Respiratory Control in Old Age
Respiratory Control in Old Age
批准号:
8488633
负责人:
Carlos B Mantilla
金额:
$41.48万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-06-01 至 2018-05-31
关键词:
AccountingAddressAffinityAgeAgingApplications GrantsAreaAtrophicBehaviorBrain-Derived Neurotrophic FactorBreathingCause of DeathChestChest wall structureChronic DiseaseClinicalContractile ProteinsContractsCoughingDependovirusDevelopmentDiseaseElderlyFailureFiberFigs - dietaryGene DeliveryGenerationsImpairmentIncidenceIndividualInfectionKnowledgeLungLung diseasesMechanicsMotorMotor NeuronsMuscleMuscle ContractionMuscle FibersMuscle WeaknessMyosin Heavy ChainsNeuregulin 1Neuromuscular DiseasesNeuromuscular JunctionNeurotrophic Tyrosine Kinase Receptor Type 2Operative Surgical ProceduresPhosphotransferasesPneumoniaPopulationProtein BiosynthesisProteinsResearchRespiratory DiaphragmRespiratory FailureRespiratory MechanicsRespiratory MusclesRespiratory SystemRespiratory Tract InfectionsRespiratory physiologyRestRiskRisk FactorsRoleSepsisSerotypingSignal TransductionSneezingSystemTestingTherapeuticTimeTropomyosinUnited StatesWorkWork of Breathingage relatedhuman FRAP1 proteinimpaired capacityimprovednerve supplyneuromuscularneuromuscular transmissionnovelpressurepreventprotein expressionpublic health relevancereceptorrespiratorysarcopeniatherapeutic targettransmission process
中文摘要
描述(由申请人提供):有大量证据表明,老年与呼吸系统并发症的发生率增加有关,这些并发症是由于无法进行咳嗽和打喷嚏等驱逐性非排泄性行为所致。拟议的研究集中在与老年有关的“完美风暴”条件下,我们认为,(膈肌(DIAm)纤维萎缩和比力降低)连同增加的神经肌肉传递失败降低了DIAm产生力的能力,并因此降低了跨膜压(Pdi),而同时呼吸系统力学变硬,从而增加DIAm必须收缩的负荷。DIAm必须完成一系列行为,从休息呼吸到咳嗽和打喷嚏等驱逐行为。在老年人中,执行驱逐性、高强度、非强迫性行为的能力缺陷可能导致感染和呼吸衰竭的风险增加。我们的工作假设是,年龄相关的肌肉减少症和神经肌肉传递功能障碍降低最大DIAm力产生能力,损害老年人进行涉及气道清除的非呼吸行为的能力。拟开展的研究将确定脑源性神经营养因子(BDNF)通过原肌球蛋白相关激酶受体(TrkB)和神经调节蛋白-1(NRG-1)通过ErbB受体通过mTOR激活对DIAm神经支配和肌肉减少症的年龄相关变化产生的营养影响的作用。我们假设BDNF/TrkB和NRG-1/ErbB/mTOR信号传导产生的营养影响可用于治疗,以减轻衰老相关的DIAm神经肌肉传递失败和肌肉减少症,以及相关的非排泄行为障碍。我们提出以下三个具体目标来解决这些假设:1)确定老年对呼吸力学的功能影响; 2)确定BDNF/TrkB信号传导对DIAm神经支配中年龄相关变化的作用;和3)确定NRG-1/ErbB/mTOR信号传导在年龄相关DIAm肌肉减少症中的作用。拟议研究的结果将为老年呼吸系统的变化提供新的基础知识,从而允许开发在呼吸和神经肌肉疾病中具有广泛应用的新疗法。随着人口老化,慢性病的发病率上升,我们必须共同努力,改善老年人的健康。
英文摘要
DESCRIPTION (provided by applicant): There is substantial evidence that old age is associated with an increased incidence of respiratory complications that result from an inability to perform expulsive non-ventilatory behaviors such as coughing and sneezing. The proposed studies focus on the "perfect storm" condition related to old age, where we believe that sarcopenia (diaphragm muscle (DIAm) fiber atrophy and decreased specific force) together with increased neuromuscular transmission failure reduce the ability of the DIAm to generate force, and thus transdiaphragmatic pressure (Pdi), while at the same time the respiratory system mechanics are stiffening thereby increasing the load against which the DIAm must contract. The DIAm must accomplish a range of behaviors from resting breathing to expulsive behaviors such as coughing and sneezing. In the elderly, a deficit in the ability to perform expulsive, high-intensity, non-ventilatory behaviors likely contributes to increased risk for infections and respiratory failure. Our working hypothesis is that age-related sarcopenia and neuromuscular transmission failure reduce maximum DIAm force-generating capacity, impairing the ability of the elderly to perform non-ventilatory behaviors involved in airway clearance. The proposed research will determine the role of trophic influences exerted by brain-derived neurotrophic factor (BDNF) acting through tropomyosin related kinase receptor (TrkB) and neuregulin-1 (NRG-1) acting through ErbB receptors via mTOR activation on the age-related changes in DIAm innervation and sarcopenia. We hypothesize that trophic influences exerted by BDNF/TrkB and NRG-1/ErbB/mTOR signaling can be used therapeutically to mitigate aging-related DIAm neuromuscular transmission failure and sarcopenia, and the associated impairment of non-ventilatory behaviors. We propose the following three specific aims to address these hypotheses: 1) To determine the functional impact of old age on respiratory mechanics; 2) To determine the role of BDNF/TrkB signaling on the age-related changes in DIAm innervation; and 3) To determine the role of NRG-1/ErbB/mTOR signaling in age- related DIAm sarcopenia. The results of the proposed studies will provide new and fundamental knowledge of changes in the respiratory system in old age, and thus permit the development of novel therapies with broad application in respiratory and neuromuscular diseases. The greater incidence of chronic diseases associated with the aging of our population demands concerted efforts to improve the wellness of the elderly.
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会议论文
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海外基金