Antimicrobial Nanocoating
Antimicrobial Nanocoating
批准号:
7622996
负责人:
R. Giles Dillingham
金额:
$11.51万
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-04-01 至 2009-08-31
关键词:
AdhesionsAntibioticsBacteriaBiocompatibleCathetersCeramicsCharacteristicsChemicalsComplexConditionCorrosionCountryCulture MediaDentalDental InstrumentsDepositionDepthDevelopmentDevicesDrainage procedureElectronsElevatorEngineeringEnvironmentEvaluationExcisionFailureFilmFree RadicalsFrictionGasesGoalsGovernmentGrowthHealth Care CostsHealthcareHealthcare IndustryHemodialysisHydrophobicityImplantIn VitroIncidenceIndwelling CatheterInfectionInvasiveIonsKnowledgeLaboratoriesLifeManufacturer NameMeasuresMechanical VentilatorsMechanicsMedicalMedical DeviceMetalsMicrobial BiofilmsMineralsMorphologyNanostructuresNosocomial InfectionsOperative Surgical ProceduresOrganismPatientsPerformancePersonsPhasePlasmaPlasticsPliabilityPlumbingPolymersPredispositionProceduresProcessPropertyProsthesisPurposeRangeReportingResistanceResourcesShapesSilverSmall Business Funding MechanismsSmall Business Innovation Research GrantStentsSterilitySterilization for infection controlStructureSurfaceSurgical InstrumentsTechniquesTechnologyTestingThickTimeTissuesTranslatingUreaseVirulentWorkabstractingantimicrobialbasebiomaterial compatibilityclinically significantcold temperaturecostevaluation/testinghydrophilicityin vivoinstrumentinterestmicroorganismnanocoatingnanostructurednovelpackaging materialpreventprogramsprototypesubmicronurinaryurologicvapor
中文摘要
6. 医院(医院获得性)感染是最常见的感染之一
英文摘要
6. Project summary/abstract Nosocomial (hospital acquired) infections represent one of the most
severe problems facing the health care industry. Of the approximately two million hospital acquired
infections reported annually in this country, about half are associated with catheters, ureteral stents,
central lines and other percutaneous devices that provide a support surface for organisms to track into
deeper tissue. A typical infection can cost as much as $47,000 per patient to treat. Although invasive
medical devices such as stents and catheters are pre-sterilized and inserted or implanted under the
most sterile conditions available; biofilm growth, encrustation, and subsequent infection are the most
common mode of failure. Coatings that could render these devices inherently resistant to biofilm
formation and encrustation could significantly reduce the incidence of infections and unnecessary
illness, allow better use of health care resources, reduce healthcare costs, and save lives.
Encrustation results from mineral incorporation into biofilms on device surfaces. These deposits inhibit
drainage; are virulent bacterial reservoirs; and increase susceptibility of the local tissues to infection.
Antibiotic strategies have proven to be of little value in preventing biofilm formation and encrustation
of stents and catheters. One technique for producing antimicrobial surfaces is to apply a coating which
is capable of releasing metal ions when exposed to moisture. Antimicrobial silver ions are particularly
useful for in vivo use due to the fact that they are not substantially absorbed into the body. In Phase I,
Brighton Technologies Group developed and characterized a novel antimicrobial nanocoating (AMNC)
based on gas-phase deposition of a silver salt-containing polymer that effectively inhibits biofilm
formation for a wide range of microorganisms. Phase II will extend these results to create an
antimicrobial surface that will inhibit biofilm formation and encrustation on medical devices such as
stents and indwelling catheters through:
1. Developing techniques for depositing these films on urinary devices such as ureteral stents,
Foley catheters, and ureteral catheters.
2. Evaluating important AMNC characteristics such as hydrophobicity/hydrophilicity, coefficient
of friction, adhesion and wear resistance.
3. Developing predictive knowledge of activity and effective lifetime of AMNC's as a function of
structure and composition.
4. Initiating in vivo performance and biocompatibility evaluations.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Antimicrobial Nanocoating
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批准号:6882225
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项目类别:
-
资助金额:$9.41万
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财政年份:2005
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负责人:R. Giles Dillingham
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依托单位:
Antimicrobial Nanocoating
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批准号:7495068
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项目类别:
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资助金额:$40.38万
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财政年份:2005
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负责人:R. Giles Dillingham
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依托单位:
Antimicrobial Nanocoating
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批准号:7276505
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项目类别:
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资助金额:$39.47万
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财政年份:2005
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负责人:R. Giles Dillingham
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依托单位:
海外基金