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Oxidative Lipidomics in Pediatric Traumatic Brain Injury

Oxidative Lipidomics in Pediatric Traumatic Brain Injury
氧化脂质组学在小儿创伤性脑损伤中的应用
批准号:
10400136
负责人:
Hülya Bayir
金额:
$39.65万
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-07-01 至 2023-04-30
关键词:
AcuteAcyltransferaseAdultAffinityAnti-Inflammatory AgentsAntioxidantsApoptosisApoptoticArachidonate 15-LipoxygenaseArachidonic AcidsBinding ProteinsBiochemical ReactionBrainBrain InjuriesCardiolipinsCause of DeathCessation of lifeChildChildhood InjuryChronicClinical TrialsCoenzyme A LigasesCollaborationsComplexDataEndoplasmic ReticulumEnzymesEventFamily memberFree Radical ScavengersFree RadicalsFundingGenerationsGlutathioneHospitalizationHydrogen PeroxideHydrolysisHydroxidesImageInflammationInflammatory ResponseInjuryInnovative TherapyIronLeadLinkLipid PeroxidationLysophosphatidylcholinesMechanicsMembraneMitochondriaMorbidity - disease rateNational Center for Advancing Translational SciencesNatureNeurological outcomeNeuronsOxidation-ReductionOxidative StressOxidesPathogenicityPathway interactionsPatternPeroxidasesPhosphatidylethanolaminePhosphatidylethanolamine Binding ProteinPhospholipase A2PhospholipidsPlayProteinsRattusRoleScaffolding ProteinSignal TransductionSourceStretchingSubstrate SpecificitySulfhydryl CompoundsSystemTBI treatmentTechnologyTestingTherapeuticTherapeutic UsesTranslationsTraumaTraumatic Brain InjuryUnited States National Institutes of HealthWorkadductbaicaleinbasecatalystcognitive functioncontrolled cortical impactcytochrome cdesigndrug discoveryexperimental studyglutathione peroxidaseimproved outcomeinhibitorlipidomicsliquid chromatography mass spectrometrymortalityneuron apoptosisneuron lossnew therapeutic targetnovel therapeuticsoxidationpediatric traumatic brain injuryperoxidationpostnatalpreferencepreservationpreventprotein complexsmall moleculesmall molecule inhibitorstandard caretargeted treatment

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Each year in the US, severe TBI in children results in ∼7400 deaths and 60 000 hospitalizations. Fifty percent of surviving children with severe TBI have poor neurological outcome at six months. Severe TBI in children is thus a critical problem in desperate need of impactful therapies. Free radicals and oxidative stress have been uniformly accepted as universal pathogenic mechanisms of TBI prompting therapeutic use of antioxidants. Invariably, clinical trials of non-specific free radical scavengers/antioxidants failed. This suggests that true sources and mechanisms of TBI redox disbalance remain undefined, and represent a potential therapeutic opportunity. During the previous funding period we showed that lipid peroxidation after TBI in immature brain occurs as a result of controlled enzymatic reactions. We discovered that peroxidation of mitochondrial phospholipid cardiolipin (CL) represents a required stage of neuronal apoptosis after TBI in postnatal day (PND) 17 rats. We identified cytochrome c as a catalyst of CL peroxidation and showed that a mitochondria- targeted inhibitor of CL peroxidation suppressed TBI-induced apoptosis and preserved cognitive function in PND17 rats. Our latest work identified highly selective oxidation of arachidonic acid (AA) containing phosphatidylethanolamines (PE) by 15 lipoxygenase (15LOX) to be causative to ferroptosis. We discovered that PE binding protein 1 (PEBP1) complexes with 15LOX and changes its substrate specificity from free AA to AA esterified into PE to generate hydroperoxy-AA-PE death signals. Normally hydroperoxy-AA-PE are eliminated by combined action of glutathione peroxidase 4 (GPX4)/glutathione (GSH). Immature brain has lower GSH levels and GPX activity vs adult brain thus could be more vulnerable to ferroptosis upon injury. Indeed our preliminary data show that TBI leads to marked increase in expression and activity of 15LOX, and accumulation of oxidized AA-PE in PND17 rat brain. Furthermore, preliminary data indicate that inhibition of AA-PE oxidation suppresses TBI-induced neuronal death and preserves cognitive function. Thus, we hypothesize that generation of oxidized AA-PE by 15LOX/PEBP1 complex leads to neuronal death and represents a new target for drug discovery leading to innovative therapies in pediatric TBI. We propose to test our hypothesis in three Specific Aims. Aim 1 will determine the degree, spatial and temporal pattern of 15LOX/PEBP1 complex formation and AA-PE oxidation after TBI. Aim 2 will investigate the mechanisms of AA-PE oxidation in TBI-induced neuronal death. Aim 3 will design and investigate the mechanism of action and neuroprotective potential of small-molecule regulators of 15LOX and 15LOX/PEBP1 activity in TBI. These studies will employ powerful lipidomics and oxidative lipidomics technology to provide important mechanistic information on the role of PE oxidation in neuronal ferroptosis after pediatric TBI. The ability to selectively modulate PE oxidation, a critical early event in the mechanism of ferroptosis, could lead to targeted therapies for TBI and ultimately improve outcome for children after brain injury.
期刊论文(54)
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DOI: 10.1021/ml5003635
发表时间: 2014-12-11
期刊: ACS medicinal chemistry letters
影响因子: 4.2
作者: [Stoyanovsky DA, Jiang J, Murphy MP, Epperly M, Zhang X, Li S, Greenberger J, Kagan V, Bayır H]
通讯作者: Bayır H
DOI: 10.1016/j.jneumeth.2011.08.001
发表时间: 2011-09-30
期刊: JOURNAL OF NEUROSCIENCE METHODS
影响因子: 3
作者: [Belikova, Natalia A., Glumac, Ashley L., Kapralova, Valentyna, Cheikhi, Amin, Tyurina, Yulia Y., Vagni, Vincent A., Kochanek, Patrick M., Kagan, Valerian E., Bayir, Huelya]
通讯作者: Bayir, Huelya
Characterization of cardiolipins and their oxidation products by LC-MS analysis.
通过 LC-MS 分析表征心磷脂及其氧化产物。
DOI: 10.1016/j.chemphyslip.2013.12.003
发表时间: 2014
期刊: Chemistry and physics of lipids
影响因子: 3.4
作者: [Tyurina,YuliaY, Domingues,RosarioM, Tyurin,VladimirA, Maciel,Elisabete, Domingues,Pedro, Amoscato,AndrewA, Bayir,Hülya, Kagan,ValerianE]
通讯作者: Kagan,ValerianE
DOI: 10.1021/acschembio.5b00737
发表时间: 2016-02-19
期刊: ACS chemical biology
影响因子: 4
作者: [Mao G, Qu F, St Croix CM, Tyurina YY, Planas-Iglesias J, Jiang J, Huang Z, Amoscato AA, Tyurin VA, Kapralov AA, Cheikhi A, Maguire J, Klein-Seetharaman J, Bayır H, Kagan VE]
通讯作者: Kagan VE
36
    Oxidative Lipidomics in Pediatric Traumatic Brain Injury
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    Radiation Mitigators Targeting Regulated Necrosis Pathways of Parthanatos Pyroptosis
    Radiation Mitigators Targeting Regulated Necrosis Pathways of Parthanatos Pyroptosis
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