Inhibition of the Activities of Matrix Metalloproteinases 2, 8, and 9 by Chlorhexidine
Ингибирование активности матричных металлопротеиназ 2, 8 и 9 хлоргексидином
1999-05-01
SCID: 54.1/ancbpkgz
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APMA activation (p-aminophenylmercuric acetate)Calcium chloride modulationCation-chelating mechanismChlorhexidine (CHX)Gelatin degradation assay (SDS-PAGE, Coomassie staining)MMP-2 (gelatinase A)MMP-8 (collagenase 2)MMP-9 (gelatinase B)Matrix metalloproteinasesPMA-triggered neutrophils (polymorphonuclear leukocytes)
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Abstract (AI)
Matrix metalloproteinases (MMPs) are a host cell-derived proteolytic enzyme family which plays a major role in tissue-destructive inflammatory diseases such as periodontitis. The aim of the present study was to evaluate the inhibitory effect of chlorhexidine (CHX) on MMP-2 (gelatinase A), MMP-9 (gelatinase B), and MMP-8 (collagenase 2) activity. Heat-denatured type I collagen (gelatin) was incubated with pure human MMP-2 or -9 activated with p-aminophenylmercuric acetate (APMA), and the proteolytic degradation of gelatin was monitored by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and Coomassie blue staining. The effect of CHX on MMP-8 activity was also studied with a cellular model addressing the ability of phorbol myristate acetate (PMA)-triggered human peripheral blood neutrophils (polymorphonuclear leukocytes [PMNs]) to degrade native type I collagen. CHX inhibited the activities of both gelatinases (A and B), but MMP-2 appeared to be more sensitive than MMP-9. Adding calcium chloride to the assay mixtures almost completely prevented the inhibition of MMP-9 activity by CHX, while the inhibition of MMP-2 activity could be reversed only when CHX was used at a low concentration. This observation suggests that CHX may act via a cation-chelating mechanism. CHX dose-dependently inhibited collagenolytic activity of MMP-8 released by PMA-triggered PMNs. MMP-8 without APMA activation was inhibited clearly more efficiently than APMA-activated MMP-8. Our study suggests that the direct inhibition of the MMPs' activities by CHX may represent a new valuable effect of this antimicrobial agent and explains, at least in part, the beneficial effects of CHX in the treatment of periodontitis.
Key Findings
1
Addition of calcium chloride almost completely prevents CHX inhibition of MMP-9, while MMP-2 inhibition is reversible only at low CHX concentrations, suggesting a cation-chelating mechanism.
2
CHX dose-dependently inhibits collagenolytic activity of MMP-8 released by PMA-triggered human neutrophils, with non-APMA-activated MMP-8 being inhibited more effectively than APMA-activated MMP-8.
3
Chlorhexidine (CHX) directly inhibits the activities of MMP-2 (gelatinase A) and MMP-9 (gelatinase B).
4
Direct inhibition of MMP activities by CHX may contribute to its beneficial effects in treating periodontitis.
5
MMP-2 is more sensitive to CHX inhibition than MMP-9.
Research Object
Matrix metalloproteinases MMP-2, MMP-8, and MMP-9 activities
Research Subject
Inhibitory effects and mechanisms of chlorhexidine (CHX) on the proteolytic (gelatinolytic and collagenolytic) activity of MMP-2, MMP-8, and MMP-9, including dose dependence and cation-chelating involvement
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1999-05-01
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