首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Production and localization of 92-kilodalton gelatinase in abdominal aortic aneurysms. An elastolytic metalloproteinase expressed by aneurysm-infiltrating macrophages.
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Production and localization of 92-kilodalton gelatinase in abdominal aortic aneurysms. An elastolytic metalloproteinase expressed by aneurysm-infiltrating macrophages.

机译:腹主动脉瘤中92-千达尔顿明胶酶的产生和定位。动脉瘤浸润巨噬细胞表达的一种弹性蛋白酶。

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摘要

Abdominal aortic aneurysms (AAA) are characterized by disruption and degradation of the elastic media, yet the elastolytic proteinases involved and their cellular sources are undefined. We examined if 92-kD gelatinase, an elastolytic matrix metalloproteinase, participates in the pathobiology of AAA. Gelatin zymography of conditioned medium from normal, atheroocclusive disease (AOD), or AAA tissues in organ culture showed that all tissues produced 72-kD gelatinase. AOD and AAA cultures also secreted 92-kD gelatinase, but significantly more enzyme was released from AAA tissues. ELISA confirmed that AAA tissues released approximately 2-fold more 92-kD gelatinase than AOD tissue and approximately 10-fold more than normal aorta. Phorbol ester induced a 5.3-fold increase in 92-kD gelatinase secretion by normal aorta and AOD and an 11.5-fold increase by AAA. By immunohistochemistry, 92-kD gelatinase was not detected in normal aorta and was only occasionally seen within the neointimal lesions of AOD tissue. In all AAA specimens, however, 92-kD gelatinase was readily localized to numerous macrophages in the media and at the adventitial-medial junction. The expression of 92-kD gelatinase mRNA by aneurysm-infiltrating macrophages was confirmed by in situ hybridization. These results demonstrate that diseased aortic tissues secrete greater amounts of gelatinolytic activity than normal aorta primarily due to increased production of 92-kD gelatinase. In addition, the localization of 92-kD gelatinase to macrophages in the damaged wall of aneurysmal aortas suggests that chronic release of this elastolytic metalloproteinase contributes to extracellular matrix degradation in AAA.
机译:腹主动脉瘤(AAA)的特征是弹性介质的破坏和降解,但是所涉及的弹性蛋白酶及其细胞来源尚不确定。我们检查了92-kD明胶酶(一种弹性基质金属蛋白酶)是否参与了AAA的病理生物学。在器官培养中,来自正常,动脉粥样硬化疾病(AOD)或AAA组织的条件培养基的明胶酶谱显示,所有组织均产生72-kD明胶酶。 AOD和AAA培养物也分泌92-kD明胶酶,但从AAA组织释放的酶明显更多。 ELISA证实AAA组织释放的92-kD明胶酶比AOD组织多2倍,比正常主动脉多10倍。佛波酯可导致正常主动脉和AOD分泌的92 kD明胶酶分泌增加5.3倍,而AAA则增加11.5倍。通过免疫组织化学,在正常主动脉中未检测到92-kD明胶酶,仅在AOD组织的新内膜病变中偶见。然而,在所有AAA标本中,92-kD明胶酶很容易定位于培养基中以及外膜-内膜结合处的大量巨噬细胞。通过原位杂交证实了由动脉瘤浸润的巨噬细胞表达的92-kD明胶酶mRNA。这些结果表明,患病的主动脉组织比正常主动脉分泌更多的明胶分解活性,这主要是由于增加了92-kD明胶酶的产量。另外,将92-kD明胶酶定位于动脉瘤主动脉受损壁中的巨噬细胞,表明该弹性蛋白酶金属蛋白酶的长期释放有助于AAA中的细胞外基质降解。

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