A Novel Humanized Mouse Model for Studying HIV/HCV Co-Infection and Liver Disease
A Novel Humanized Mouse Model for Studying HIV/HCV Co-Infection and Liver Disease
批准号:
7590820
负责人:
Lishan Su
金额:
$17.37万
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:
2008-09-30 至 2010-08-31
关键词:
A MouseAP20187AffectAlbuminsAlcohol consumptionAlcoholsAntibodiesBloodCD34 geneCD4 Positive T LymphocytesCellsDendritic CellsDevelopmentDisease ProgressionDoseEpstein-Barr Virus InfectionsEthanolFoundationsFutureGoalsGrowthHIVHIV-1Hematopoietic stem cellsHepatitis CHepatitis C virusHepatocyteHumanImmune responseImmune systemIndividualInduction of ApoptosisInfectionInfiltrationInflammatoryKineticsKnock-outKnockout MiceLightLiverLiver diseasesLymphocyteLymphoidLymphoid TissueModelingMusNatural Killer CellsOrganPathogenesisPatientsPredispositionPublic HealthRouteSpleenStem cellsStudy modelsTacrolimus Binding ProteinsThymus GlandTissuesTransgenic MiceTransplantationViralVirus ReplicationWeekalcohol abuse therapyalcohol effectcytokinehepatocyte engraftmentimprovedin vivoliver infectionlymph nodesmouse modelnovelnovel therapeuticsperipheral bloodreconstitutiontransmission process
中文摘要
描述(由申请人提供):用于研究HIV/HCV合并感染和肝病的新型人源化小鼠模型HIV+个体的酒精消费与病毒合并感染和肝病的易感性增加相关。HIV-1和HCV(丙型肝炎病毒)合并感染,由于共享的传播途径而高度流行,与HCV感染患者的肝脏疾病进展加速相关。目前迫切需要一种能够复制HCV和/或HIV的小鼠模型来研究乙醇和HIV共感染对HCV感染和肝脏发病机制的影响。Rag 2-C双敲除(DKO)小鼠缺乏T/B和NK细胞,并且允许用人造血干细胞(DKO-hu HSC小鼠)开发功能性人免疫系统。正常人T、B和树突细胞存在于淋巴组织如胸腺、脾、外周血(PB)和淋巴结(LN)以及肝脏中。我们还表明,DKO-hu-HSC小鼠允许淋巴器官和肝脏中高水平和持续的HIV-1感染。HIV-1以剂量依赖性方式逐渐耗尽人CD 4 + T细胞,与肝脏中炎性细胞因子和淋巴细胞浸润的诱导相关。此外,HIV-1感染在感染的DKO-hu HSC小鼠中持续>20周,HIV-1存在于淋巴组织和肝脏组织中。此外,HIV-1或EBV感染诱导人免疫应答。最近,我们将人肝细胞和人免疫系统共同移植到移植有人肝细胞祖细胞和CD 34 + HSC细胞的DKO小鼠(DKO-hu HSC/Hep小鼠)中。我建议优化DKO-hu HSC/Hep小鼠,以增加人肝细胞移植的选择性耗尽鼠肝细胞和促进人肝细胞在DKO-hu HSC/Hep小鼠。我们还将研究乙醇和HIV-1共感染如何影响HCV感染和肝脏发病机制。本项目的长期目标是:1)建立相关的小鼠模型,以研究HCV感染和HCV/HIV共感染的免疫发病机制; 2)研究酒精如何影响HIV或HCV感染以及体内肝脏发病机制。具体而言,我们将优化DKO-hu HSC/Hep模型,用于研究HCV感染和免疫发病机制。我们将确定酒精治疗对HCV感染和肝脏发病机制的影响。我们还将研究HIV合并感染如何影响HCV复制和发病机制。这些研究将为未来的研究奠定基础,并为控制与HIV和/或HCV感染相关的肝脏疾病提供新的治疗策略。
公共卫生相关性:本项目的长期目标是:1)开发一种新的小鼠模型,以研究HCV感染和HCV/HIV共感染的免疫发病机制; 2)研究酒精如何影响体内HIV或HCV感染以及肝脏发病机制。我们将确定酒精治疗对HCV感染和肝脏发病机制的影响。我们还将研究HIV合并感染如何影响HCV复制和发病机制。这些研究将为未来的研究奠定基础,并为控制与HIV和/或HCV感染相关的肝脏疾病提供新的治疗策略。
英文摘要
DESCRIPTION (provided by applicant): A Novel Humanized Mouse Model for Studying HIV/HCV Co-Infection and Liver Disease Alcohol consumption by HIV+ individuals has been associated with increased susceptibility to viral co- infection and liver disease. HIV-1 and HCV (hepatitis C virus) coinfection, highly prevalent as a result of shared transmission routes, has been correlated with accelerated liver disease progression in HCV infected patients. A mouse model that allows HCV and/or HIV replication and pathogenesis is urgently needed to study the effect of ethanol and HIV coinfection on HCV infection and liver pathogenesis. The Rag2-C double knockout (DKO) mouse lacks T/B and NK cells, and allows development of a functional