从成纤维细胞脱落的微泡在三维胶原基质中充当金属蛋白酶的载体。

Q3 Medicine
Journal of Circulating Biomarkers Pub Date : 2016-11-07 eCollection Date: 2016-01-01 DOI:10.1177/1849454416663660
Valentina Laghezza Masci, Anna Rita Taddei, Gabriella Gambellini, Franco Giorgi, Anna Maria Fausto
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引用次数: 27

摘要

这项研究表明,成纤维细胞迁移到胶原基质释放大量的微泡到周围的培养基中。通过在远离细胞起源的基质区域扩散,微泡携带金属蛋白酶9 (MMP-9)作用于胶原原纤维。因此,胶原基质逐渐从层状结构转变为纤维状结构。western blots和明胶酶谱图显示,MMP-9作为92 kDa的前体分泌,并在82 kDa的产物释放到培养基中时被激活。激活在三维条件下比在二维条件下更有效。虽然MMP-9标记与聚集在微泡内的腔内小泡有关,但微泡的整合素β1标记物与外膜结合。腔内小泡是从皮质细胞质中招募来的,并在微泡内上传后最终释放。在这里,我们提出腔内小泡与外微泡膜的融合可以作为一种机制来控制MMP-9首先被激活然后释放到细胞外的程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Microvesicles shed from fibroblasts act as metalloproteinase carriers in a 3-D collagen matrix.

Microvesicles shed from fibroblasts act as metalloproteinase carriers in a 3-D collagen matrix.

Microvesicles shed from fibroblasts act as metalloproteinase carriers in a 3-D collagen matrix.

Microvesicles shed from fibroblasts act as metalloproteinase carriers in a 3-D collagen matrix.

This study shows that fibroblasts migrating into a collagen matrix release numerous microvesicles into the surrounding medium. By spreading in regions of the matrix far distant from cells of origin, microvesicles carry metalloproteinase 9 (MMP-9) to act upon the collagen fibrils. As a result, the collagen matrix is gradually transformed from a laminar to a fibrillar type of architecture. As shown by western blots and gelatin zymography, MMP-9 is secreted as a 92 kDa precursor and activated upon release of 82 kDa product into the culture medium. Activation is more efficient under three-dimensional than in two-dimensional culturing conditions. While MMP-9 labeling is associated with intraluminal vesicles clustered inside the microvesicles, the microvesicle's integrin β1 marker is bound to the outer membrane. The intraluminal vesicles are recruited from the cortical cytoplasm and eventually released following uploading inside the microvesicle. Here, we propose that fusion of the intraluminal vesicles with the outer microvesicle's membrane could work as a mechanism controlling the extent to which MMP-9 is first activated and then released extracellularly.

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来源期刊
Journal of Circulating Biomarkers
Journal of Circulating Biomarkers Medicine-Biochemistry (medical)
CiteScore
3.20
自引率
0.00%
发文量
9
审稿时长
8 weeks
期刊介绍: Journal of Circulating Biomarkers is an international, peer-reviewed, open access scientific journal focusing on all aspects of the rapidly growing field of circulating blood-based biomarkers and diagnostics using circulating protein and lipid markers, circulating tumor cells (CTC), circulating cell-free DNA (cfDNA) and extracellular vesicles, including exosomes, microvesicles, microparticles, ectosomes and apoptotic bodies. The journal publishes high-impact articles that deal with all fields related to circulating biomarkers and diagnostics, ranging from basic science to translational and clinical applications. Papers from a wide variety of disciplines are welcome; interdisciplinary studies are especially suitable for this journal. Included within the scope are a broad array of specialties including (but not limited to) cancer, immunology, neurology, metabolic diseases, cardiovascular medicine, regenerative medicine, nosology, physiology, pathology, technological applications in diagnostics, therapeutics, vaccine, drug delivery, regenerative medicine, drug development and clinical trials. The journal also hosts reviews, perspectives and news on specific topics.
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