Immunological characterization of the P. vivax DBP
Immunological characterization of the P. vivax DBP
批准号:
10363651
负责人:
John H Adams
金额:
$58.45万
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:
2006-08-01 至 2024-03-31
关键词:
3-DimensionalAddressAdjuvantAffectAffinityAgeAmino Acid SubstitutionAnimalsAntibodiesAntibody ResponseAntigen ReceptorsAntigensAreaB-Lymphocyte EpitopesB-Lymphocyte SubsetsB-LymphocytesBindingBinding ProteinsBiologicalBloodBrazilCellsClinicalCohort StudiesCollaborationsCross-Sectional StudiesDataDevelopmentDiseaseDoseDrug resistanceEngineeringEpitopesEvaluationFormulationGenesGenetic PolymorphismGoalsHIVHIV Envelope Protein gp120HealthHumanImmuneImmune responseImmunityImmunizationImmunization ScheduleImmunoglobulin GImmunologic MemoryImmunologicsImmunologyIndividualInfectionKineticsLifeLigandsMalariaMediatingMemoryMemory B-LymphocyteMethodsMusNatural ImmunityNatureOutcomeParasitesParasitologyPatientsPersonsPhenotypePlasmodium vivaxPreclinical TestingProblem SolvingProductionRecombinant ProteinsRecombinantsRegimenRelapseReticulocytesSolidSolubilitySpecificitySurfaceSystemT-LymphocyteTertiary Protein StructureTranscendVaccinationVaccine DesignVaccinesVariantVirulentVivax Malariabasecell mediated immune responsechemokine receptorcost estimatedesigndimerglobal healthhuman monoclonal antibodiesimmunogenicimmunogenicityimprovedin vitro Assaylong term memorymicrobialprogramsprotein expressionprotein purificationreceptorresponsesexstructural biologytoolvaccination protocolvaccination strategyvaccine candidatevaccine developmentvaccine efficacyvaccine strategyvaccinology
中文摘要
项目摘要/摘要
间日疟原虫Duffy结合蛋白配基结构域(DBPII)是一种领先的间日疟疫苗候选疫苗
在致病的血液阶段对寄生虫存活的相对重要性。然而,DBPII是
天然的弱免疫原性,并诱导菌株特异性免疫。我们解决问题的方法
菌株免疫是设计一种疫苗,将抗体反应集中在保守的B细胞表位上
DBPII内被证实为保护性免疫目标的功能区。在一项概念验证研究中,
我们证明了缺乏优势变异B细胞表位的工程化DBPII免疫原仍然存在
免疫原性好,可诱导更广泛的抑制性抗体(BIAbs)。DBPII的结果是-
工程疫苗前景看好,下一个关键步骤将是确定诱导
针对保守中和表位的长寿抗体和记忆B细胞(MBCs)反应。这个
该计划的总体目标是设计一种疫苗接种策略,以诱导不同的B-亚群。
在对间日疟具有保护性免疫力的人体内扩增的细胞。我们的假设是人们能够
生产广泛天然获得的DBPII BIAbs(精英响应者)安装有效和长期的DBPII-
特异性记忆B细胞(MBCs),这可以通过接种疫苗来复制。我们将在表型上和
对免疫个体的B细胞亚群进行功能表征,以优化新型DBPII疫苗的设计
可以诱导出具有不同DBPII特异性的MBCs细胞。为此,我们将利用巴西人的优势
横断面和队列研究,其中确定了DBPII应答者的不同特征,包括
具有超越压力的DBPII-BIAB的持久应答者。预计DBPII将是一个重要的
多阶段、多价疫苗的组成部分,用于预防间日疟。这项提议建立在一个
巴西和美国的合作者之间建立了坚实和成功的合作关系,结合
加强寄生虫学、免疫学和结构生物学,优化DBPII作为有效的疫苗
间日疟。
英文摘要
Project Summary/Abstract
Plasmodium vivax Duffy binding protein ligand domain (DBPII) is a leading vivax vaccine candidate based
upon its relative importance for parasite survival during the disease-causing blood stage. However, DBPII is
naturally weakly immunogenic and induces strain-specific immunity. Our approach to solve the problem
strain immunity is to design a vaccine that focuses antibody responses onto conserved B-cell epitopes in
functional regions within DBPII that are proven targets of protective immunity. In a proof-of-concept study,
we demonstrated that an engineered DBPII immunogen lacking the dominant variant B-cell epitope retained
good immunogenicity and induced more broadly inhibitory antibodies (BIAbs). The results for the DBPII-
engineered vaccine is promising and the next critical step will be to determine the requirements to induce
long-lived antibody and memory B-cell (MBCs) responses targeting conserved neutralizing epitopes. The
overall goal of this program is to design a vaccination strategy to induce the distinct subpopulations of B-
cells that are expanded in people with protective immunity to vivax malaria. Our hypothesis is people able to
produce broadly naturally acquired DBPII BIAbs (elite responders) mount an efficient and long-term DBPII-
specific memory B-cells (MBCs) and this can be replicated by vaccination. We will phenotypically and
functionally characterize B cell sub-sets in immune individuals, to optimize the design of new DBPII vaccine
that can induce MBCs cells with specificity for different DBPII. For that, we will take advantage of Brazilian
cross-sectional and cohort studies, where different profiles of DBPII responders were identified, including
persistent responders with strain-transcending DBPII-BIABs. DBPII is expected to be an important
component of a multi-stage, multi-valent vaccine to protect against vivax malaria. The proposal builds on a
solid and successful collaboration established between the Brazilian and US collaborators, combining
strengths parasitology, immunology, and structural biology to optimize DBPII as an effective vaccine against
vivax malaria.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
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依托单位:
海外基金