Development of an improved vaccine against Brucella abortus
Development of an improved vaccine against Brucella abortus
批准号:
10115608
负责人:
Clayton C Caswell
金额:
$7.77万
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-03-01 至 2023-02-28
关键词:
Animal ModelAnimalsAntibiotic TherapyAntibioticsAntigen PresentationAttenuatedAttenuated VaccinesBacteriaBindingBiological ProcessBrucellaBrucella abortusBrucellosisCell modelCellsChronicCritical PathwaysDataDendritic CellsDevelopmentDiseaseDomestic AnimalsExposure toFamilyFutureGene ExpressionGenesGeneticGenetic TranscriptionGleanGoalsHumanImmuneImmune responseImmune systemInfectionInnate Immune SystemLaboratoriesMediatingMessenger RNAMusPathogenesisPilot ProjectsProceduresProductionProteinsRNARecurrent diseaseResearchSterilityT-Cell ProliferationTestingTranscriptVaccinatedVaccinationVaccinesVirulenceVirulentWild AnimalsWorkabortionadaptive immunityattenuationbioweaponcombatdesignefficacy evaluationexperimental studyexposed human populationfluhost colonizationimmune activationimmunogenicimmunogenicityimmunoregulationimprovedin vivomacrophagemouse modelnovelnovel vaccinespathogenpreventvaccine trial
中文摘要
项目总结
英文摘要
Project Summary
Brucella spp. are bacteria that naturally infect a variety of domesticated and wild animals leading to
abortions and sterility, and these bacteria are also capable of causing debilitating human infections, which
often result from human exposure to infected animals and animal products. Brucella spp. are considered
threats as potential biological weapons. Importantly, antibiotic treatment against brucellosis is prone to disease
relapse, and there is currently no safe and effective vaccine to protect humans against infection with Brucella.
The brucellae are intracellular pathogens that reside within immune cells called macrophages where they
replicate in a specialized compartment, and the capacity of Brucella to survive and replicate within
macrophages is essential to their ability to cause disease. Over the last few years, our laboratory has
characterized genetic pathways that are critical for the intracellular survival and pathogenesis of Brucella
strains, and specifically, we have identified small regulatory RNAs (sRNAs) that are essential for Brucella
virulence.
Preliminary experiments have demonstrated that a family of sRNAs, called the AbcRs is required for the
ability of B. abortus to chronically infect mice. When these genes encoding these two sRNAs (i.e., AbcR1 and
AbcR2) are deleted, the resulting strain is highly attenuated, and moreover, we have determined that this
deletion strain produces extremely high levels of Brucella immunogenic proteins. We hypothesize that the
abcR1 abcR2 deletion strain can serve as a highly effective live, attenuation vaccine against B. abortus
challenge, and the pilot studies outlined in this application will test this hypothesis. In the end, the information
gleaned from these studies may be used to develop an effective vaccine against human Brucella infection.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Characterizing the impact of small regulatory RNAs on the virulence of Brucella spp.
-
批准号:10057427
-
项目类别:
-
资助金额:$19.57万
-
财政年份:2020
-
负责人:Clayton C Caswell
-
依托单位:
Characterizing the impact of small regulatory RNAs on the virulence of Brucella spp.
-
批准号:10228752
-
项目类别:
-
资助金额:$23.56万
-
财政年份:2020
-
负责人:Clayton C Caswell
-
依托单位:
海外基金