The role of creatine in health and disease
The role of creatine in health and disease
批准号:
7348098
负责人:
WILLIAM James CRAIGEN
金额:
$20.03万
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-07-01 至 2010-06-30
关键词:
AddressAffectAmyotrophic Lateral SclerosisAnabolismAnimalsAreaBiochemicalBioenergeticsBiological AssayBrainCell DeathClinicalCreatineCreatine KinaseDeformityDiseaseDisease modelEarly treatmentElectrophysiology (science)EnzymesExercise ToleranceExercise stress testFiberFunctional disorderGlycine amidinotransferaseGoalsGrowthHealthHereditary DiseaseHomeostasisHumanHuntington DiseaseHypoxiaInborn Errors of MetabolismIndirect CalorimetryInfantInheritedInjuryIschemic Brain InjuryIsoenzymesLearningLiquid substanceMagnetic Resonance SpectroscopyMental RetardationMetabolic DiseasesMitochondriaModelingMusMuscleMuscle FibersNeonatal ScreeningNeurologicNeuronsNeuroprotective AgentsNewborn InfantOralOrganParkinson DiseasePathologicPathway interactionsPatientsPharmaceutical PreparationsPhenotypePhosphocreatinePhysiologicalPolarographyPredispositionPreparationPrincipal InvestigatorProductionResearchResearch PersonnelRespirationRespiratory ChainRoleSeizuresSkinSliceStressSupplementationSynaptic plasticityTissuesbehavior testclassical conditioningconditioned fearinsightinterestmorris water mazemouse modelmutantnervous system disordernovelpreventprophylacticprotective effectresponse
中文摘要
描述(由申请人提供):肌酸(Cr)是具有高能量需求的组织中细胞能量储存和产生的重要组分。 人类肌酸缺乏症是由一小群罕见的先天性代谢缺陷引起的,这些缺陷涉及合成和运输。 相比之下,补充肌酸据称对肌萎缩侧索硬化症、亨廷顿病和帕金森病疾病模型的神经系统进展具有保护作用。 此外,在动物中预防性给予肌酸似乎在创伤性和缺血性脑损伤模型中具有神经保护作用。
肌酸的最重要的利用发生在肌肉和大脑中。 在这些器官中,肌酸和磷酸肌酸与肌酸激酶同工酶和ATP/ADP一起提供能量的主要储备。 肌酸合成途径中的第一种酶精氨酸:甘氨酸脒基转移酶(AGAT)的缺乏在人类中导致肌酸合成的完全缺乏和严重的神经系统后遗症,包括智力迟钝和自闭症特征。 然而,新生儿表现正常,早期治疗可消除神经损伤。 因此,肌酸缺乏似乎是一个很好的候选新生儿筛查。
使用AGAT缺陷的小鼠模型,本申请的目标是提供关于学习和突触可塑性的这种遗传性代谢疾病的病理机制的见解。 研究人员将使用行为测试结合电生理检查神经表型及其对肌酸补充的反应。 他们也有兴趣了解肌酸缺乏对肌肉生物能量学的影响,使用各种生理和生物化学测定,包括运动测试,组织和液体分析,磁共振光谱,以及皮肤肌纤维的线粒体呼吸。 还将研究口服肌酸作为神经保护剂的作用,通过确定癫痫发作诱导的阈值和对缺氧损伤的敏感性。 这些研究将为可筛选的人类疾病以及更广泛的生物医学问题提供见解。
英文摘要
DESCRIPTION (provided by applicant): Creatine (Cr) is an essential component of cellular energy storage and production in tissues with high energy requirements. Creatine deficiency in humans is caused by a small group of rare inborn errors of metabolism involving synthesis and transport. In contrast, creatine supplementation is purported to have a protective effect on neurologic progression in disease models of amyotrophic lateral sclerosis, Huntington's disease, and Parkinson's disease. Furthermore, prophylactic creatine administration in animals appears to be neuroprotective in models of traumatic and ischemic brain injuries.
The most significant utilization of creatine occurs in muscle and brain. In these organs, creatine and phosphocreatine, together with creatine kinase isozymes and ATP/ADP, provide the major reserve of energy. Deficiency of the first enzyme in the creatine synthetic pathway, arginine:glycine amidinotransferase (AGAT), in humans leads to complete deficiency of creatine synthesis and severe neurological sequelae, including mental retardation and autistic features. However, newborns appear normal and early treatment may eliminate neurologic injury. Thus, creatine deficiency appears to be an excellent candidate for newborn screening.
Using a mouse model of AGAT deficiency, the goal of this application is to provide insights into the pathologic mechanisms of this inherited metabolic disease with regard to learning and synaptic plasticity. The investigators will use behavioral testing in conjunction with electrophysiology to examine the neurologic phenotype and its response to creatine supplementation. They are also interested in understanding the effect of creatine deficiency on muscle bioenergetics using various physiologic and biochemical assays, including exercise testing, tissue and fluid analytes, magnetic resonance spectroscopy, and mitochondrial respiration with skinned muscle fibers. Also to be investigated are the effects of oral creatine administration as a neuroprotective agent by determining the threshold for seizure induction and sensitivity to hypoxic injury. These studies will provide insights into a screenable human disorder as well as broader biomedical issues.
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会议论文
STRUCTURE-FUNCTION STUDIES OF MITOCHONDRIA
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批准号:8168578
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项目类别:
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资助金额:$2.15万
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财政年份:2010
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负责人:WILLIAM James CRAIGEN
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GLUCOSE KINETICS IN SUBJECTS WITH MELAS SYNDROME
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依托单位:
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批准号:7002335
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依托单位:
PILOT STUDY--BAYLOR CHILD HEALTH RESEARCH CENTER
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The Role of Mitochondrial VDACs in Apoptosis
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财政年份:2001
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依托单位:
The Role of Mitochondrial VDACs in Apoptosis
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The Role of Mitochondrial VDACs in Apoptosis
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财政年份:1997
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负责人:WILLIAM James CRAIGEN
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依托单位:
GENETIC APPROACHES TO MITOCHONDRIAL VDAC FUNCTION
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海外基金