Neural circuit disruption by diffuse brain injury: basis for morbidity & therapy
Neural circuit disruption by diffuse brain injury: basis for morbidity & therapy
批准号:
8606663
负责人:
JONATHAN LIFSHITZ
金额:
$31.62万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-02-01 至 2016-01-31
关键词:
AcuteAddressAdultAgitationAnimal ModelAnti-Inflammatory AgentsAnti-inflammatoryAtrophicAttenuatedAxonBehaviorBehavioralBiological ModelsBlood VesselsBrainBrain InjuriesBrain regionCellular MembraneChronicCommunitiesDiffuseDiffuse Brain InjuryDoseFaceFigs - dietaryFreezingFunctional disorderGene ExpressionGoalsIbuprofenImmediate-Early GenesInflammationInflammatoryInjuryInterventionLeftLiquid substanceMeasuresMechanicsMedicalModelingMolecularMorbidity - disease rateNatureNeurodegenerative DisordersNeurologicNeurologic DysfunctionsNeuronal PlasticityNeuronsPathologic ProcessesPercussionPerformancePharmaceutical PreparationsProcessQuality of lifeRattusRegimenRehabilitation therapyResearchResolutionRodentSensorySeveritiesSocietiesSomatosensory CortexSurvivorsSymptomsTestingTherapeuticTimeTraumatic Brain InjuryVentral Posterior NucleusVibrissaebaseclinically relevanteffective therapyexperienceimprovedin vivo ModelinjuredinnovationmRNA Expressionmalemanneural circuitneuroinflammationneuropathologynovelorganic basepreventprotein expressionpsychologicpublic health relevanceresponsesomatosensorytooltreatment strategy
中文摘要
描述(由申请人提供):我们的长期目标是开发有效的药理学和康复治疗策略,促进脑损伤回路的适应性重组,以减轻弥漫性创伤性脑损伤(TBI)后的神经功能障碍(发病率)。为了实现这些目标,我们将利用我们在弥漫性脑损伤大鼠中观察到的一种新的、可重复的、迟发性神经功能缺损,类似于脑损伤幸存者的躁动。与未受伤的大鼠面部胡须刺激的舒缓和安抚性质相反,脑损伤的大鼠对胡须刺激的反应是畏缩、冻结和保护眼肌垫。这种异常行为伴随着轴突损伤、神经元萎缩、持续性炎症和神经可塑性,使得触须刺激激活常规体感触须电路之外的脑区域。目前的建议测试的假设,弥漫性脑损伤引起的炎症驱动适应不良的结构可塑性负责异常行为反应的胡须刺激。由脑损伤的躯体感觉须电路提供的模型系统提供了一种简化的方法来处理弥漫性TBI的复杂性,以解决与创伤后发病率相关的病理和修复机制。将评价弥漫性脑损伤成年雄性大鼠中的该回路的(目的1)由触须刺激引起的异常行为,(目的2)慢性神经病理学、神经元活化和回路重组,以及(目的3)导致回路重组和发病的神经炎症驱动的神经可塑性反应。抗炎治疗方案可以提供临床相关干预,以防止电路重新布线和发病。行为,解剖,功能和治疗方法的创新组合,针对脑损伤的躯体感觉须电路,解决了与受伤的大脑中不受调节的结构可塑性相关的潜在机制。揭示这些过程可以指导治疗以减轻神经功能障碍的发作、缩短持续时间和/或促进其解决。这个回路的结果最终可以扩展到啮齿动物的其他回路,然后是人类,以改善数百万TBI幸存者和其他可能患有进行性神经退行性疾病的人的生活质量。
英文摘要
DESCRIPTION (provided by applicant): Our long term goals are to develop effective pharmacological and rehabilitative treatment strategies that promote adaptive reorganization of brain-injured circuits to mitigate neurological dysfunction (morbidity) after diffuse traumatic brain injury (TBI). To achieve these goals, we will exploit a novel, reproducible, late-onset neurological deficit that we have observed in the diffuse brain-injured rat, analogous to agitation in brain injury survivors. In contrast to the soothing and pacifying nature of facial whisker stimulation in uninjured rats, brain- injured rats react to whisker stimulation by cowering, freezing and guarding the mystacial pads. This aberrant behavior is concomitant with axonal damage, neuronal atrophy, persistent inflammation and neuroplasticity, such that whisker stimulation activates brain regions outside the conventional somatosensory whisker circuit. The current proposal tests the hypothesis that diffuse brain injury-induced inflammation drives the maladaptive structural plasticity responsible for aberrant behavioral responses to whisker stimulation. The model system afforded by the brain-injured somatosensory whisker circuit provides a reductionistic approach to the complexity of diffuse TBI, to address