Viral Pathogenesis of Idiopathic Bone Marrow Failure and Immune Cytopenias
Viral Pathogenesis of Idiopathic Bone Marrow Failure and Immune Cytopenias
批准号:
8523760
负责人:
Jaroslaw P Maciejewski
金额:
$37.31万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-25 至 2015-02-28
关键词:
AffectAplastic AnemiaAreaAutoimmune DiseasesAutoimmune ProcessAutoimmunityBiomedical ResearchBloodBlood CellsBone Marrow TransplantationCellsChronicClinicalCommitCommunicable DiseasesCustomDNADiabetes MellitusDiagnosisDiagnosticDiseaseDysmyelopoietic SyndromesEmployee StrikesErythrocytesEtiologyEventFamilyGenomeGoalsHematological DiseaseHematopoieticHematopoietic stem cellsHumanImmuneImmune systemImmunologicsIncidenceIndividualInfectionInfectious AgentInvestigationMalignant NeoplasmsMalignant neoplasm of prostateMarrowMeasuresMediatingMedicalMedicineModelingMorbidity - disease rateNatureOrganPancytopeniaPathogenesisPatternPlayPreventionPrevention therapyPreventiveProcessProductionRNAReactionRelapseResearchRheumatoid ArthritisRoleSamplingSerologicalSpecificityStem cellsSyndromeTechnologyTestingThroat CancerTissuesViralViral PathogenesisVirusbasebody systemcross reactivitycytopeniacytotoxicitydensitydesigneffective therapyexperiencehuman diseaseimprovedlatent infectionmeetingsmembermortalitynovelnovel diagnosticsnucleic acid detectionpathogenprogenitortheoriestoolvirus identification
中文摘要
描述(由申请人提供):许多疾病袭击人类没有明显的原因,尽管有深入的研究,他们的病因仍然是特发性的。因此,对这些疾病的发病机制的现有理论进行争论可能会导致意想不到的进展和新的科学探索路线。例如,一些特发性或自身免疫性疾病甚至癌症可能归因于感染因子,即使传统的研究途径倾向于其他机制。免疫介导的骨髓衰竭综合征(BMFS)和免疫性细胞减少症,包括再生障碍性贫血(AA)、某些形式的骨髓发育不良、红细胞发育不全等,都是通过各种免疫效应机制对血液或造血细胞进行免疫破坏的特征,其靶特异性决定了个体的临床表现。各种致病机制已经假设触发免疫反应,但没有具体的触发已确定。澄清这些看似特发性疾病的致病事件的性质构成了一项重大的医学挑战。虽然乍一看,这些疾病的零星发生,其看似非传染性的性质和其他感染过程的迹象可能会导致其他病因,但我们认为感染因子负责触发随后的免疫病理生理级联反应。我们的假设是,病毒性病原体构成了AA或其他免疫介导的细胞减少症的刺激事件,挑战了对这些特定情况下自身免疫的传统理解,但如果可以识别感染性病原体,如病毒,这一发现将改变不仅对这些疾病,而且对许多其他自身免疫性疾病的范式。最重要的是,这将使它们可以预防。最近的传染病发病机制的描述,虽然不是由病毒引起的,但证明了我们的应用的可行性。我们建议应用高密度病毒阵列作为筛选和鉴定致病病毒的工具。我们规定致病病原体将存在于血细胞或受影响的组织中,即使由于持续的低生产力或潜伏感染而数量较低。我们将使用11k病毒芯片在每个疾病实体的组织中建立DNA和RNA杂交模式,并通过设计包含最有希望的探针的多个拷贝的定制阵列来缩小我们的搜索范围。如果结果表明是一种新的病原体,我们将克隆并表征其基因组。如果检测到先前鉴定的病毒,我们将采用血清学和PCR检测来确定病毒核酸在各种组织中的检测发生率、血清阳性和滴度。我们认为,挑战这些疾病的特发性主要是自身免疫的本质是生物医学研究的一个重要任务,因为识别病毒病原体将使这些疾病可以避免,并受到预防和改进诊断。
英文摘要
DESCRIPTION (provided by applicant): Many diseases strike humans without obvious cause and, despite intense research, their etiology remains idiopathic. Thus, contesting current theories of pathogenesis for such conditions may result in unexpected progress and new lines of scientific inquiry. For example, it is likely that some idiopathic or autoimmune conditions or even cancers may be attributable to infectious agents even if conventional research avenues favor other mechanisms. Immune-mediated bone marrow failure syndromes (BMFS) and immune cytopenias, including aplastic anemia (AA), some forms of myelodysplasia, red cell aplasia and others, are all characterized by immune destruction of blood or blood-forming cells by various immunologic effector mechanisms, the target specificity determining the individual clinical presentations. Various pathogenetic mechanisms have been hypothesized to trigger an immune reaction, but no specific triggers have been identified. Clarification of the nature of causative events in these seemingly idiopathic diseases constitutes a major medical challenge. While at first glance the sporadic occurrence of these conditions, their seeming non-contagious nature and other signs of an infectious process may argue for other etiologies, we propose that infectious agents are responsible for triggering the subsequent immune pathophysiologic cascade. Our hypothesis that viral pathogens constitute the inciting events in AA or other immune-mediated cytopenias challenges the traditional understanding of autoimmunity in these specific conditions but if infectious agents, likely viruses, can be identified, such a discovery would change the paradigm not only for these diseases but also for many other autoimmune diseases. Most importantly, it would render them preventable. Recent descriptions of infectious pathogenesis in conditions not otherwise though to be caused by a virus demonstrate the viability of our application. We propose to apply high-density viral arrays as tools to screen and identify causative viruses. We stipulate that the offending pathogen will be present in blood cells or affected tissues even if in low quantities due to the persistent low productive or latent infection. We will apply 11k viral chip to establish DNA and RNA hybridization patterns in tissues for each disease entity in the earliest samples at presentation and during relapse and will narrow our search by design of custom arrays containing multiple copies of the most promising probes. Should results suggest a novel pathogen, we will clone and characterize its genome. Should a previously identified virus be detected we will apply serologic and PCR testing to establish incidence of viral nucleic acid detection in various tissues, seropositivity and titers. We believe that is a an important task of biomedical research to challenge the idiopathic primarily autoimmune nature of these disease as recognition of viral pathogen would render these disease avoidable and subject to prevention and improved diagnosis.
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