Novel Restorative Therapy for Spinal Cord Injury
Novel Restorative Therapy for Spinal Cord Injury
批准号:
8049576
负责人:
FENG-QIAO LI
金额:
$69.56万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-09-25 至 2013-02-28
关键词:
AcuteAdverse effectsAffectAgeAmericanAmericasAnimal ModelAnti-Inflammatory AgentsAnti-inflammatoryApolipoprotein EAreaAxonBrainBudgetsCardiovascular systemCellsCentral Nervous System DiseasesCerebellumCessation of lifeChemistryChronicCicatrixClinicClinical TrialsContusionsCorpus CallosumCuprizoneDataDemyelinationsDevelopmentDorsalDoseEconomicsFamilyFosteringFree Radical FormationFree RadicalsFundingFutureGenerationsGlutamatesGoalsGrantHealthHealth Care CostsHornsHumanImpairmentIndividualInflammationInflammatory ResponseInjuryInvestigational DrugsInvestigational New Drug ApplicationInvestmentsIschemiaLactated Ringer&aposs SolutionLateralLeadLesionLipid PeroxidationLipidsLysophosphatidylcholinesMarketingMeasuresMechanicsMediatingMedicalMethodsMethylprednisoloneModelingMotor NeuronsMultiple SclerosisMusMyelinMyelin SheathNational Institute of Neurological Disorders and StrokeNatureNerveNerve DegenerationNervous System PhysiologyNeurogliaNeuronsNitric OxideNitrogenOligodendrogliaOperative Surgical ProceduresOutcomeOxygenParalysedParentsPathogenesisPathologyPathway interactionsPatient CarePatientsPeptidesPerformancePharmaceutical PreparationsPharmacologic SubstancePharmacologyPhasePlasmaPreventionProcessProductionProgress ReportsPropertyRattusRecoveryRecovery of FunctionRehabilitation therapyRestRouteSafetySeriesSliceSocietiesSpinal CordSpinal cord injurySprague-Dawley RatsStem cellsSteroidsStructureSubarachnoid HemorrhageSwellingTestingTherapeuticTimeTissuesToxic effectTraumatic Brain InjuryTreatment EfficacyUnited States Food and Drug AdministrationUnited States National Institutes of HealthWheelchairsWorkanaloganalytical methodbasecostcytokinecytotoxicdisabilityeconomic costeffective therapyexcitotoxicityimprovedintravenous injectionmeetingsmouse modelnervous system disorderneuron lossneuroprotectionneurorestorationnoveloxidationpatient populationphase 1 studyphase 2 studypre-clinicalpreclinical safetypreclinical toxicitypreventpsychologicreceptor bindingreconstructionrestorationsafety studysafety testingsocialspinal cord compressionsuccesstissue/cell cultureweb sitewhite matter
中文摘要
描述(由申请人提供):脊髓损伤的新型恢复疗法脊髓损伤(SCI)是一种毁灭性的创伤性中枢神经系统疾病,严重致残约253,000美国人,其中三分之二的新受害者年龄在30岁以下。脊髓损伤后的功能缺陷是由于轴突损伤或轴突切断、神经元和胶质细胞丢失以及脱髓鞘所致。SCI的病理不仅取决于最初的机械损伤,还取决于继发性过程,包括缺血、自由基形成、炎症和兴奋性毒性。目前,SCI还没有治愈方法,甲基强的松龙是临床上唯一的选择,而且还没有FDA的批准。显然,迫切需要新的治疗方法,以最大限度地减少灾难性的结果,更有效地改善SCI后的神经功能。Cognosci开发了COG系列抗炎/神经保护肽,这些肽来源于载脂蛋白E(apoE)的受体结合区。我们的I期研究建立了原理证明,即我们的母体肽COG 133在人SCI压迫性损伤的小鼠模型中显著促进功能恢复并减小组织病理学损伤尺寸。我们超出了我们的目标,发现COG化合物既有神经保护作用,又有神经恢复作用,似乎还能促进髓鞘再生。我们的深入研究表明,基于apoE的COG肽在以下可能的途径中发挥与消除继发性损伤和促进SCI恢复相关的显著生物活性:(1)抗炎;(2)抗兴奋毒性和减少细胞内Ca 2+超载;(3)减少自由基和一氧化氮的产生;(4)促进髓鞘重建和保护少突胶质细胞。这项II期计划将利用我们先前工作的成功,通过比较三种更有效和更像药物的COG化合物在两种已建立的SCI模型中的治疗效果,确定急性SCI的药物先导。此外,我们将开始对本研究资助中确定的先导化合物进行有限的临床前安全性和毒性研究,并计划在未来的II期继续资助中完成整个安全性和毒性分析,这是FDA在进行人体临床试验之前要求IND申请的。公共卫生相关性:这项II期研究的完成将使我们能够选择一种治疗急性SCI的主要候选药物,并进行FDA要求的安全性/毒性分析。为了满足SCI治疗的严重未满足的需求,COG化合物可能代表新一代的恢复性SCI治疗剂,具有减少继发性损伤的神经变性和重建受损轴突和髓鞘的双重潜力。考虑到SCI的衰弱性、患者人群的规模以及惊人的医疗费用,目前开发SCI新疗法的项目对SCI受害者及其家庭具有显着的个人、社会和经济效益。
