0000000000074449

AUTHOR

Marco Annunziata

0000-0003-4605-2087

showing 2 related works from this author

Clinical and Microbiologic Effects of Subgingival Controlled-Release Delivery of Chlorhexidine Chip in the Treatment of Periodontitis: A Multicenter …

2008

Background: The main therapeutic approach for periodontal diseases is mechanical treatment of root surfaces via scaling and root planing (SRP). Multicenter clinical trials have demonstrated that the adjunctive use of a chlorhexidine (CHX) chip is effective in improving clinical results compared to SRP alone. However, some recent studies failed to confirm these clinical results, and conflicting results were reported regarding the effects of the CHX chip on subgingival microflora. The aim of this study was to provide further data on the clinical and microbiologic effects of CHX chips when used as an adjunct to SRP. Methods: A total of 116 systemically healthy individuals with moderate to adva…

AdultDNA BacterialMalemedicine.drug_classBleeding on probingColony Count MicrobialDental PlaqueDentistryStatistics Nonparametriclaw.inventionBacteria AnaerobicScaling and root planingAntisepticRandomized controlled triallawChlorhexidine/therapeutic use controlled clinical trial drug delivery system periodontitis/therapymedicineHumansSingle-Blind MethodperiodontitisAgedPeriodontitischlorexidine; periodontitis; periodontitis/therapy; controlled clinical trial; drug delivery systems; chlorhexidine/therapeutic usebusiness.industryChlorhexidineChlorhexidinePeriodontologyMiddle Agedmedicine.diseaseClinical trialDelayed-Action PreparationsMultivariate AnalysisAnti-Infective Agents LocalDental ScalingPeriodonticsFemalePeriodontal Indexmedicine.symptombusinessmedicine.drugJournal of Periodontology
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Bacterial inactivation/sterilization by argon plasma treatment on contaminated titanium implant surfaces: in vitro study

2015

Background: Surface treatment by argon plasma is widely used as the last step of the manufacturing process of ti- tanium implant fixtures before their sterilization by gamma rays. The possibility of using such a technology in the daily clinical practice is particularly fascinating. The aim of the present study was to assess the effects of the argon plasma treatment on different titanium implant surfaces previously exposed in vitro to bacterial contamination. Material and Methods: Sterile c.p. titanium implant discs with turned (T, Sa: 0.8μm), sandblasted/acid-etched (SAE, Sa: 1.3μm) and titanium plasma sprayed (TPS, Sa: 3.0μm) surface were used in this study. A strain of Ag- gregatibacter a…

medicine.medical_specialtyTitanium implantMaterials sciencePlasma GasesSurface Propertieschemistry.chemical_elementPlasma treatmentOdontología02 engineering and technologyAggregatibacter actinomycetemcomitans03 medical and health sciences0302 clinical medicineArgon plasma titanium implant surface Aggregatibacter actinomycetemcomitans.Aggregatibacter actinomycetemcomitanmedicineIn vitro studyArgonGeneral DentistryDecontaminationDental ImplantsTitaniumColony-forming unitArgonBacteriaResearchRadiochemistrySterilization030206 dentistrySterilization (microbiology)Contamination:CIENCIAS MÉDICAS [UNESCO]021001 nanoscience & nanotechnologyCiencias de la saludSurgeryArgon plasmaOtorhinolaryngologychemistryUNESCO::CIENCIAS MÉDICASEquipment ContaminationSurgeryOral SurgeryTitanium implant surface0210 nano-technologyTitanium
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