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脑机接口时代,我们还能做什么?——脑科学驱动下的神经外科蜕变与新生
Novel Materials Chemistry for Energy and Environmental Applications
清华大学材料科学与工程研究院《材料科学论坛》:超快激光诱导玻璃微纳结构—现象、机...
创新药可及的全球视野和中国现状
报告题目:
Cellular and molecular mechanisms of arterial stiffness
 报告人:
Alberto Avolio
Professor of Biomedical Engineering, 
Australian School of Advanced Medicine, 
Macquarie University, Sydney, Australia
报告时间:
2010-11-30 14:00
报告地点:
B-321, Medical Science Building
主办单位:
医学院
  简介:
Stiffness of the aorta, measured as pulse wave velocity (PWV), is a major cause of increased pulse pressure leading to isolated systolic hypertension in the elderly. It is now accepted as significant predictor of cardiovascular risk. However, progression of arterial stiffness can vary markedly in different populations.
While arterial stiffness is well understood in relation to arterial mechanics, the fundamental cellular and molecular mechanisms underlying the structural modifications of the arterial wall leading to altered mechanical stiffness are gradually being established. These include cell signaling pathways affecting protein modification leading to alteration of the extracellular matrix (ECM) of the artery wall. Two mechanisms will be presented: (i) arterial calcification mediated by the vascular smooth muscle cells (VSMC); (ii) ECM modification due to cross-linking of matrix components mediated by nitric oxide (NO) pathways in the endothelial cell.
 
The elucidation of the interaction of cellular and ECM processes affecting arterial stiffness is an important advance in the search for possible therapies to counteract the detrimental effects of increased pulse pressure due to stiffness of large arteries. Once the pathways are identified, target molecules can be interrogated pharmacologically to arrest mineral deposits or reduce crosslinking of ECM components.
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