Mechanism of Activated Protein C Action in Sepsis Therapy
Mechanism of Activated Protein C Action in Sepsis Therapy
批准号:
7883310
负责人:
Hartmut Karl-Heinz Weiler
金额:
$40.61万
依托单位:
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:
2008-09-22 至 2012-06-30
关键词:
AblationAddressAdultAdverse effectsAffectAnimal ModelAnti-Bacterial AgentsAnti-Inflammatory AgentsAnti-inflammatoryAnticoagulantsAnticoagulationBacteremiaBacterial ModelBlood coagulationBolus InfusionBone MarrowCategoriesCell Surface ReceptorsCell physiologyCellsCessation of lifeChildClinicalCoagulation ProcessContinuous InfusionDataDoseEmployee StrikesEndothelial CellsEndotoxemiaEngineeringExhibitsF2R geneFibrinFibrinogenFibrinolysisFollow-Up StudiesGenerationsGoalsGuidelinesHandHemorrhageHost DefenseHost Defense MechanismHumanImmuneImmune responseImpairmentInfectionInflammationInflammatoryInflammatory ResponseInfusion proceduresLeukocytesMeasuresMediatingModelingMolecularMouse StrainsMusMutagenesisOutcomePathogenesisPathway interactionsPatientsPharmaceutical PreparationsPilot ProjectsPlasmaPopulationProtein CPumpRecombinantsRegimenRelative (related person)Residual stateResistanceRiskRoleSafetySepsisSeptic ShockSignal TransductionStagingSterilitySurfaceTarget PopulationsTestingTherapeuticThrombomodulinTimeTransgenic MiceTranslatingTreatment EfficacyVariantVascular Endothelial CellVascular EndotheliumWild Type MouseWorkactivated Protein Carmbasecellular targetingcomparative efficacyfallsimprovedinsightkillingsmicrobialmortalitymouse modelnovelpathogenpublic health relevancereceptorresearch studyresponseseptictheories
中文摘要
描述(由申请人提供):脓毒症是机体对微生物感染的全身性炎症反应,重症脓毒症和感染性休克患者的死亡率分别达到30% ~ 70%。重组活化蛋白C (APC)是首个也是迄今为止唯一一个被证明可以降低严重脓毒症患者死亡率的药物,但可能导致严重出血,并且似乎对儿童和轻度脓毒症患者缺乏疗效。APC在患者中治疗效果的机制以及APC治疗局限性的原因在很大程度上是未知的。目前的建议采用小鼠细菌性脓毒症模型,重组APC诱变和转基因小鼠菌株来解决APC在脓毒症治疗中的关键功能。初步数据表明,目前临床剂量所依据的APC抗凝血活性不仅可能增加严重出血的风险,还可能损害纤维蛋白依赖性细菌病原体的清除,从而降低APC治疗的疗效。相反,APC通过受体EPCR和PAR1的细胞信号传导活性似乎是APC治疗降低败血症死亡率的主要机制。因此,与正常APC相比,具有选择性减少抗凝血但正常信号活性的重组APC变体在脓毒症小鼠模型中表现出惊人的疗效。拟进行的实验将(AIM 1)证明APC抗凝血活性对抗菌宿主防御的有害影响,并揭示其潜在的分子机制;(AIM 2)确定了APC信号活性靶向的关键受体和细胞成分,以降低败血症死亡率;(AIM 3)提供了第一个证据,证明选择性降低抗凝活性的重组APC变体的积极剂量是否有望提高APC治疗的总体疗效和安全性。公共卫生相关性:仅在美国,微生物感染后的严重败血症每年就影响超过70万患者,占所有原因死亡的9%。重组活化蛋白C (APC)是迄今为止唯一可用的脓毒症药物,可以降低严重脓毒症患者的绝对死亡率(约6%),但可能导致严重出血,并且对儿童和轻度脓毒症患者缺乏疗效。我们将研究选择性参与关键分子和细胞靶点以促进生存,但缺乏正常APC有害副作用的新型APC变体是否可以显着提高APC治疗的疗效。
英文摘要
DESCRIPTION (provided by applicant): Sepsis is a systemic inflammatory host response to microbial infection, with mortality of patients with severe sepsis and septic shock reaching 30% to 70%, respectively. Recombinant activated protein C (APC) is the first, and as yet only drug demonstrated to reduce mortality of patients with severe sepsis, but may cause severe bleeding, and appears to lack efficacy in children and in patients with less than severe sepsis. The mechanisms mediating the therapeutic efficacy of APC in patients, and the reasons for the limitations of APC therapy are largely unknown. The current proposal employs murine models of bacterial sepsis, mutagenesis of recombinant APC, and transgenic mouse strains to address critical aspects of APC function in the treatment of sepsis. Preliminary data suggest the working hypothesis that the anticoagulant activity of APC, on which current clinical dosing is based, may not only increase the risk of severe bleeding, but also impair the fibrin-dependent clearance of bacterial pathogens and thereby diminish the efficacy of APC therapy. In contrast, the cell signaling activity of APC via the receptors EPCR and PAR1 appears to be the predominant mechanism underlying sepsis mortality reduction by APC therapy. Accordingly, recombinant APC variants with selectively reduced anticoagulant, but normal signaling activity exhibit a striking gain of efficacy in murine models of sepsis, as compared to normal APC. Proposed experiments will (AIM 1) demonstrate the harmful effects of APC's anticoagulant activity on the antibacterial host defense and reveal the underlying molecular mechanism; and (AIM 2) pinpoint the critical receptors and cellular components targeted by APC's signaling activity to reduce sepsis mortality, and (AIM 3) provide first evidence whether aggressive dosing of recombinant APC variants with selectively reduced anticoagulant activity may be expected to improve the overall efficacy and safety of APC therapy. PUBLIC HEALTH RELEVANCE: Severe sepsis after microbial infection affects in excess of 700,000 patients annually in the US alone, and is responsible for ~9% of deaths from all causes. Recombinant activated protein C (APC) is the as yet only available sepsis drug shown to reduce (by ~6%) absolute mortality of patients with severe sepsis, but may cause severe bleeding, and lacks efficacy in children and in patients with less than severe sepsis. We will investigate whether novel APC variants that selectively engage the critical molecular and cellular targets to promote survival, but lack the harmful side effects of normal APC can significantly improve the efficacy of APC therapy.
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