Role of Candidate Alleles in Cognitive Outcome After TBI
Role of Candidate Alleles in Cognitive Outcome After TBI
批准号:
7272692
负责人:
Thomas McAllister
金额:
$37.9万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-09-30 至 2009-07-31
关键词:
AffectAgeAllelesAmericanAttentionBrainCandidate Disease GeneCatecholaminesCause of DeathCerebrumChildCholinergic AgentsCognitiveCognitive deficitsDevelopmentDistressFunctional Magnetic Resonance ImagingGenesGeneticGenetic PolymorphismGenotypeImpaired cognitionImpairmentIndividualInjuryLifeMemoryMetabolismMultivariate AnalysisNeurocognitiveNeuronal PlasticityNeuronsNeurophysiology - biologic functionNumbersOutcomeParticipantPatternPerformancePharmacological TreatmentPublic HealthRecoveryRoleShort-Term MemorySourceSubgroupSurvivorsSystemTraumatic Brain InjuryTreatment Protocolscholinergiccognitive functiondesigndisabilitygenetic profilingneurochemistryneuromechanismneuropathologyrelating to nervous systemrepairedresponsetrauma centersuptake
中文摘要
描述(由申请人提供):创伤性脑损伤(TBI)是年龄以下儿童死亡和残疾的主要原因,超过500万美国人患有TBI相关残疾。认知缺陷,特别是在记忆和注意力领域,是创伤性脑损伤幸存者痛苦和残疾的主要来源。然而,影响认知结果的因素知之甚少。特定的遗传特征可能以重要的方式对神经创伤和认知结果的反应做出贡献。TBI的神经病理学,以及记忆和注意力的神经化学表明,调节胆碱能和儿茶酚胺能功能的基因,以及对神经修复和可塑性重要的系统是有吸引力的候选基因。我们假设个体的等位基因,减少中央儿茶酚胺/胆碱能紧张,并减少神经元修复/可塑性将显示更大的认知缺陷损伤后一个月和损伤后一年的认知功能改善较少比那些交替等位基因。我们进一步假设,基因型会影响大脑激活模式,在认知挑战任务。具体而言,具有降低中枢儿茶酚胺能/胆碱能紧张的等位基因的个体将显示记忆和注意力网络回路的激活减少,并且这种激活减少将与较差的认知表现相关。两个创伤中心收治的250名连续TBI患者将对影响中枢儿茶酚胺能/胆碱能张力和神经元修复/可塑性的13个候选等位基因进行基因分型。所有参与者将在受伤后一个月和一年进行标准化的神经认知评估。一个随机选择的参与者小组也将接受功能磁共振成像,同时执行记忆,注意力和额叶执行任务。将使用协方差的多变量分析来确定单个和多个候选等位基因对损伤后一个月的认知功能的影响以及损伤后一年的改善程度,将使用fMRI来表征基因型对脑激活的影响的神经机制。这项研究将产生重要的信息,对认知缺陷的遗传基础TBI。了解认知结果背后的遗传因素将允许开发真正个性化的药物治疗方案,旨在改善巨大的公共卫生问题的破坏性认知后遗症。
英文摘要
DESCRIPTION (provided by applicant): Traumatic brain injury (TBI) is a leading cause of death and disability in children under age, and over five million Americans live with a TBI-related disability. Cognitive deficits, particularly in the domains of memory and attention, are the major source of distress and disability in TBI survivors. However factors influencing cognitive outcome are poorly understood. Specific genetic profiles may contribute in important ways to response to neurotrauma and cognitive outcomes. The neuropathology of TBI, and the neurochemistry of memory and attention suggest that genes that modulate cholinergic and catecholaminergic function, and systems important to neural repair and plasticity are attractive candidate genes. We hypothesize individuals with alleles that reduce central catecholaminergic/cholinergic tone, and that reduce neuronal repair/plasticity will show greater cognitive deficits one month after injury and less improvement in cognitive function one year after injury than those with alternate alleles. We further hypothesize that genotype will influence cerebral activation patterns in response to cognitive challenge tasks. Specifically individuals with alleles that reduce central catecholaminergic/cholinergic tone will show reduced activation in memory and attention network circuitry and this reduced activation will correlate with poorer cognitive performance. 250 consecutive individuals with TBI admitted to two trauma centers will undergo genotyping for an ensemble of 13 candidate alleles impacting on central catecholaminergic/ cholinergic tone and neuronal repair/plasticity. All participants will undergo a standardized neurocognitive assessment one month and one year after injury. A randomly selected subgroup of participants will also undergo fMRI while performing memory, attention, and frontal-executive tasks. A multivariate analysis of co-variance will be used to determine the effects of single and multiple candidate alleles on cognitive function one month after injury and the degree of improvement one year after injury, fMRI will be used to characterize the neural mechanisms underlying the influence of genotype on cerebral activation. This study will yield important information on the genetic underpinnings of cognitive deficits following TBI. Understanding of the genetic factors underlying cognitive outcomes will allow the development of truly individualized pharmacological treatment regimens designed to ameliorate the devastating cognitive sequelae of an enormous public health problem.
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