Effect of Systemic Tetracycline on the Degradation of Tetracycline‐Impregnated Bilayered Collagen Membranes: An Animal Study
Identifieur interne : 001E31 ( Istex/Checkpoint ); précédent : 001E30; suivant : 001E32Effect of Systemic Tetracycline on the Degradation of Tetracycline‐Impregnated Bilayered Collagen Membranes: An Animal Study
Auteurs : Ofer Moses [Israël] ; Tami Frenkel [Israël] ; Haim Tal [Israël] ; Miron Weinreb [Israël] ; Michael M. Bornstein [Suisse] ; Carlos E. Nemcovsky [Israël]Source :
- Clinical Implant Dentistry and Related Research [ 1523-0899 ] ; 2010-12.
Descripteurs français
- Wicri :
- topic : étude comparative, Médecine dentaire.
English descriptors
- KwdEn :
- Antibacterial dose, Aviv, Aviv university, Barrier membranes, Baseline, Bilayered collagen membranes, Biomed mater, Body weight, Bone regeneration, Bony defects, Catalytic activities, Cell exclusion, Clin, Clin periodontol, Clinical implant dentistry, Collagen, Collagen area, Collagen barriers, Collagen matrices, Collagen membranes, Collagen values, Comparative study, Concentration immersion figure, Connective tissue breakdown, Control group, Control groups, Defect, Degradation, Delays degradation, Dental medicine, Different collagen membranes, Different tetracycline, Formic acid, Gabriela goldschleger school, Histologic study, Histological, Histological view, Immersion, Implant, Implantation, Implantation decreases, Matrix metalloproteinases, Membrane, Membrane disks, Membrane thickness, Nonimpregnated membranes, Ofer moses, Oral maxillofac implants, Parietal bone, Periodontal, Periodontol, Present study, Regeneration, Residual, Residual collagen, Residual collagen area, Residual membrane thickness, Room temperature, Saline injections, Soft tissues, Study group, Systemic, Systemic administration, Tami frenkel, Tetracycline, Tissue regeneration, Wound healing, Zymed laboratories.
- Teeft :
- Antibacterial dose, Aviv, Aviv university, Barrier membranes, Baseline, Bilayered collagen membranes, Biomed mater, Body weight, Bone regeneration, Bony defects, Catalytic activities, Cell exclusion, Clin, Clin periodontol, Clinical implant dentistry, Collagen, Collagen area, Collagen barriers, Collagen matrices, Collagen membranes, Collagen values, Comparative study, Concentration immersion figure, Connective tissue breakdown, Control group, Control groups, Defect, Degradation, Delays degradation, Dental medicine, Different collagen membranes, Different tetracycline, Formic acid, Gabriela goldschleger school, Histologic study, Histological, Histological view, Immersion, Implant, Implantation, Implantation decreases, Matrix metalloproteinases, Membrane, Membrane disks, Membrane thickness, Nonimpregnated membranes, Ofer moses, Oral maxillofac implants, Parietal bone, Periodontal, Periodontol, Present study, Regeneration, Residual, Residual collagen, Residual collagen area, Residual membrane thickness, Room temperature, Saline injections, Soft tissues, Study group, Systemic, Systemic administration, Tami frenkel, Tetracycline, Tissue regeneration, Wound healing, Zymed laboratories.
Abstract
Background: Premature collagen membrane degradation may compromise the outcome of osseous regenerative procedures. Tetracyclines (TTCs) inhibit the catalytic activities of human metalloproteinases. Preprocedural immersion of collagen membranes in TTC and systemic administration of TTC may be possible alternatives to reduce the biodegradation of native collagen membranes.
