Second Generation Approaches to Foamy Virus (FV) Vector SCID-X1 Gene Therapy
Second Generation Approaches to Foamy Virus (FV) Vector SCID-X1 Gene Therapy
批准号:
8567343
负责人:
GRANT D TROBRIDGE
金额:
$31.74万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
关键词:
Canis familiarisCellsClinicClinical DataClinical ResearchClinical TrialsClonal ExpansionDiseaseFutureGene Transduction AgentGenerationsGenesGoalsHealthHematopoieticHematopoietic stem cellsHumanLeadLeftLentivirus VectorLifeLinkMethodsMissionModelingMusPatientsProductionProto-OncogenesProvirusesPublic HealthRelative (related person)Relative RisksResearchSCID MiceSafetyShuttle VectorsSpumavirusSystemTestingTherapeuticViral GenesX-Linked Severe Combined Immunodeficiencybasecostgene therapygenotoxicityimprovedinnovationleukemianovelnovel strategiespre-clinicalprogramsvector
中文摘要
点击翻译按钮获取中文摘要
英文摘要
X-linked severe combined immunodeficiency (SCID-Xl) is uniformly fatal in the first years of life if left
untreated. Hematopoietic stem cell (HSC) gene therapy offers the best therapeutic option for many patients
who do not have HLA-matched donors. In SCID-Xl clinical studies gammaretroviral vector proviruses have
dysregulated nearby proto-oncogenes including LM02, leading to clonal expansion and in some cases frank
leukemia. Thus, safer vector systems that are less likely to transactivate proto-oncogenes are needed for
SC1D-X1 gene therapy. FV vectors may be a safer alternative to the gammaretroviral vectors used for SCID-
Xl clinical trials. They have a favorable integration profile with respect to integration near proto-oncogenes
and a reduced propensity to transactivate nearby genes relative to gammaretroviral and lentiviral vectors.
Our long term goal is to develop safer and more effective FV vectors for HSC gene therapy, and to better
understand the relative risks of using these vectors. Additionally, we would like to better understand host
restriction mechanisms that impact FVs. If host restriction mechanisms can be identified and eliminated from
the cells used to produce FV vectors, FV vector titers may be improved. This would reduce the costs of
future clinical trials, potentially leading to increased use of FV vectors in the clinic. Our objectives in this
application are to establish the relative safety of FV vectors using a novel approach to assess genotoxicity,
to develop safer insulated FV vectors, and to improve the efficiency of FV vector production. We will employ
an innovative shuttle vector approach that does not rely on PCR-based exponential amplification to better
understand potential FV vector genotoxicity. Our proposal is highly integrated with the other program
Projects. We will collaborate to test our novel insulated FV SCID-Xl vectors in the mouse (Project 1) and
dog (Project 2) SCID-Xl models using this novel shuttle vector approach to generate highly significant pre-
clinical data. Our central hypothesis is that FV vector safety and efficiency of production can be improved.
The proposed research is significant because it is expected to lead to the use of FV vectors in the clinic for
life-threatening diseases including SCID-Xl.
RELEVANCE:
The proposed project is directly related to public health because developing improved methods to assess
vector genotoxicity, and developing safer and more effective gene therapy vectors is expected to lead to
successful treatment of SCID-Xl and other hematopoietic diseases. The proposed research is thus directly
related to the NIH's mission to develop innovative research strategies and apply them to improve human
health.
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财政年份:--
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依托单位:
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