Factor IX mouse models for hemophilia B gene therapy
Factor IX mouse models for hemophilia B gene therapy
批准号:
6642935
负责人:
DARREL W STAFFORD
金额:
$26.58万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-08-01 至 2003-07-31
中文摘要
点击翻译按钮获取中文摘要
英文摘要
DESCRIPTION (provided by applicant)
Current efforts toward gene replacement therapy for the hemophilias using
viral vectors show promise for long-term gene expression (over 1 year) of
biologically active secreted proteins (i.e. > 1% of factor IX) in relevant
animal models (hemophilia B mouse and dog models) without significant
toxicity. Animal studies, in particular, underscore the importance of
eliminating transient antibodies to the vector-expressed gene product and
optimizing vector delivery and expression as the pressing challenges for
assured success of human clinical trials. Generation of ideal animal models
and more efficient vector cassettes could advance this phase of development
immensely. Recently, we have been successful in developing Factor IX (FIX)
molecules with higher specific activity due to increased affinity for Factor
VIII or elevated catalytic activity. A single point mutant with threefold
higher binding affinity for collagen IV is anticipated to maintain hemostasis
at a lower concentration of plasma factor IX levels. Combining these viriants
should generate FIX molecules with additional increases in activity. To
effectively test these constructs in vivo, we have engineered a FIX deficient
animal model using ("knock-out") technology that allows for specific
reinsertion ("knock-out") of gene cassettes. With this model, we can assess
the biological activity of the above proposed mutants which should provide a
better understanding of FIX activity in vivo as well as assist in determining
the potential lifelong efficacy and safety of these gene cassettes for viral
vector delivery. An additional objective of this proposal is to generate
normal as well as clinically relevant mutant human FIX mice using this
approach. It is anticipated that we will be able to generate custom designed
humanized FIX mouse models (CRM+/CRM-; inhibitor negative tolerant or
inhibitor positive) thereby mimicking spontaneous mutants now seen in the
clinic, for thorough characterization in the mouse. These animals will be
important for studying Therapeutic levels required from vectors and potential
immune response that may be generated in mutant human FIX mouse background.
Therefore, the major focus of this proposal will be related to testing the
molecular and biological consequences of human and variant factor IX gene
products expressed in a "knock-in" FIX deficient mouse model. The long-term
objective is to better understand the molecular role of FIX in vivo with the
hope of enhancing effective gene therapy in humans.
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海外基金