Gammadelta T cell Regulation of Adaptive Immunity in West Nile Virus Infection
Gammadelta T cell Regulation of Adaptive Immunity in West Nile Virus Infection
批准号:
8211016
负责人:
Tian Wang
金额:
$36.79万
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-02-01 至 2015-01-31
关键词:
3 year oldAddressAdjuvantAdoptive TransferAffectAgeAgingAnimalsAntigensBudgetsCD4 Positive T LymphocytesCD8B1 geneCell AgingCellsCessation of lifeDataDevelopmentDisease OutbreaksElderlyEligibility DeterminationEncephalitisExperimental DesignsFlavivirusFrequenciesFunctional disorderGenerationsGoalsHealthHumanIACUCImmuneImmunityImmunocompromised HostInfectionLeadMemoryMusNorth AmericaPhenotypePopulationPredispositionProtocols documentationPublic HealthPublishingResearch PersonnelRiskRodentRoleSecondary toStagingT cell regulationT cell responseT memory cellT-LymphocyteT-Lymphocyte SubsetsTestingVaccinationVaccine DesignVaccinesViralViral EncephalitisVirus DiseasesWest Nile virusadaptive immunityagedanimal facilitycell agecostexperiencehigh riskimprovedinsightinterestmemory CD4 T lymphocytemicrobialnervous system disorderolder patientpathogenreconstitutionresponsevaccine developmentvectorweb site
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): West Nile virus (WNV), a vector-borne pathogen, has resulted in annual outbreaks of viral encephalitis in North America since 1999. Severe neurological disease (encephalitis or death) has been observed in over 30% of the confirmed WNV cases with a higher frequency in the elderly and immunocompromised patients. Human vaccines are not available yet. Thus, it is important to understand factors contributing to the development of long-lasting protective immunity, especially in the potentially susceptible host. 34 T cells, the non-classical T cell subsets, are involved in the early control of microbial infection. In two recently published studies, we have shown that 1) 34 T cells are important for early control of WNV dissemination and that 2) TCR4 / (34 T cell deficient) mice have reduced CD8+ T cell memory response and are more susceptible to secondary WNV infection. Moreover, our preliminary data show that aged mice are more susceptible to WNV induced encephalitis than young mice. 34 T cells of aged mice respond to WNV infection in a much slower and reduced manner than those of young mice. This suggests that the dysfunction of 34 T cells in aged mice contributes to the enhanced host susceptibility to WNV induced encephalitis. The decline in immunity in the elderly is a significant contributor to the increased risk of pathogen infection. The overall goal of this application is to examine the role of 34 T cells in host adaptive immunity against WNV. Specifically, we hypothesize that 34 T cells are crucial for the development of memory T cells following WNV challenge; dysfunction of 34 T cells in aged mice leads to a defective adaptive immunity against WNV. In Specific aim 1, we will further define the role of 34 T cells in host adaptive immunity against WNV. We will characterize CD8+ T cell response at different stages of development and assess CD4+ T cell memory response in TCR4-/- mice. In Specific aim 2, we will attempt to dissect the underlying mechanisms by which 34 T cells regulate host adaptive immunity. The interactions between 34 T cells and other immune cells during WNV infection will be examined. In Specific aim 3, we will determine whether the dysfunction of 34 T cells in aged mice leads to a defective adaptive immunity against WNV. Information obtained from this study will not only enhance our understanding of host immunity against WNV; but also will provide critical basic insights for new strategies in flavivirus vaccine development. PUBLIC HEALTH REVELENCE: West Nile virus (WNV) has become an increasing public health concern. Severe neurological disease (encephalitis or death) has been observed in over 30% of the confirmed WNV cases with a higher frequency in the elderly and immunocompromised patients. Human vaccines are not available yet. It is important to understand factors contributing to the development of long-lasting protective immunity, especially in the potentially susceptible host. The overall goal of this application is to examine the role of 34 T cells in adaptive immunity against WNV. We anticipate information obtained from this study will not only enhance our understanding of host immunity against WNV; but also will provide critical basic insights for new strategies in flavivirus vaccine development.
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A hamster-derived West Nile virus isolate induces persistent renal infection in mice.
仓鼠衍生的西尼罗河病毒分离株可诱导小鼠持续性肾脏感染。
DOI:
10.1371/journal.pntd.0002275
发表时间:
2013
期刊:
PLoS neglected tropical diseases
影响因子:
3.8
作者:
[Saxena,Vandana, Xie,Guorui, Li,Bei, Farris,Tierra, Welte,Thomas, Gong,Bin, Boor,Paul, Wu,Ping, Tang,Shao-Jun, Tesh,Robert, Wang,Tian]
通讯作者:
Wang,Tian
DOI:
10.1016/j.vaccine.2014.12.056
发表时间:
2015-02-11
期刊:
VACCINE
影响因子:
5.5
作者:
[Xie, Guorui, Luo, Huanle, Tian, Bing, Mann, Brian, Bao, Xiaoyong, McBride, Jere, Tesh, Robert, Barrett, Alan D., Wang, Tian]
通讯作者:
Wang, Tian
DOI:
10.1111/j.1574-695x.2011.00840.x
发表时间:
2011-11
期刊:
FEMS immunology and medical microbiology
影响因子:
--
作者:
[Welte T, Aronson J, Gong B, Rachamallu A, Mendell N, Tesh R, Paessler S, Born WK, O'Brien RL, Wang T]
通讯作者:
Wang T
A hamster-derived West Nile virus strain is highly attenuated and induces a differential proinflammatory cytokine response in two murine cell lines.
仓鼠衍生的西尼罗河病毒株高度减毒,可在两种小鼠细胞系中诱导不同的促炎细胞因子反应。
DOI:
10.1016/j.virusres.2012.04.013
发表时间:
2012
期刊:
Virus research
影响因子:
5
作者:
[Saxena,Vandana, Welte,Thomas, Bao,Xiaoyong, Xie,Guorui, Wang,Jia, Higgs,Stephen, Tesh,RobertB, Wang,Tian]
通讯作者:
Wang,Tian
A West Nile virus NS4B-P38G mutant strain induces adaptive immunity via TLR7-MyD88-dependent and independent signaling pathways.
西尼罗河病毒 NS4B-P38G 突变株通过 TLR7-MyD88 依赖性和独立信号通路诱导适应性免疫。
DOI:
10.1016/j.vaccine.2013.06.093
发表时间:
2013
期刊:
Vaccine
影响因子:
5.5
作者:
[Xie,Guorui, Welte,Thomas, Wang,Jia, Whiteman,MelissaC, Wicker,JasonA, Saxena,Vandana, Cong,Yingzi, Barrett,AlanDT, Wang,Tian]
通讯作者:
Wang,Tian
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Gammadelta T cell Regulation of Adaptive Immunity in West Nile Virus Infection
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