Neurovascular Protection for Early Brain Injury after SAH
Neurovascular Protection for Early Brain Injury after SAH
批准号:
9282501
负责人:
John H Zhang
金额:
$31.11万
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 2019-05-31
关键词:
AKT inhibitionAcuteAddressApoptosisApoptoticArginineAspartateBloodBlood - brain barrier anatomyBrainBrain EdemaBrain InjuriesBypassCASP3 geneCell DeathCell SurvivalCell surfaceCerebral IschemiaCerebral perfusion pressureCerebrovascular CirculationCerebrovascular SpasmCleaved cellClinicalClinical TrialsDataDevelopmentEvaluationExtracellular Matrix ProteinsFocal Adhesion Kinase 1GlycineGoalsGrantHemorrhageHistopathologyHourInjuryIntegrinsIntracranial AneurysmIntracranial HypertensionIntracranial PressureIntranasal AdministrationLaboratoriesLeadMediatingMethodsModelingMolecularMorbidity - disease rateNeurologicNeurological outcomeNoseOutcomePathway interactionsPatient-Focused OutcomesPatientsPre-Clinical ModelPreventionProteinsRGD (sequence)RattusReceptor SignalingRecombinantsResearchRoleRuptureSignal PathwaySignal TransductionStrokeSubarachnoid HemorrhageSubarachnoid SpaceSurvivorsTestingTherapeuticTreatment EfficacyUnited States National Institutes of HealthVasospasmbrain cellclinical translationclinically relevantdosageimprovedimproved outcomemortalityneurobehaviorneuron apoptosisneuron lossneurovascularneurovascular injurynovelnovel therapeuticsosteopontinpre-clinicalprotective effectpublic health relevancereceptorreceptor expressiontreatment strategy
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): In our previous grant period (Neurovascular Protection for Subarachnoid Hemorrhage, NIH/NS053407 2007- 2011) we have studied endothelial protective mechanisms against cerebral vasospasm and brain edema. Our studies were the pioneering observations that early brain injury which is featured by an elevated intracranial pressure, reduced cerebral blood flow, decreased cerebral perfusion pressure, disrupted blood-brain barrier, increased brain edema, sporadically distributed neuronal cell death/apoptosis, and therefore resulted poor neurological functional evaluations within 72 hrs after SAH, is a determination factor, rather than cerebral vasospasm as we believed previously, for clinical outcome. Our observations lead the changes of the directions of SAH research, and most labs in the world are now studying early brain injury management to improve outcomes. During our previous studies, we have identified several promising candidates for neurovascular protection after subarachnoid hemorrhage (SAH) and one of them is osteopontin (OPN). OPN is an extracellular matrix protein that can interact with cell surface integrin receptors through its arginine-glycine- aspartate (RGD) sequence and has been implicated in promoting cell survival, proliferation and reducing cellular apoptosis. Recent studies from our laboratory and others have demonstrated the neurovascular protective effects of intracerebroventricular administration of recombinant osteopontin (rOPN) in various preclinical stroke models. However, the mechanism by which rOPN elicits neurovascular protection has not been evaluated. Elucidating the molecular mechanisms by which OPN exerts its effects would facilitate the development of a novel therapy to protect against SAH. Furthermore, we propose to administer rOPN intranasally, which is an established, safe, and non-invasive method to bypass the blood-brain barrier. The specific objective of this proposal is to determine the neurovascular protective potential of rOPN administered intranasally as a novel treatment strategy to reduce early brain injury after SAH, and to determine the mechanism of neurovascular protection conferred by rOPN through anti-apoptotic signaling and BBB stabilization. Our central hypothesis is that intranasal administration of rOPN provides protection against early brain injury after SAH by reducing neuronal apoptosis and stabilization of the BBB via integrin receptor signaling pathway. The following three specific aims are proposed to address our hypothesis. Aim 1 will determine the neurovascular protective effect of intranasal rOPN administration after SAH. Our specific hypothesis is (1) that OPN concentration in CSF/brain will be increased after intranasal rOPN administration. (2) intranasal rOPN will improve neurological outcomes and reduce mortality after SAH via integrin receptor signaling. Aim 2 will determine the mechanism of anti-apoptotic effect of rOPN after SAH. Our specific hypothesis is that (1) rOPN performs anti-apoptotic signaling mediated by FAK signaling and (2) via PI3K/ Akt pathways. Aim 3 will determine the mechanism of blood brain barrier protection by rOPN after SAH. Our specific hypothesis is that rOPN protects BBB via ILK and Rac-1 pathways. The long-term goal of this proposal is to provide a basis for clinical translation of rOPN as an effective therapeutic option o protect against complications in patients after SAH and to improve overall patient outcomes in the long-term.
