钙化
小泡
纤维帽
微钙化
细胞外小泡
钙质沉着
自愈水凝胶
病理
细胞外
化学
细胞生物学
材料科学
生物物理学
医学
生物
生物化学
内科学
癌症
有机化学
乳腺癌
乳腺摄影术
膜
作者
Joshua D. Hutcheson,Claudia Goettsch,Sérgio Bertazzo,Natalia Maldonado,Jessica Ruiz,Wilson Wen Bin Goh,Katsumi Yabusaki,Tyler Faits,Carlijn V. C. Bouten,G Franck,Thibaut Quillard,Peter Libby,Masanori Aikawa,Sheldon Weinbaum,Elena Aïkawa
出处
期刊:Nature Materials
[Springer Nature]
日期:2016-01-11
卷期号:15 (3): 335-343
被引量:383
摘要
Clinical evidence links arterial calcification and cardiovascular risk. Finite-element modelling of the stress distribution within atherosclerotic plaques has suggested that subcellular microcalcifications in the fibrous cap may promote material failure of the plaque, but that large calcifications can stabilize it. Yet the physicochemical mechanisms underlying such mineral formation and growth in atheromata remain unknown. Here, by using three-dimensional collagen hydrogels that mimic structural features of the atherosclerotic fibrous cap, and high-resolution microscopic and spectroscopic analyses of both the hydrogels and of calcified human plaques, we demonstrate that calcific mineral formation and maturation results from a series of events involving the aggregation of calcifying extracellular vesicles, and the formation of microcalcifications and ultimately large calcification areas. We also show that calcification morphology and the plaque's collagen content-two determinants of atherosclerotic plaque stability-are interlinked.
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