The vital role of BAFF in the development of SLE
The vital role of BAFF in the development of SLE
批准号:
7233962
负责人:
William Stohl
金额:
$34.82万
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:
2006-05-16 至 2011-02-28
关键词:
AddressAdverse eventAutoantibodiesAutoimmune DiseasesAutoimmune ProcessAutoimmunityAutomobile DrivingB-Cell DevelopmentB-LymphocytesBreedingCell CountCell SurvivalClinicalClinical TrialsConditionDevelopmentDiseaseDisease modelDissectionFamilyFoundationsFrequenciesGeneticGenetic Predisposition to DiseaseGenotypeGm(m)HumanHuman GenomeImmunoglobulin MIndividualInterleukin-4Kidney DiseasesLeadMaintenanceModelingMusOrganPathologicPathway interactionsPatientsPhase I Clinical TrialsPlacebosPlasma CellsPlayProductionProtein OverexpressionRelative (related person)ResistanceRoleScienceSerologicalSignal TransductionSolidSurfaceSystemic Lupus ErythematosusTALL-1 proteinTNF geneUrsidae Familybasebis(3-bis(4-chlorophenyl)methyl-4-dimethylaminophenyl)amineclinical efficacyexperiencein vivoin vivo Modelinsightinterestreceptorresponserituximab
中文摘要
描述(由申请人提供):本提案的基本前提是,在许多(但不一定是全部)SLE患者中,属于TNF家族的B细胞活化因子(BAFF)的体内生成增加是疾病发展和/或维持的重要和核心因素。BAFF是一种重要的B细胞生存和共刺激因子。尽管BAFF拮抗剂进入人体临床试验,但在使用BAFF拮抗剂治疗之前,需要对几个关键问题有更深入的了解,才能充分发挥其临床潜力。首先,BAFF过表达导致疾病的体内条件与BAFF过表达不导致疾病的体内条件在很大程度上尚未探索。开发一种体内模型,其中baff驱动的疾病迅速发展,将有助于对必要途径的实验解剖。相反,在体内模型的发展中,BAFF的组成性过表达不能驱动自身免疫,将有助于解剖对BAFF产生抗性的途径。其次,个体BAFF受体对BAFF驱动的自身免疫性疾病的相对重要性尚不清楚,需要确定。第三,目前尚不清楚BAFF的促病作用是由于致病自身抗体的产生,还是由于对B细胞的影响,而B细胞在很大程度上独立于自身抗体的产生。为了开始解决这些问题,提出以下问题:1a)持续的BAFF过量是否与潜在的不完全SLE遗传易感协同作用并导致疾病的快速发展?1b) SLE抑制基因区域是否可以防止BAFF持续过表达的促病作用?2a)消除BAFF是否会改善sled易发宿主自身免疫性疾病的发展?2b)消除BAFFR和/或BCMA是否会改善sle易发宿主或由BAFFR驱动的自身免疫性疾病宿主的疾病发展?3) BAFF是否以不依赖自身抗体的方式促进自身免疫性疾病?这些小鼠体内研究的结果将提供有关baff驱动疾病的重要信息,这将有助于为随后针对人类SLE患者的体内临床试验奠定坚实的基础。
英文摘要
DESCRIPTION (provided by applicant): The underlying premise of this proposal is that increased in vivo production of B cell activating factor belonging to the TNF family (BAFF), a vital B cell survival and costimulatory factor, is an important and central contributor to disease development and/or maintenance in many, but not necessarily all, SLE patients. The entry of BAFF antagonists into human clinical trials notwithstanding, a greater insight into several critical issues is needed before treatment with BAFF antagonists can realize their full clinical potential. First, in vivo conditions under which BAFF overexpression leads to disease versus those under which BAFF overexpression does not lead to disease have largely been unexplored. Development of an in vivo model in which BAFF-driven disease rapidly develops would facilitate experimental dissection of the requisite pathways. Conversely, development of an in vivo model in which constitutive overexpression of BAFF is incapable of driving autoimmunity would facilitate dissection of pathways that render resistance to BAFF. Second, the relative importance of the individual BAFF receptors to BAFF-driven autoimmune disease is not known and needs to be identified. Third, it is not known whether the disease-promoting effects of BAFF are consequent to production of pathogenic autoantibodies or are consequent to effects on B cells that are largely independent of autoantibody production. To begin to address these issues, the following questions are posed: 1a) Does persistent BAFF overproduction synergize with an underlying incomplete genetic predisposition to SLE and result in rapid development of disease? 1b) Does a SLE suppressor genetic region protect against the disease-promoting effects of persistent BAFF overexpression? 2a) Will elimination of BAFF ameliorate development of autoimmune disease in a SLE-prone host? 2b) Will elimination of BAFFR and/or BCMA ameliorate development of disease in a host that naturally is SLE-prone or in a host with BAFF-driven autoimmune disease? 3) Does BAFF promote autoimmune disease in an autoantibody-independent manner? The results from these in vivo studies in mice should yield important information regarding BAFF-driven disease that will help set a solid foundation for subsequent focused in vivo clinical trials in human SLE patients.
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项目类别:
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T-CELL CYTOLYTIC ACTIVITY IN SLE
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财政年份:1993
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T CELL CYTOLYTIC ACTIVITY IN SLE
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财政年份:1993
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T-CELL CYTOLYTIC ACTIVITY IN SLE
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T-CELL CYTOLYTIC ACTIVITY IN SLE
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项目类别:
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财政年份:1993
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T CELL CYTOLYTIC ACTIVITY IN SLE
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资助金额:$30.05万
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财政年份:1993
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负责人:William Stohl
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海外基金