Molecular Basis of Infectivity of Brugia malayi microfilariae
Molecular Basis of Infectivity of Brugia malayi microfilariae
批准号:
7194075
负责人:
Michelle Lynn Michalski
金额:
$20.06万
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-03-15 至 2011-02-28
关键词:
AdultAffectAgeApplications GrantsArthropod VectorsArthropodsBiochemicalBiologicalBiological AssayBiological ProcessBloodBlood CirculationBoxingBrugiaBrugia malayiCandidate Disease GeneComplementary DNAComplexCulicidaeCytoskeletal GeneDevelopmentDirofilariasisDiseaseDrug Delivery SystemsEndopeptidasesEnvironmentFemaleFilarial ElephantiasesFutureGene ExpressionGenesGenus WuchereriaGerbilsGoalsGroupingHarvestHumanInfectionInsectaInvertebratesInvestigationLaboratoriesLarvaLeftLifeLife Cycle StagesLymphaticMetabolicMicroarray AnalysisMicrofilariaMidgutModelingMolecularMorbidity - disease rateMuscleNatureNematodaNewborn InfantOcular OnchocerciasisOligonucleotide MicroarraysOnchocerciasisParasitesPatternPenetrationPeptide HydrolasesPeripheralPhysiologicalPlayPolymerase Chain ReactionProcessProteinsProteomicsRNAReproductionResearch PersonnelRoleSideStagingSurfaceTechnologyTestingTimeTransplantationVaccine DesignVaccinesVertebratesbaseburden of illnesschemotherapeutic agentdaydisabilityfilariainsightinterestlife historymRNA Expressionmanpreventprotein expressionreceptorresearch studytransmission processuptakevectorvector mosquitovector transmission
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Lymphatic filariasis is a major cause of morbidity in the tropics, and is caused by mosquito-borne filarial nematodes in the general Wuchereria and Brugia. The life cycle of these nematodes is complex, and relies on transmission of larval stages from mosquito to human, and vice versa. Our long-term objectives are to characterize parasite molecules that are crucial for the infectivity of the L1 stage parasites (microfilariae) for the mosquito host, in the hopes that they can be targeted to curtail man-to-vector transmission. Within the lymphatics of the human host, adult worms copulate and the females shed live immature microfilariae. The larvae are carried into the peripheral circulation and are ingested by the mosquito vector during a blood meal. Newborn microfilariae, however, are not immediately effective for the mosquito host, but must undergo a maturation process in the bloodstream prior to uptake. Maturation is accompanied by changes in microfilarial protein expression, and our hypothesis is that the difference in infectivity between immature and mature microfilariae can be explained by differences in gene expression. We will test this hypothesis by comparing gene expression patterns of immature and mature microfilariae using microarray technology. The specific aims of this project are to: (1) demonstrate the difference in infectivity status of immature and mature Brugia malayi microfilariae using mosquito infectivity assays, (2) use microarray hybridization technology to identify microfilarial genes that are differentially expressed during maturation, and (3) develop candidates for further study by grouping differentially expressed gene products by proposed function and verifying transcriptional patterns using real time PCR. This approach will allow us to identify molecules that promote maturation of newborn B. malayi larvae that allow transmission from man to the disseminating mosquito vector. It's conceivable that parasite molecules that play integral roles in the maturation process can be targeted by drugs or vaccines designed to inhibit reproduction or curtail transmission to the mosquito. These strategies have the potential for breaking the transmission cycle of lymphatic filariasis and reducing the burden of illness and disability in tropical nations.
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Molecular Basis of Infectivity of Brugia malayi microfilariae
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批准号:7849184
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项目类别:
-
资助金额:$2.04万
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财政年份:2009
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负责人:Michelle Lynn Michalski
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依托单位:
海外基金