Mechanisms of Force Fluctuation-Induced Relengthening in Airway Smooth Muscle
Mechanisms of Force Fluctuation-Induced Relengthening in Airway Smooth Muscle
批准号:
7458705
负责人:
MARIA L DOWELL
金额:
$12.45万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-07-01 至 2010-06-30
关键词:
AccountingActin-Binding ProteinActinsActomyosinAcuteAddressAdultAdvisory CommitteesAffectAgonistAnimal ModelAnimalsAnisomycinAreaAsthmaBiochemicalBiological ModelsBiologyBreathingBronchoconstrictionBronchoconstrictor AgentsBronchodilationCaliberCanis familiarisChicagoChildChildhoodCommitComplexConstriction procedureContractsDataDevelopmentDiseaseDominant-Negative MutationDoseExperimental DesignsFaceFosteringGelsolinGoalsHSPB1 geneHyperpneaInterventionIsotonic ContractionKnowledgeLeadLengthLightLungMAP Kinase GeneMAP2K6 geneMAPK14 geneMAPKAPK2 geneMEKsMechanicsMentorsMicrofilamentsMitogen-Activated Protein Kinase InhibitorMolecularMolecular BiologyMuscleMuscle functionObstructionOutcomePD-98059Pathway interactionsPeptidesPersonal SatisfactionPhosphorylationPhysiologyPlasmidsPrincipal InvestigatorProgram DevelopmentProtein IsoformsProtein OverexpressionProteinsPulmonologyRadialRangeRateRegulationRelaxationResearchResearch PersonnelResourcesRoleSB 203580ScientistSerineSignal PathwaySimulateSmooth MuscleStructure of parenchyma of lungSystemTechniquesTestingTissuesTractionTrainingTraining ProgramsTropomyosinU-0126UniversitiesUpper armWritingabstractingcalponincareercaspase-3designexperiencegene therapyinhibitor/antagonistinnovationinstructorinterestmutantnovelnovel therapeuticspreventprogramsrespiratory smooth muscleresponserole modelskillstropomyosin-4
中文摘要
描述(由申请人提供):
本建议概述了一个为期四年的培训计划,在气道平滑肌生物学的学术生涯的发展。主要研究者是一名接受过成人和儿童治疗培训的肺病学家,是芝加哥大学儿科肺病科的讲师。她的近期目标是通过结合肌肉生理学,力学和分子生物学原理来扩展她作为基础科学家的技能,以解决气道平滑肌功能及其在疾病中的潜在作用。长期目标是成为一名出色的研究者,熟练地研究平滑肌生理学的细微差别,探索这一领域独特而重要的问题。Julian Solway和Richard Mitchell博士将共同指导首席研究员的科学和职业发展。Solway博士是气道生物学和平滑肌生理学方面的专家,也是一位杰出的导师和榜样。他致力于促进主要研究者的职业发展和最终的独立性。Mitchell博士是国际知名的平滑肌生理学家,也是指导实验设计和技术的宝贵资源。此外,一个由肌肉生理学和分子生物学方面的杰出科学家组成的咨询委员会将监督科学培训和职业发展。拟议的研究重点是确定调节气道平滑肌中的力波动诱导的再狭窄(FFIR)的分子机制。这一建议的关键前提是:1)呼吸有助于在支气管收缩时维持正常的气道口径,2)了解这种反应的分子机制将为设计新的干预措施提供新的策略,以增强这种强大的内源性支气管扩张机制。在人和动物模型中,呼吸过度拮抗收缩引起的气流阻塞,并且很可能气道平滑肌的FFIR解释了呼吸的这种抗支气管收缩作用。因此,了解什么机制决定FFIR,以及如何操纵平滑肌来加重这种现象是相当有趣的。这种方法可能有望成为哮喘的新疗法。这项建议的目的是进一步了解气道平滑肌生物学的预期,这些知识将导致新的治疗策略的疾病,如哮喘
(End摘要)
英文摘要
DESCRIPTION (provided by applicant):
A four year training program for the development of an academic career in airway smooth muscle biology is outlined in this proposal. The principal investigator, a pulmonologist trained to treat both adults and children, is an Instructor in the Section of Pediatric Pulmonary Medicine at the University of Chicago. Her immediate goal is to expand upon her skills as a basic scientist by combining muscle physiology, mechanics, and molecular biology principles to address airway smooth muscle function and its potential role in disease. The long term goal is to become an outstanding investigator who skillfully examines the nuances of smooth muscle physiology, exploring unique and important questions in this field. Drs. Julian Solway and Richard Mitchell will co-mentor the principal investigator's scientific and career development. Dr. Solway is an expert in airway biology and smooth muscle physiology, as well as an exceptional mentor and role model. He is committed to fostering the principal investigator's career development and ultimate independence. Dr. Mitchell is an internationally known smooth muscle physiologist and a valuable resource for guidance in experimental design and techniques. In addition, an Advisory Committee of accomplished scientists in muscle physiology and molecular biology will oversee the scientific training and career development. The proposed studies focus on identifying molecular mechanisms that regulate force fluctuation-induced relengthening (FFIR) in airway smooth muscle. The key premises underlying this proposal are that 1) breathing helps maintain normal airway caliber in the face of bronchoconstriction, and 2) understanding the molecular mechanisms underlying this response will suggest new strategies for designing novel interventions to augment this powerful endogenous bronchodilation mechanism. Hyperpnea antagonizes constrictorinduced airflow obstruction in both people and animal models and it is very likely that FFIR of airway smooth muscle accounts for this anti-bronchoconstrictor effect of breathing. Therefore, it is of considerable interest to know what mechanisms determine FFIR, and how smooth muscle might be manipulated to accentuate this phenomenon. Potentially, this approach could hold promise as a novel treatment for asthma. The goal of this proposal is to further our understanding of airway smooth muscle biology with the anticipation that such knowledge will lead to novel therapeutic strategies for diseases such as asthma
(End of Abstract)
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会议论文
Mechanisms of Force Fluctuation-Induced Relengthening in Airway Smooth Muscle
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批准号:7179397
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项目类别:
-
资助金额:$12.45万
-
财政年份:2007
-
负责人:MARIA L DOWELL
-
依托单位:
Mechanisms of Force Fluctuation-Induced Relengthening in Airway Smooth Muscle
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批准号:7625974
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项目类别:
-
资助金额:$12.45万
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财政年份:2007
-
负责人:MARIA L DOWELL
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依托单位:
海外基金