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http://acervodigital.unesp.br/handle/11449/74242
- Title:
- Effect of phosphoric acid on the degradation of human dentin matrix
- University of Turku
- Georgia Health Sciences University
- Universidade Estadual Paulista (UNESP)
- University of Trieste
- University of Bologna
- Oulu University Hospital
- Graduate School of Medicine, Dentistry and Pharmaceutical Sciences
- Unit of Bologna C/o IOR
- 0022-0345
- 1544-0591
- This study determined if dentin proteases are denatured by phosphoric acid (PA) used in etch-and-rinse dentin adhesives. Dentin beams were completely demineralized with EDTA for 30 days. We acid-etched experimental groups by exposing the demineralized dentin beams to 1, 10, or 37 mass% PA for 15 sec or 15 min. Control beams were not exposed to PA but were incubated in simulated body fluid for 3 days to assay their total endogenous telopeptidase activity, by their ability to solubilize C-terminal crosslinked telopeptides ICTP and CTX from insoluble dentin collagen. Control beams released 6.1 ± 0.8 ng ICTP and 0.6 ± 0.1 ng CTX/mg dry-wt/3 days. Positive control beams pre-incubated in p-aminophenylmercuric acetate, a compound known to activate proMMPs, released about the same amount of ICTP peptides, but released significantly less CTX. Beams immersed in 1, 10, or 37 mass% PA for 15 sec or 15 min released amounts of ICTP and CTX similar to that released by the controls (p > 0.05). Beams incubated in galardin, an MMP inhibitor, or E-64, a cathepsin inhibitor, blocked most of the release of ICTP and CTX, respectively. It is concluded that PA does not denature endogenous MMP and cathepsin activities of dentin matrices. © 2013 International & American Associations for Dental Research.
- 1-Jan-2013
- Journal of Dental Research, v. 92, n. 1, p. 87-91, 2013.
- 87-91
- bonding
- cathepsins
- collagen
- demineralized
- MMPs
- 4 aminophenylmercuriacetate
- 4-aminophenylmercuriacetate
- cathepsin
- collagen type 1
- collagen type I trimeric cross linked peptide
- collagen type I trimeric cross-linked peptide
- collagenase
- cysteine proteinase inhibitor
- dipeptide
- drug derivative
- enzyme activator
- enzyme precursor
- ilomastat
- leucine
- matrix metalloproteinase
- matrix metalloproteinase inhibitor
- n [n (3 carboxyoxirane 2 carbonyl)leucyl]agmatine
- peptide
- peptide hydrolase
- phenylmercuric acetate
- phosphoric acid
- thiol reagent
- dentin
- drug antagonism
- drug effect
- enzymology
- human
- materials testing
- protein denaturation
- time
- Cathepsins
- Collagen Type I
- Collagenases
- Cysteine Proteinase Inhibitors
- Dentin
- Dipeptides
- Enzyme Activators
- Enzyme Precursors
- Humans
- Leucine
- Materials Testing
- Matrix Metalloproteinase Inhibitors
- Matrix Metalloproteinases
- Peptide Hydrolases
- Peptides
- Phenylmercuric Acetate
- Phosphoric Acids
- Protein Denaturation
- Sulfhydryl Reagents
- Time Factors
- http://dx.doi.org/10.1177/0022034512466264
- Acesso restrito
- outro
- http://repositorio.unesp.br/handle/11449/74242
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