This study focused on the association of extrinsic alkaline phosphatase (AP) activity with both early and advanced calcification of glutaraldehyde-pretreated bovine pericardial bioprosthetic (GPBP) tissue, and the inhibition of both calcification and AP activity by pre-incubation in diphosphonates (sodium-ethanehydroxydiphosphonate [NaEHDP], aminopropanehydroxydiphosphonate [APD]) and metallic salts (FeCl3 Ga(NO3)3, AlCl3). GPBP specimens were implanted subcutaneously in 3 wk old male rats after ore-incubation. Following explantation of the tissue at 72 h and 21 d, calcification was assessed morphologically by light microscopy and chemically by atomic adsorption spectroscopy for calcium content and by molybdate complexation for phosphorus. ...
Alkaline phosphatase (ALP) is important in calcification and its expression seems to be associated w...
Initiation of mineralization in bioprosthetic heart valves: Studies of alkaline phosphatase activity...
Objectives: Pyrophosphate (PPi) is a potent inhibitor of ectopic mineralization but its role during ...
The principal cause of the clinical failure of bioprosthetic heart valves fabricated from glutaralde...
Calcification is a frequent cause of the clinical failure of bioprosthetic heart valves fabricated f...
Calcification has limited the clinical utility of bioprosthetic heart valves fabricated from either ...
Calcification (CALC) of bioprosthetic heart valves (BHVs) fabricated from either glutaraldehyde-pret...
Calcification is the most frequent cause of clinical dysfunction of glutaraldehyde treated bioprosth...
Calcification is the major factor limiting the clinical use of bioprostheses. It may be prevented by...
Calcification is the principal cause of the clinical failure of bioprosthetic heart valves fabricate...
ObjectiveOur objective was to evaluate the effects of glutaraldehyde (GA) concentration, time of pre...
Calcification (CALC) is the most frequent cause for the failure of bioprosthetic heart valves fabric...
The purpose of this study was to determine if phosphocitrate (PC), a naturally occurring inhibitor o...
BACKGROUND AND AIM OF THE STUDY: Glutaraldehyde is considered a promoter of calcification by the act...
Calcification of bioprosthetic heart valves fabricated from glutaraldehyde pretreated bovine pericar...
Alkaline phosphatase (ALP) is important in calcification and its expression seems to be associated w...
Initiation of mineralization in bioprosthetic heart valves: Studies of alkaline phosphatase activity...
Objectives: Pyrophosphate (PPi) is a potent inhibitor of ectopic mineralization but its role during ...
The principal cause of the clinical failure of bioprosthetic heart valves fabricated from glutaralde...
Calcification is a frequent cause of the clinical failure of bioprosthetic heart valves fabricated f...
Calcification has limited the clinical utility of bioprosthetic heart valves fabricated from either ...
Calcification (CALC) of bioprosthetic heart valves (BHVs) fabricated from either glutaraldehyde-pret...
Calcification is the most frequent cause of clinical dysfunction of glutaraldehyde treated bioprosth...
Calcification is the major factor limiting the clinical use of bioprostheses. It may be prevented by...
Calcification is the principal cause of the clinical failure of bioprosthetic heart valves fabricate...
ObjectiveOur objective was to evaluate the effects of glutaraldehyde (GA) concentration, time of pre...
Calcification (CALC) is the most frequent cause for the failure of bioprosthetic heart valves fabric...
The purpose of this study was to determine if phosphocitrate (PC), a naturally occurring inhibitor o...
BACKGROUND AND AIM OF THE STUDY: Glutaraldehyde is considered a promoter of calcification by the act...
Calcification of bioprosthetic heart valves fabricated from glutaraldehyde pretreated bovine pericar...
Alkaline phosphatase (ALP) is important in calcification and its expression seems to be associated w...
Initiation of mineralization in bioprosthetic heart valves: Studies of alkaline phosphatase activity...
Objectives: Pyrophosphate (PPi) is a potent inhibitor of ectopic mineralization but its role during ...