英文摘要
DESCRIPTION (provided by applicant): Novel Restorative Therapy for Spinal Cord Injury Spinal cord injury (SCI) is a devastating traumatic CNS disorder that significantly disables about 253,000 Americans where two-thirds of the new victims are under the age of 30. Functional deficits following SCI result from damage to axons or severance cutting of axons, loss of neurons and glia, and demyelination. SCI pathology is determined not only by the initial mechanical insult, but also by secondary processes including ischemia, free-radical formation, inflammation, and excitotoxicity. Currently, there is no cure for SCI, and methylprednisolone is the only choice in the clinic, and it lacks FDA approval. Clearly, novel therapies are urgently needed to maximally reduce the disastrous outcome and more effectively improve neurological functions following SCI. Cognosci has developed the COG series of anti-inflammatory/neuroprotective peptides, which are derived from the receptor-binding region of apolipoprotein E (apoE). Our Phase I study established proof-of-principle that our parent peptide, COG133, significantly promoted functional recovery and decreased histopathological lesion size in a mouse model of compressive injury of human SCI. We exceeded our aims by finding that COG compounds are both neuroprotective and neurorestorative and appear to be promoting remyelination. Our intensive studies revealed that apoE-based COG peptides exert significant bioactivities relevant to eliminate the secondary damage and foster the recovery of SCI in the following possible pathways: (1) anti-inflammation; (2) anti-excitotoxicity and reducing intracellular Ca2+ overload; (3) reducing the production of free radical species and nitric oxide; (4) promoting the reconstruction of myelin and protecting oligodendrocytes. This Phase II proposal will capitalize on the success of our previous work to identify the drug lead for acute SCI by comparison of therapeutic efficacy of three more potent and more drug-like COG compounds in two established models of SCI. Furthermore, we will start the limited preclinical safety and toxicity studies with the identified lead compound in this grant and are planning to complete the entire safety and toxicity profiling in a future Phase II continuation grant, which is required by the FDA for an IND application before proceeding to the human clinical trials. PUBLIC HEALTH RELEVANCE: The completion of this Phase II study will enable us to select one lead candidate for the treatment of acute SCI and to proceed to FDA-required safety/toxicity profiling. To fill the critically unmet need for SCI therapy, COG compounds may represent a new generation of restorative SCI therapeutics with the dual potentials of diminishing neurodegeneration of secondary damage and rebuilding damaged axon and myelin. Considering the debilitating nature of SCI, size of the patient population, and the startling healthcare costs, the current project to develop a novel therapy for SCI has significant personal, social, and economic benefit to SCI victims and their families.
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