Harnessing Corticospinal Axon Sprouting for Functional Recovery in Chronic Injury
Harnessing Corticospinal Axon Sprouting for Functional Recovery in Chronic Injury
批准号:
10038742
负责人:
Binhai Zheng
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-11-01 至 2023-10-31
关键词:
AcuteAddressAgeAnatomyAnimal ModelAxonBehavioralBiologicalBiological ModelsBiologyCaringCervical spinal cord injuryCervical spinal cord structureChronicClinicalComplementCorticospinal TractsDataDevelopmentDiseaseForelimbFoundationsFundingGoalsGrantGrowthHealthHealthcare SystemsHistologyHumanIndividualInjuryInterventionLaboratory miceLongevityModelingMolecularMusNatural regenerationNatureNeuraxisNeurologicNeuronsParalysedPathway interactionsPatternPhasePublishingQuality of lifeRecoveryRecovery of FunctionRehabilitation therapyReportingResearchSideSpinal CordSpinal cord injurySpinal cord injury patientsStrokeSynapsesTestingThree-Dimensional ImagingTimeTrainingTraumaTraumatic Brain InjuryVeteransage effectaxon growthaxon regenerationaxonal sproutingcentral nervous system injuryexperimental studygene discoveryimprovedimproved functioninginjuredmouse modelnonhuman primaterepairedrestorative treatmenttherapeutic development
中文摘要
VA每年治疗超过26,000名脊髓损伤(SCI)和疾病患者,
该部门是世界上最大的医疗保健系统,提供脊髓护理。更好地了解
中枢神经系统(CNS)损伤后的轴突修复对于恢复性治疗的发展至关重要
对于SCI患者,尤其是慢性受伤者。本提案的首要目标是了解
轴突发芽是中枢神经系统内源性修复机制的一种形式,如何增强和利用
促进慢性SCI的功能恢复。这项研究的一个重要前提是,
从未受损伤的神经元发芽代表了轴突修复的一种重要且容易获得的形式,
与更具挑战性的再生促进相比,
战略布局以往的研究主要集中在脊髓损伤的急性期或亚急性期。当前
资助机制将鼓励我们深入研究慢性损伤轴突发芽的重要生物学。
这项建议建立在我们最近发表的关于年龄对CNS轴突再生的影响的研究基础上,
我们未发表的关于年龄和慢性损伤对轴突修复影响的初步数据。使用鼠标
皮质脊髓束(CST)作为模型系统,我们将测试的假设,发芽可以发生,
有助于慢性SCI的功能恢复,并且这种内源性修复机制可以增强
通过分子干预治疗慢性损伤的中枢神经系统。我们将采用单侧正中神经切断损伤模型
切断一侧的CST,研究从中线到失神经侧的发芽。我们将评估
慢性损伤小鼠中CST轴突发芽的水平,并确定有效的分子操作,
在慢性损伤的小鼠中促进这种发芽。我们还将结合联合收割机的萌芽促进战略,
康复训练,以促进慢性脊髓损伤后的功能恢复。在一起,拟议的
研究将探讨轴突发芽作为一种可能更容易获得的修复机制的潜力,
促进慢性SCI功能恢复。
英文摘要
VA treats more than 26,000 people with spinal cord injury (SCI) and disorders each year, making the
department the largest health care system in the world providing spinal cord care. A better understanding of
axonal repair after central nervous system (CNS) injury is critical to the development of restorative treatment
for people with SCI, especially the chronically injured. The overarching goal of this proposal is to understand
how axonal sprouting, a form of endogenous repair mechanism in the CNS, can be enhanced and harnessed
to promote functional recovery in chronic SCI. An important premise of the proposed study is that axonal
sprouting from uninjured neurons represents an important and readily accessible form of axonal repair that will
likely generate near-term translational value as compared to the more challenging regeneration-promoting
strategies. Previous studies of axonal sprouting have focused on acute or subacute phases of SCI. The current
grant mechanism will encourage us to delve into the important biology of axonal sprouting with chronic injury.
This proposal builds upon our very recent published study on the impact of age on CNS axon regeneration and
our unpublished preliminary data on the effect of age and chronic injury in axonal repair. Using the mouse
corticospinal tract (CST) as the model system, we will test the hypothesis that sprouting can occur and
contribute to functional recovery in chronic SCI, and that this endogenous repair mechanism can be enhanced
through molecular intervention in the chronically injured CNS. We will use unilateral pyramidotomy injury model
that severs one side of the CST to study sprouting across the midline to the denervated side. We will assess
the level of CST axon sprouting in chronically injured mice, and identify effective molecular manipulations that
promote such sprouting in chronically injured mice. We will also combine sprouting-promoting strategies and
rehabilitative training to enhance functional recovery after a chronic spinal cord injury. Together, the proposed
studies will address the potential of axon sprouting as a potentially more accessible repair mechanism to
promote recovery of function in chronic SCI.
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会议论文
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