human immune system with human Hematopoietic Stem Cell (DKO-hu HSC mice). Normal human T, B, and dendritic cells are present in lymphoid tissues such as thymus, spleen, peripheral blood (PB) and lymph nodes (LN),as well as liver. We also show that DKO-hu-HSC mice allow high and persistent levels of HIV-1 infection in lymphoid organs and liver. Human CD4+ T cells are gradually depleted by HIV-1 in a dose-dependent manner, correlated with induction of inflammatory cytokines and lymphocyte infiltration in the liver. In addition, HIV-1 infection persisted in infected DKO-hu HSC mice for >20 weeks, with HIV-1 in lymphoid and liver tissues. Furthermore, HIV-1 or EBV infection induces human immune responses. Recently, we co-engrafted human hepatocytes and human immune system in the DKO mouse transplanted with human hepatocyte progenitor cells and CD34+ HSC cells (DKO-hu HSC/Hep mice). I propose to optimize the DKO-hu HSC/Hep mouse to increase human hepatocyte engraftment by selectively depleting murine hepatocytes and promoting human hepatocytes in the DKO-hu HSC/Hep mouse. We will also study how ethanol and HIV-1 coinfection affect HCV infection and liver pathogenesis in this model. The long-term goals of this project are to 1) develop a relevant mouse model to investigate the immuno- pathogenesis of HCV infection and HCV/HIV coinfection, 2) study how alcohol affects HIV or HCV infection and liver pathogenesis in vivo. Specifically, we will optimize the DKO-hu HSC/Hep model for studying HCV infection and immuno-pathogenesis. We will establish the effect of alcohol treatment on the infection and liver pathogenesis of HCV. We will also investigate how HIV co-infection affects HCV replication and pathogenesis. These studies will establish the foundation for future study and shed light on novel therapeutic strategies for controlling liver diseases associated with HIV and/or HCV infection.
PUBLIC HEALTH RELEVANCE: The long-term goals of this project are to 1) develop a novel mouse model to investigate the immuno- pathogenesis of HCV infection and HCV/HIV coinfection, and 2) study how alcohol affects HIV or HCV infection and liver pathogenesis in vivo. We will establish the effect of alcohol treatment on the infection and liver pathogenesis of HCV. We will also investigate how HIV co-infection affects HCV replication and pathogenesis. These studies will establish the foundation for future study and shed light on novel therapeutic strategies for controlling liver diseases associated with HIV and/or HCV infection.
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会议论文
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HIV co-infection and HCV-induced liver fibrosis in vivo
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HIV co-infection and HCV-induced liver fibrosis in vivo
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HIV-1 Replication and Pathogenesis in vivo
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