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T0901317, an Agonist of Liver X Receptors, Attenuates Neuronal Apoptosis in Early Brain Injury after Subarachnoid Hemorrhage in Rats via Liver X Receptors/Interferon Regulatory Factor/P53 Upregulated Modulator of Apoptosis/Dynamin-1-Like Protein Pathway.
T0901317是肝X受体的激动剂T0901317,可通过肝脏X受体/干扰素调节因子/p53上调调节剂/p53的调节剂的调节剂/p53在大鼠的蛛网膜下腔出血后早期脑损伤减弱神经元凋亡。
DOI:
10.1155/2021/8849131
发表时间:
2021
期刊:
Oxidative medicine and cellular longevity
影响因子:
--
作者:
[Dai J, Xu S, Okada T, Liu Y, Zuo G, Tang J, Zhang JH, Shi H]
通讯作者:
Shi H
TGR5 activation attenuates neuroinflammation via Pellino3 inhibition of caspase-8/NLRP3 after middle cerebral artery occlusion in rats.
TGR5激活通过大鼠中大脑中动脉闭塞后的caspase-8/nlrp3抑制pellino3抑制神经炎症。
DOI:
10.1186/s12974-021-02087-1
发表时间:
2021-02-02
期刊:
Journal of neuroinflammation
影响因子:
9.3
作者:
[Liang H, Matei N, McBride DW, Xu Y, Zhou Z, Tang J, Luo B, Zhang JH]
通讯作者:
Zhang JH
DOI:
10.1016/j.freeradbiomed.2021.05.012
发表时间:
2021-08-01
期刊:
Free radical biology & medicine
影响因子:
7.4
作者:
[Huang Y, Guo Y, Huang L, Fang Y, Li D, Liu R, Lu Q, Ren R, Tang L, Lian L, Hu Y, Tang J, Chen G, Zhang JH]
通讯作者:
Zhang JH
DOI:
10.1016/j.nbd.2017.11.009
发表时间:
2018-03
期刊:
Neurobiology of disease
影响因子:
6.1
作者:
[Wu G, McBride DW, Zhang JH]
通讯作者:
Zhang JH
Corrigendum to "Activation of TGR5 with INT-777 attenuates oxidative stress and neuronal apoptosis via cAMP/PKCε/ALDH2 pathway after subarachnoid hemorrhage in rats" [Free Radic. Biol. Med. (2019 Nov 1) 143 441-453].
“大鼠蛛网膜下腔出血后,用 INT-777 激活 TGR5 通过 cAMP/PKCγ/ALDH2 途径减弱氧化应激和神经元凋亡”的勘误 [Free Radic。
DOI:
10.1016/j.freeradbiomed.2024.03.004
发表时间:
2024
期刊:
Free radical biology & medicine
影响因子:
7.4
作者:
[Zuo,Gang, Zhang,Tongyu, Huang,Lei, Araujo,Camila, Peng,Jun, Travis,Zachary, Okadab,Takeshi, Ocak,Umut, Zhang,Guangyu, Tang,Jiping, Lu,Xiaojun, Zhang,JohnH]
通讯作者:
Zhang,JohnH
共 37 条
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Cerebrospinal Fluid Dynamics in Posthemorrhagic Hydrocephalus in Neonates
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ER stress and neonatal hypoxia ischemia encephalopathy
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批准号:10059275
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Harnessing Endogenous Neuroprotection Following ICH
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财政年份:2016
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Harnessing Endogenous Neuroprotection Following ICH
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批准号:9113729
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资助金额:$34.56万
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财政年份:2016
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负责人:John H Zhang
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Center for Brain Hemorrhage Research
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批准号:8993925
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财政年份:2014
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Crotalus Snake Venom Preconditioning to Prevent Surgical Brain Injury
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Crotalus Snake Venom Preconditioning to Prevent Surgical Brain Injury
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Crotalus Snake Venom Preconditioning to Prevent Surgical Brain Injury
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资助金额:$34.56万
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Neurovascular Protection for Early Brain Injury after SAH
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Neurovascular Protection for Early Brain Injury after SAH
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Harness Germinal Matrix Hemorrhage
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Harness Germinal Matrix Hemorrhage
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Harness Germinal Matrix Hemorrhage
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