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1.
Chinese Journal of Postgraduates of Medicine ; (36): 13-15, 2012.
Article in Chinese | WPRIM | ID: wpr-426916

ABSTRACT

ObjectiveTo observe the expression of bone sialoprotein(BSP) and matrix metalloproteinase-9 (MMP-9) in calcified valves of patients with rheumatic heart disease.MethodsA total of 150 mitral valves which were resected by surgery were divided into rheumatic group ( 120 valves) and nonrheumatic group (30 valves).Immunohistochemical staining was taken by SP method and the expressions of BSP and MMP-9 in two groups were observed and compared.ResultsThe positive expressions of BSP and MMP-9 in rheumatic group were 91.7%(110/120) and 90.8%(109/120),respectively,which were significantly higher than those in non-rheumatic group [23.3%(7/30) and 20.0%(6/30) ](P< 0.01 ).Conclusions The expressions of both BSP and MMP-9 are higher in the valves of patients with rheumatic heart disease.The calcification of rheumatic mitral valves is closely related with the degradation and remodeling of extracellular matrix caused by MMP-9,and osteoblast-like bone formation induced by BSP.

2.
Clinical Medicine of China ; (12): 1056-1058, 2012.
Article in Chinese | WPRIM | ID: wpr-419286

ABSTRACT

Objective To investigate the expression and significance of bone sialoprotein and matrix metalloproteinase-9 in calcified mitral valves in patients with rheumatic heart disease.Methods A total of 150 mitral valves were divided into the rheumatic group (n =120) and the non-rheumatic group (n =30 ).Expressions of bone sialoprotein and matrix metalloproteinase-9 were determined by immunohistochemistry.Results Expressions of bone sialoprotein ( 91.6%,x2 =56.6354 ) and matrix metalloproteinase-9 ( 90.8%,x2 =59.4272) in the rheumatic group increased significantly than in the non-rheumatic group (P < 0.01).Conclusion Both bone sialoprotein and matrix metalloproteinase-9 are highly expressed in the calcified rheumatic group.This suggests that caficify of rheumatic mitral valves is related with the degradation and remodeling of extra cellular matricx by matrix metalloproteinase-9,as well as osteoblastlike bone formation by bone sialoprotein.

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