Url:
DOI: 10.1111/j.1708-8208.2009.00173.x
Affiliations:
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ISTEX:482919BE254E3964A29063AFB23DBE4E0E884F23Le document en format XML
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<term>Aviv university</term>
<term>Barrier membranes</term>
<term>Baseline</term>
<term>Bilayered collagen membranes</term>
<term>Biomed mater</term>
<term>Body weight</term>
<term>Bone regeneration</term>
<term>Bony defects</term>
<term>Catalytic activities</term>
<term>Cell exclusion</term>
<term>Clin</term>
<term>Clin periodontol</term>
<term>Clinical implant dentistry</term>
<term>Collagen</term>
<term>Collagen area</term>
<term>Collagen barriers</term>
<term>Collagen matrices</term>
<term>Collagen membranes</term>
<term>Collagen values</term>
<term>Comparative study</term>
<term>Concentration immersion figure</term>
<term>Connective tissue breakdown</term>
<term>Control group</term>
<term>Control groups</term>
<term>Defect</term>
<term>Degradation</term>
<term>Delays degradation</term>
<term>Dental medicine</term>
<term>Different collagen membranes</term>
<term>Different tetracycline</term>
<term>Formic acid</term>
<term>Gabriela goldschleger school</term>
<term>Histologic study</term>
<term>Histological</term>
<term>Histological view</term>
<term>Immersion</term>
<term>Implant</term>
<term>Implantation</term>
<term>Implantation decreases</term>
<term>Matrix metalloproteinases</term>
<term>Membrane</term>
<term>Membrane disks</term>
<term>Membrane thickness</term>
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<term>Ofer moses</term>
<term>Oral maxillofac implants</term>
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<term>Periodontal</term>
<term>Periodontol</term>
<term>Present study</term>
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<term>Residual collagen area</term>
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<term>Room temperature</term>
<term>Saline injections</term>
<term>Soft tissues</term>
<term>Study group</term>
<term>Systemic</term>
<term>Systemic administration</term>
<term>Tami frenkel</term>
<term>Tetracycline</term>
<term>Tissue regeneration</term>
<term>Wound healing</term>
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<term>Aviv university</term>
<term>Barrier membranes</term>
<term>Baseline</term>
<term>Bilayered collagen membranes</term>
<term>Biomed mater</term>
<term>Body weight</term>
<term>Bone regeneration</term>
<term>Bony defects</term>
<term>Catalytic activities</term>
<term>Cell exclusion</term>
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<term>Clin periodontol</term>
<term>Clinical implant dentistry</term>
<term>Collagen</term>
<term>Collagen area</term>
<term>Collagen barriers</term>
<term>Collagen matrices</term>
<term>Collagen membranes</term>
<term>Collagen values</term>
<term>Comparative study</term>
<term>Concentration immersion figure</term>
<term>Connective tissue breakdown</term>
<term>Control group</term>
<term>Control groups</term>
<term>Defect</term>
<term>Degradation</term>
<term>Delays degradation</term>
<term>Dental medicine</term>
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<term>Gabriela goldschleger school</term>
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<term>Histological</term>
<term>Histological view</term>
<term>Immersion</term>
<term>Implant</term>
<term>Implantation</term>
<term>Implantation decreases</term>
<term>Matrix metalloproteinases</term>
<term>Membrane</term>
<term>Membrane disks</term>
<term>Membrane thickness</term>
<term>Nonimpregnated membranes</term>
<term>Ofer moses</term>
<term>Oral maxillofac implants</term>
<term>Parietal bone</term>
<term>Periodontal</term>
<term>Periodontol</term>
<term>Present study</term>
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<term>Residual collagen</term>
<term>Residual collagen area</term>
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<term>Saline injections</term>
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<front><div type="abstract">Background: Premature collagen membrane degradation may compromise the outcome of osseous regenerative procedures. Tetracyclines (TTCs) inhibit the catalytic activities of human metalloproteinases. Preprocedural immersion of collagen membranes in TTC and systemic administration of TTC may be possible alternatives to reduce the biodegradation of native collagen membranes.</div>
</front>
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<tree><country name="Israël"><noRegion><name sortKey="Moses, Ofer" sort="Moses, Ofer" uniqKey="Moses O" first="Ofer" last="Moses">Ofer Moses</name>
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<name sortKey="Nemcovsky, Carlos E" sort="Nemcovsky, Carlos E" uniqKey="Nemcovsky C" first="Carlos E." last="Nemcovsky">Carlos E. Nemcovsky</name>
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