Astrocytes regulation of vascular tone: role in hypertension
Astrocytes regulation of vascular tone: role in hypertension
批准号:
9302508
负责人:
JESSICA A FILOSA
金额:
$38.0万
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:
2007-05-01 至 2019-06-30
关键词:
AddressAlzheimer&aposs DiseaseAstrocytesBlood VesselsBlood capillariesBrainCaliberCardiovascular DiseasesCerebrovascular CirculationCerebrumChronicDataDiseaseEnsureGlial Fibrillary Acidic ProteinHealthHomeostasisHydroxyeicosatetraenoic AcidsHypertensionImpaired cognitionImpairmentIn VitroLeadLinkMeasuresMediatingModelingMolecularMonitorMusNeurodegenerative DisordersNeuronsPathologyPatternPerfusionProcessProductionRegulationResistanceRisk FactorsRoleSignal TransductionSliceStimulusStrokeSystemSystemic blood pressureTestingTimeTransgenic OrganismsVascular DementiaVascular DiseasesVasoconstrictor Agentsarteriolecapillarycellular targetingcerebral arterycerebrovascularcognitive functionconstrictiondensityexperimental studyhemodynamicshypoperfusionin vivointerdisciplinary approachneurovascularneurovascular unitnovelparenchymal arteriolespressurepublic health relevanceresponsetherapeutic target
中文摘要
描述(申请人提供):高血压损害认知功能,是中风、阿尔茨海默病和血管性痴呆症的主要危险因素。然而,心血管疾病和神经血管病变之间联系的潜在机制尚未阐明。采用多学科的方法,包括对GFAP-GCamP3小鼠的体外和体内研究,我们提出了一个中心假设,即星形胶质细胞通过激活TRPV4通道和依赖钙离子产生20-HETE来增加血管张力,从而积极参与脑自我调节。此外,我们假设高血压患者星形胶质细胞来源的20-HETE的产生增加会导致PA的肌源性收缩增强。这一假说预测,脑血管张力和反应性受到血管周围星形胶质细胞的密切监测。在目标1中,我们将验证星形胶质细胞通过机械敏感的TRPV4通道感知血流动力学刺激并将其转换为特定的钙反应模式的假设。目的2将探讨血流动力学诱导的星形胶质细胞钙反应是否有助于血管收缩因子20-HETE的产生,从而支持PA血管张力的增加。最后,在目标3中,使用GPAP-GCamP3小鼠的Ang II高血压模型,我们将检验这一假设,即压力诱导的星形胶质细胞钙离子增加,通过TRPV4通道激活,增强20-HETE介导的高血压患者PA的收缩。我们期待这项研究的发现,通过阐明与心血管疾病相关的神经血管病理的新的非血管治疗靶点来推动这一领域的发展。本研究将:1)确定星形胶质细胞在控制血管张力和脑自身调节中的新功能;2)确定肌源性PA收缩的潜在细胞靶点;3)确定慢性高血压对星形胶质细胞介导的血管张力改变的影响。
英文摘要
DESCRIPTION (provided by applicant): Hypertension impairs cognitive function and is a leading risk factor for stroke, Alzheimer's disease and vascular dementia. Yet, the mechanisms underlying the link between cardiovascular diseases and neurovascular pathologies have not been elucidated. Using a multidisciplinary approach which includes in vitro and in vivo studies in GFAP-GCamP3 mice we propose the central hypothesis that astrocytes actively participate in cerebral autoregulation by increasing vascular tone via TRPV4 channel activation and Ca2+-dependent production of 20-HETE. Further, we hypothesize that augmented astrocyte- derived 20-HETE production in hypertension causes enhanced myogenic constriction of PA. This hypothesis predicts that cerebrovascular tone and reactivity are tightly monitored by perivascular astrocytes. In Aim 1 we will test the hypothesis that astrocytes sense and transduce hemodynamic stimuli into specific Ca2+ response patterns via mechanosensitive TRPV4 channels. Aim 2 will address whether hemodynamic-induced astrocytic Ca2+ responses contribute to the production of the vasoconstrictor 20-HETE, supporting increased vascular tone in PA. Finally, in Aim 3 using the ANG II model of hypertension in GPAP- GCamP3 mice we will test the hypothesis that pressure-induced increased astrocytic Ca2+, via TRPV4 channel activation, enhances 20-HETE mediated constriction of PA in hypertension. We anticipate findings from this study to move the field forwards by elucidating a novel non-vascular therapeutic target for neurovascular pathologies associated with cardiovascular diseases. This study will: 1) characterize a novel function of astrocytes in the control of vascular tone and cerebral autoregulation; 2) define the cellular targets underlying myogenic- induced constriction of PA and; 3) define the consequences of chronic hypertension on astrocytic-mediated alterations in vascular tone.
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Circulating angiotensin II gains access to the hypothalamus and brain stem during hypertension via breakdown of the blood-brain barrier.
高血压期间,循环血管紧张素 II 通过破坏血脑屏障进入下丘脑和脑干。
DOI:
10.1161/hypertensionaha.113.01743
发表时间:
2014-03
期刊:
Hypertension (Dallas, Tex. : 1979)
影响因子:
--
作者:
[Biancardi VC, Son SJ, Ahmadi S, Filosa JA, Stern JE]
通讯作者:
Stern JE
DOI:
10.1016/j.neuroscience.2016.09.047
发表时间:
2016-12-17
期刊:
Neuroscience
影响因子:
3.3
作者:
[Morrison HW, Filosa JA]
通讯作者:
Filosa JA
DOI:
10.3389/fnene.2010.00016
发表时间:
2010-01-01
期刊:
Frontiers in neuroenergetics
影响因子:
--
作者:
[Filosa, Jessica A]
通讯作者:
Filosa, Jessica A
DOI:
10.1016/j.bpj.2013.09.012
发表时间:
2013-11
期刊:
Biophysical journal
影响因子:
3.4
作者:
[Alexandra Witthoft;J. Filosa;G. Karniadakis]
通讯作者:
Alexandra Witthoft;J. Filosa;G. Karniadakis
TRPV4 and the regulation of vascular tone.
TRPV4 和血管张力的调节。
DOI:
10.1097/fjc.0b013e318279ba42
发表时间:
2013-02
期刊:
Journal of cardiovascular pharmacology
影响因子:
3
作者:
[Filosa JA, Yao X, Rath G]
通讯作者:
Rath G
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