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成年和局限性青少年牙周炎中胶原溶解基质金属蛋白酶(MMP - 2、- 8、- 13和- 14)及基质溶素(MMP - 7)的体内表达

The in vivo expression of the collagenolytic matrix metalloproteinases (MMP-2, -8, -13, and -14) and matrilysin (MMP-7) in adult and localized juvenile periodontitis.

作者信息

Tervahartiala T, Pirilä E, Ceponis A, Maisi P, Salo T, Tuter G, Kallio P, Törnwall J, Srinivas R, Konttinen Y T, Sorsa T

机构信息

Faculty of Medicine, Helsinki University, Finland.

出版信息

J Dent Res. 2000 Dec;79(12):1969-77. doi: 10.1177/00220345000790120801.

Abstract

Periodontal inflammation is characterized by irreversible degradation of periodontal ligament collagen fibers leading to loss of tooth attachment. Cultured gingival keratinocytes and fibroblasts express, in vitro, various matrix metalloproteinases (MMPs) which can degrade fibrillar collagens. We hypothesized that several MMPs are also synthesized in vivo by sulcular epithelium, and analyzed the collagenolytic MMPs (MMP-2, -8, -13, and -14) and matrilysin (MMP-7) in gingival tissue specimens and gingival crevicular fluid from adult and localized juvenile periodontitis patients by in situ hybridization, immunohistochemistry, and Western immunoblotting. MMP-2, -7, -8, and -13 were expressed in gingival sulcular epithelium. MMP-7 and -13 were also located in fibroblasts and macrophages, and MMP-8 in neutrophils. MMP-8- and -13-positive cells/mm2 were higher in periodontitis gingiva when compared with healthy control tissue (p < 0.01). In periodontal diseases, gingival sulcular epithelium expresses several, rather than a single, collagenolytic MMPs, and this proteolytic cascade is evidently responsible for the tissue destruction characteristic of adult and juvenile periodontitis.

摘要

牙周炎的特征是牙周膜胶原纤维发生不可逆降解,导致牙齿附着丧失。培养的牙龈角质形成细胞和成纤维细胞在体外表达多种可降解纤维状胶原的基质金属蛋白酶(MMPs)。我们推测几种MMPs也在体内由龈沟上皮合成,并通过原位杂交、免疫组织化学和Western免疫印迹分析了成人和局限性青少年牙周炎患者牙龈组织标本及龈沟液中的胶原溶解MMPs(MMP-2、-8、-13和-14)和基质溶素(MMP-7)。MMP-2、-7、-8和-13在牙龈龈沟上皮中表达。MMP-7和-13也存在于成纤维细胞和巨噬细胞中,MMP-8存在于中性粒细胞中。与健康对照组织相比,牙周炎牙龈中MMP-8和-13阳性细胞/mm²更高(p<0.01)。在牙周疾病中,牙龈龈沟上皮表达多种而非单一的胶原溶解MMPs,这种蛋白水解级联显然是成人和青少年牙周炎组织破坏特征的原因。

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