pathological and reparative mechanisms associated with post-traumatic morbidity. This circuit in diffuse brain-injured adult male rats will be evaluated for (Aim 1) aberrant behaviors elicited by whisker stimulation, (Aim 2) chronic neuropathology, neuronal activation and circuit reorganization, and (Aim 3) neuroinflammation-driven neuroplastic responses that contribute to circuit reorganization and morbidity. An anti-inflammatory therapeutic regimen may provide a clinically relevant intervention to prevent circuit rewiring and the onset of morbidity. The innovative combination of behavioral, anatomical, functional and therapeutic approaches directed at the brain-injured somatosensory whisker circuit addresses the underlying mechanisms associated with unregulated structural plasticity in the injured brain. Uncovering these processes can direct treatments to mitigate the onset, reduce the duration and/or promote the resolution of neurological dysfunction. Results from this circuit can ultimately be expanded to other circuits in rodents and then man to improve quality of life for millions of TBI survivors and potentially others suffering from progressive neurodegenerative diseases.
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DOI:
10.3109/02699052.2014.888768
发表时间:
2014
期刊:
Brain injury
影响因子:
1.9
作者:
[Rowe RK, Harrison JL, O'Hara BF, Lifshitz J]
通讯作者:
Lifshitz J
DOI:
10.1016/j.bbr.2016.12.038
发表时间:
2018-03-15
期刊:
Behavioural brain research
影响因子:
2.7
作者:
[Thomas TC, Ogle SB, Rumney BM, May HG, Adelson PD, Lifshitz J]
通讯作者:
Lifshitz J
DOI:
10.1016/j.neuroscience.2017.07.027
发表时间:
2017-09-17
期刊:
Neuroscience
影响因子:
3.3
作者:
[Ziebell JM, Ray-Jones H, Lifshitz J]
通讯作者:
Lifshitz J
Experimental diffuse brain injury results in regional alteration of gross vascular morphology independent of neuropathology.
实验性弥漫性脑损伤导致大血管形态的区域改变,与神经病理学无关。
DOI:
10.3109/02699052.2015.1090012
发表时间:
2016
期刊:
Brain injury
影响因子:
1.9
作者:
[Ziebell,JennaM, Rowe,RachelK, Harrison,JordanL, Eakin,KatharineC, Colburn,Taylor, Willyerd,FAnthony, Lifshitz,Jonathan]
通讯作者:
Lifshitz,Jonathan
The time course of activity-regulated cytoskeletal (ARC) gene and protein expression in the whisker-barrel circuit using two paradigms of whisker stimulation.
使用两个晶须刺激范式在晶须桶回路中,活性调节的细胞骨架(ARC)基因和蛋白表达的时间过程。
DOI:
10.1016/j.bbr.2015.01.032
发表时间:
2015-05-01
期刊:
Behavioural brain research
影响因子:
2.7
作者:
[Khodadad A, Adelson PD, Lifshitz J, Thomas TC]
通讯作者:
Thomas TC
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Molecular Tool Development to Identify, Isolate, and Interrogate the Rod Microglia Phenotype in Neurological Disease and Injury
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财政年份:2018
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依托单位:
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Remote ischemic conditioning mitigates diffuse traumatic brain injury via specialized pro-resolving mediators
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Inhibition of synaptogenesis mitigates late-onset post-traumatic morbidity in rat
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Inhibition of synaptogenesis mitigates late-onset post-traumatic morbidity in rat
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Post Traumatic Sleep: An Individualized Indicator of Severity and Recovery
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依托单位:
海外基金