Mitochondrial, antioxidant and cognitive effects of Centella asiatica during aging
Mitochondrial, antioxidant and cognitive effects of Centella asiatica during aging
批准号:
9762849
负责人:
Nora Gray
金额:
$23.48万
依托单位国家:
美国
项目类别:
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-09-01 至 2021-08-31
关键词:
AcidsAcuteAddressAge-MonthsAge-associated memory impairmentAgingAlternative TherapiesAlzheimer&aposs DiseaseAlzheimer&aposs disease modelAmyloid beta-ProteinAntioxidantsAttenuatedAwardAyurvedic MedicineBasic ScienceBehavior assessmentBehavioralBiochemical PathwayBioenergeticsBiogenesisBiological ModelsBotanicalsBrainCell Culture TechniquesCell DeathCell LineChronicClinical TrialsCognitionCognitiveCommunicationComplementary and alternative medicineDataDevelopmentDevelopment PlansDietDietary InterventionElementsEvaluationExposure toFutureGene ExpressionGenesGoalsGotu kolaGrantHealthHealth SciencesHerbHumanImpaired cognitionImpairmentIn VitroIndividualKnock-outKnowledgeLeadershipLearningLong-Term EffectsMainstreamingMedicinal PlantsMemoryMentorsMentorshipMethodsMitochondriaMolecularMonitorMorphologyMusNeurobiologyNeurodegenerative DisordersNeurologicNeuronsOral AdministrationOregonOxidative StressPathway interactionsPhasePhysiologicalPlantsPlayReportingResearchResearch PersonnelResearch TechnicsRodent ModelRoleSenile PlaquesSliceTechniquesTestingTg2576TherapeuticTherapeutic AgentsTherapeutic InterventionTrainingTranslational ResearchTriterpenesUniversitiesWaterWorkWritingabeta accumulationabeta toxicityagedattenuationbehavior testcareercareer developmentcognitive enhancementcognitive functioncohortexecutive functionexperimental studyhealthy agingimprovedin vitro Modelin vivoin vivo Modelinhibitor/antagonistinsightinterestmitochondrial dysfunctionneuroblastoma cellneuron lossneurotoxicitynew therapeutic targetoverexpressionoxidative damagepreventpublic health relevanceresearch and developmentresponseskillsskills trainingsuccesstranscription factor
中文摘要
描述(由申请人提供):本建议概述了一个研究和职业发展计划,该计划以Gray博士现有的培训为基础,使她能够:1)获得体外和体内方法研究认知障碍的神经生物学的专业知识;2)获得线粒体研究技术和进展的详细知识;3)巩固表征植物产品的技能,并进行严格的补充和替代医学研究;以及4)培养和加强作为一名独立研究人员成功所需的技能。格雷博士出色的指导和协作培训团队都位于俄勒冈健康与科学大学(OHSU),这使其成为该奖项K99阶段的理想环境。除了提供世界级的基础和翻译研究技术培训外,OHSU还提供许多课程和研讨会,以加强沟通、领导力和赠款写作能力,这对于实现她的长期职业目标至关重要,即进行神经学活性植物和饮食干预的独立研究。这项拟议的研究的目标是确定药用植物积雪草(Centella asiatica(L.)城市(CA)调节线粒体功能和抗氧化反应,以诱导其神经保护和认知增强作用。CA是一种阿育吠陀草药,用于改善认知功能,这一效果得到了对人类和许多啮齿动物模型的研究的支持。我们的实验室已经证明,CA水提取物(CAW)可以改善老年野生型和Tg2576小鼠的学习和记忆,Tg2576小鼠是一种β-淀粉样蛋白积聚的阿尔茨海默病(AD)模型,并保护神经母细胞瘤细胞免受Aü诱导的细胞死亡。我们在体外和体内的初步数据表明,CAW激活了内源性抗氧化反应途径,并诱导了线粒体的生物发生。这项提案将确定这些途径中的每一条如何对CAW的神经保护和认知增强效果做出贡献。在目标1中,Gray博士将接受培训,并应用更具生理学相关性的原代神经元细胞培养体外模型系统来确定CAW保护A?毒性的分子机制。在目标2中,将学习并使用一组行为评估来确定CAW改变了认知的哪些方面,以及它的抗氧化剂和线粒体效应如何有助于这些认知增强效果。目的2还将通过评估长期CAW治疗的认知效应和潜在机制来探索CAW的预防潜力。这项工作将解决我们在理解CAW机制以及线粒体和抗氧化途径如何相互作用并参与调节神经元健康和认知方面的关键空白,使用强大的体外和体内AD模型。这里建立的结果和技术将有助于确定未来在AD a和其他认知障碍情况下使用植物或饮食制剂进行治疗干预的特定靶点,并将导致更知情的临床试验
这样的治疗方法。K99奖项提供的技能和培训将开启格雷博士积极、独立的研究生涯。
英文摘要
DESCRIPTION (provided by applicant): This proposal outlines a research and career development plan that builds on Dr. Gray's existing training and allows her to: 1) gain expertise with in vitro and in vivo methods to study the neurobiology of cognitive impairment; 2) acquire detailed knowledge of techniques and advances in mitochondrial research; 3) solidify skills to characterize botanical products and perform rigorous complementary and alternative medicine research; and 4) build and strengthen the skills needed for success as an independent investigator. Dr. Gray's superb mentorship and collaborative training team are all located at Oregon Health and Science University (OHSU) making it an ideal setting for the K99 phase of this award. In addition to providing world-class training in basic and translational research techniques, numerous courses and seminars are available at OHSU to strengthen the communication, leadership and grant writing capabilities essential for achieving her long-term career goal of conducting independent research on neurologically active botanical and dietary interventions. The goal of the proposed research is to determine how the medicinal plant Centella asiatica (L.) Urban (CA) modulates mitochondrial function and antioxidant response to elicit its neuroprotective and cognitive- enhancing effects. CA is an Ayurvedic herb used to improve cognitive function, an effect supported by studies in humans and numerous rodent models. Our lab has shown that CA water extract (CAW) can improve learning and memory in aged wild-type as well as Tg2576 mice, an Alzheimer's Disease (AD) model of beta- amyloid (Aß) accumulation, and protect neuroblastoma cells against Aß-induced cell death. Our preliminary in vitro and in vivo data show that CAW activates the endogenous antioxidant response pathway and induces mitochondrial biogenesis. This proposal will determine how each of those pathways contributes to the neuroprotective and cognitive-enhancing effects of CAW. In Aim 1 Dr. Gray will be trained in and apply the more physiologically relevant in vitro model system of primary neuronal cell culture to determine the molecular mechanism by which CAW protects against Aß toxicity. In Aim 2, a battery of behavioral assessments will be learned and used to determine which aspects of cognition are altered by CAW, and how its antioxidant and mitochondrial effects contribute to these cognitive-enhancing effects. Aim 2 will also explore the preventative potential of CAW by assessing the cognitive effects and underlying mechanisms of long-term CAW treatment. This work will address critical gaps in our understanding of the mechanism of CAW and how mitochondrial and antioxidant pathways interact and participate in modulating neuronal health and cognition using powerful in vitro and in vivo models of AD. The results and techniques established here will help identify specific targets for future therapeutic intervention with botanical or dietary agents in the context of AD a well as other conditions with cognitive impairment and will lead to better-informed clinical trials
of such treatments. The skills and training provided by the K99 award will launch Dr. Gray's active, independent research career.
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