DENTIN STRUCTURE, DEMINERALIZATION AND REMINERALIZATION
DENTIN STRUCTURE, DEMINERALIZATION AND REMINERALIZATION
批准号:
7904364
负责人:
GRAYSON W MARSHALL
金额:
$17.57万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-07-15 至 2011-08-31
关键词:
Acetic AcidsAcidsAffectApatitesBindingCattleCell NucleusCharacteristicsClinical TreatmentClinical TrialsCollagenCollagen FibrilComplexDental EnamelDental cariesDentinDentistryEffectivenessEnvironmentExposure toFoundationsHardnessHumanImageInterventionKineticsLactic acidLeadLesionLightMechanicsMethodsMicroscopyMineralsModelingNatureOperative Surgical ProceduresOralProcessPropertyProteinsRisk FactorsSolutionsStructureTechniquesTestingTissuesTooth structurebasedeciduous toothdemineralizationinsightmineralizationminimally invasivenanoindentationnanomechanicalnovel strategiespermanent toothremineralizationrepairedrestorationtrend
中文摘要
描述(由申请人提供):微创牙科的当前趋势强调活动性龋齿过程的逆转和修复是恢复受损组织的第一步。牙釉质矿化是一种公认的现象,其机制也已确立。牙本质矿化似乎是可能的,但由于其复杂的复合结构,尚未确定是否可以通过受累牙本质的矿化来恢复适当的机械功能。新的方法现在允许定量研究牙本质矿化的性质。我们试图定义与牙本质矿化相关的结构和性质变化,以深入了解控制机制,并帮助定义矿化组织的“质量”(水合弹性模量和硬度)。中心假设是,绑定,原纤内矿物质必须存在适当的机械功能。我们认为,这将是可能的,如果残余的磷灰石晶体留在纤维间室,为胶原纤维内的再矿化过程提供核。在目标1中。我们确定在pH = 5时,由致龋酸引起的原纤维内矿物质的脱矿作用是否比原纤维外矿物质的脱矿作用慢得多。目标2.确定牙本质龋的各个区域是否含有大量的原纤维内矿物质,以及这是否与恒牙和乳牙的管间牙本质的特征性整体性质相关。目标3.评价ART成功治疗的龋牙,以确定它们是否已功能化,而Aim 4。评价功能性再矿化策略:1)已被致龋酸脱矿的牙本质和2)大的天然龋性牙本质损伤的多个区域。龋齿(蛀牙)的临床治疗越来越保守,强调风险因素的管理和微创修复。临床医生认为,牙本质龋损在某些情况下会再硬化,但由于确切的情况尚不清楚,因此必须谨慎。强调再矿化的新方法得到了临床试验的支持,这些临床试验显示了有效性,但支持牙本质龋损功能性再矿化的科学证据还很薄弱。我们寻求提供必要的基础,定义功能性非商业化的条件。这将导致治疗,将修复牙本质,恢复其机械性能,并减少牙科修复干预的周期。
英文摘要
DESCRIPTION (provided by applicant): Current trends in minimally invasive dentistry emphasize the reversal and repair of the active caries process as a first step to restoring the damaged tissue. Enamel remineralization is an accepted phenomenon, and the mechanisms are established. Dentin remineralization appears to be possible, but due to its complex composite structure, it has not been established if proper mechanical function can be restored by remineralization of affected dentin. New methods now permit quantitative studies of the nature of dentin remineralization. We seek to define the structure and property changes associated with dentin remineralization to gain insight into the controlling mechanisms, and aid in defining the "quality" (hydrated elastic modulus and hardness) of the remineralized tissue. The central hypothesis is that bound, intrafibrillar mineral must be present for proper mechanical function. We contend that this will be possible if remnant apatite crystals remain in the intrafibrillar compartment to provide nuclei for the remineralization process within collagen fibrils. In Aim 1. we determine if much slower demineralization occurs for intrafibrillar mineral than for extrafibrillar mineral by cariogenic acids at pH = 5. Aim 2. determines if various zones of dentin caries contain substantial intrafibrillar mineral, and if this is associated with characteristic bulk properties of the intertubular dentin for permanent and primary teeth. Aim 3. evaluates carious teeth successfully treated by ART to determine if they have been functionally remineralized, while Aim 4. evaluates strategies for functionally remineralizing 1) dentin that has been demineralized by cariogenic acids and 2) multiple zones of large natural carious dentin lesions. Clinical treatment of caries (tooth decay) is increasingly more conservative and emphasizes management of risk factors and minimally invasive restoration. Clinicians believe that dentin caries lesions reharden under some circumstances, but are justifiably cautious since the exact conditions are unknown. New approaches emphasizing remineralization are supported by clinical trials showing effectiveness, yet the scientific evidence supporting functional remineralization efforts for dentin caries lesions is weak. We seek to provide the needed foundation that defines the conditions for functional remineralization. This will lead to therapies that will repair the dentin, restore its mechanical properties, and reduce the cycle of surgical-restorative interventions.
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DENTIN STRUCTURE, DEMINERALIZATION AND REMINERALIZATION
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