural component of the extracellular matrix, we used a modified FIB-CL activity assay. Combinations of the gelatinases and FIB-CL were incubated with a 3H-collagen substrate, with the results compared with the combination of stromelysin-1 (SL-1, a superactivator of FIB-CL) and FIB-CL. 92K-GL caused a nine-fold increase in collagenase activity, equivalent to SL-1, while 72K-GL produced a four-fold increase. These results indicate that human oral cancers produce 92K-GL, 72K-GL, and FIB-CL in vivo and that the gelatinases and FIB-CL cooperate to enhance collagen degradation greatly in vitro.

摘要

先前的研究表明,恶性肿瘤产生的某些基质金属蛋白酶(MMPs),尤其是明胶酶,与这些癌症在通过细胞外基质和基底膜侵袭和转移过程中的进展之间存在相关性。然而,这些研究中很少有在人体口腔癌体内研究这种关系的,而且没有一项研究探讨过MMPs组合如何进一步促进肿瘤进展的问题。为了确定人体口腔癌在体内产生哪些MMPs,我们使用特异性抗人MMP抗体和免疫细胞化学(ICC)方法,检查了20例手术患者的口腔癌组织标本。ICC数据表明,72 kDa(72K-GL)和92 kDa明胶酶(92K-GL)在体内由离散的肿瘤细胞簇以及基质成纤维细胞、血管内皮细胞(72K-GL)和中性粒细胞(92K-GL)产生。肿瘤附近的一些基质成纤维细胞似乎也产生成纤维细胞型胶原酶(FIB-CL),这一发现通过对口腔肿瘤外植体培养条件培养基的蛋白质印迹分析得到证实。ICC结果表明,20个肿瘤中有5个同时产生了所有三种MMPs。为了研究两种明胶酶和FIB-CL在体外如何相互作用以降解细胞外基质的主要结构成分——I型纤维状胶原,我们使用了改良的FIB-CL活性测定法。将明胶酶和FIB-CL的组合与3H-胶原底物一起孵育,结果与基质溶素-1(SL-1,FIB-CL的一种超激活剂)和FIB-CL的组合进行比较。92K-GL使胶原酶活性增加了9倍,与SL-1相当,而72K-GL使胶原酶活性增加了4倍。这些结果表明,人体口腔癌在体内产生92K-GL、72K-GL和FIB-CL,并且明胶酶和FIB-CL在体外协同作用以大大增强胶原降解。

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