Nano-analytical electron microscopy reveals fundamental insights into human cardiovascular tissue calcification.

Details

Serval ID
serval:BIB_A8F4799000C2
Type
Article: article from journal or magazin.
Collection
Publications
Title
Nano-analytical electron microscopy reveals fundamental insights into human cardiovascular tissue calcification.
Journal
Nature materials
Author(s)
Bertazzo S., Gentleman E., Cloyd K.L., Chester A.H., Yacoub M.H., Stevens M.M.
ISSN
1476-4660 (Electronic)
ISSN-L
1476-1122
Publication state
Published
Issued date
06/2013
Peer-reviewed
Oui
Volume
12
Number
6
Pages
576-583
Language
english
Notes
Publication types: Journal Article ; Research Support, Non-U.S. Gov't
Publication Status: ppublish
Abstract
The accumulation of calcified material in cardiovascular tissue is thought to involve cytochemical, extracellular matrix and systemic signals; however, its precise composition and nanoscale architecture remain largely unexplored. Using nano-analytical electron microscopy techniques, we examined valves, aortae and coronary arteries from patients with and without calcific cardiovascular disease and detected spherical calcium phosphate particles, regardless of the presence of calcific lesions. We also examined lesions after sectioning with a focused ion beam and found that the spherical particles are composed of highly crystalline hydroxyapatite that crystallographically and structurally differs from bone mineral. Taken together, these data suggest that mineralized spherical particles may play a fundamental role in calcific lesion formation. Their ubiquitous presence in varied cardiovascular tissues and from patients with a spectrum of diseases further suggests that lesion formation may follow a common process. Indeed, applying materials science techniques to ectopic and orthotopic calcification has great potential to lend critical insights into pathophysiological processes underlying calcific cardiovascular disease.
Keywords
Aorta/pathology, Aorta/ultrastructure, Calcification, Physiologic, Calcinosis/pathology, Calcium Phosphates/analysis, Cardiomyopathies/pathology, Coronary Vessels/pathology, Coronary Vessels/ultrastructure, Durapatite/analysis, Heart Valve Diseases/pathology, Heart Valves/pathology, Heart Valves/ultrastructure, Humans, Microscopy, Electron/methods, Microscopy, Electron, Scanning, Nanotechnology/methods, Vascular Calcification/pathology
Pubmed
Web of science
Create date
12/01/2024 10:14
Last modification date
13/01/2024 7:10
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