课题基金 / 基金详情

COMPREHENSIVE GENE THERAPY FOR MUCOPOLYSACCHARIDOSIS VII

COMPREHENSIVE GENE THERAPY FOR MUCOPOLYSACCHARIDOSIS VII
粘多糖症综合基因治疗 VII
批准号:
7432422
负责人:
JAYANTA ROY-CHOWDHURY
金额:
$32.47万
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-05-01 至 2010-04-30

项目摘要

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中文摘要
翻译
描述(由申请人提供):我们的长期目标是开发安全有效的综合基因治疗粘多糖病的方法,粘多糖病的特征是溶酶体糖胺聚糖(GAG)沉积,这是由于遗传缺乏逐步降解GAG所需的酶而导致的。由于GAG沉积影响多个系统,包括肝脏、脾脏、骨骼、大脑和眼睛,因此对这些疾病的基因治疗提出了一个特殊的挑战。在这个项目中,我们将针对粘多糖病- vti (MPS-VII, β -葡糖醛酸酶缺乏症,Sly综合征),因为有一个很好的小鼠模型。在初步研究中,我们已经表明,利用重组sv40载体转移β -葡萄糖醛酸酶(GUSB)基因有可能改善大脑、肝脏和脾脏中的GAG沉积。第一个具体目标是优化基于SV40的载体,以实现安全有效的系统基因转移。新的病毒基因删除载体将产生容纳启动子在各种组织中有效的长期转基因表达。将引入绝缘体以保护宿主基因组中的邻近基因不被载体内的增强子意外激活。在Specific Aim 2中,我们将确定最佳的给药途径、基因转移的有效性、组织和血清GUSB水平以及含有gag的溶酶体囊泡的减少。除了评估肝脏和脾脏的表型纠正外,还将特别强调通过静脉注射、脑室注射或脑内注射载体后,基因转移到大脑不同区域的各种类型的脑细胞中。我们还将确定将这些载体注射到新生或胎儿小鼠体内,在发育早期纠正GUSB缺陷的能力,从而防止早期脑损伤,这在MPS VII中很常见。由于基于sv -40的载体无毒、无免疫原性且能够整合到宿主基因组中,因此该项目的成功完成将为与内脏、骨骼和中枢神经系统损伤相关的各种形式的溶酶体贮积性疾病的综合分子治疗提供一种安全有效的方法。
英文摘要
DESCRIPTION (provided by applicant): Our long-term objective is to develop safe and effective methods for comprehensive gene-based therapies for mucopolysaccharidoses, which are characterized by lysosomal glycosaminoglycan (GAG) deposition, resulting from inherited deficiency of enzymes needed for stepwise degradation of GAGs. Because GAG deposits affect multiple systems, including the liver, spleen, bones, brain and eyes, gene therapy for these disorders present a special challenge. In this project, we will target mucopolysaccharidosis-VTI (MPS-VII, beta-glucuronidase deficiency, Sly syndrome), since a well-characterized murine model is available. In preliminary studies, we have shown that transfer of the beta-glucuronidase (GUSB) gene using recombinant SV40-based vectors has the potential to ameliorate the GAG deposits in the brain as well as in the liver and spleen. The first specific aim is to optimize SV40- based vectors for safe and efficient systemic gene transfer. Novel viral gene-deleted vectors will be generated to accommodate promoters for efficient long-term transgene expression in various tissues. Insulators will be introduced to protect neighboring genes in the host genome from being accidentally activated by enhancers within the vector. In Specific Aim 2, we will determine optimal routes of administration, efficacy of gene transfer, tissue and serum GUSB levels and reduction of GAG-containing lysosomal vesicles. In addition to evaluating phenotypic correction of the liver and spleen, special emphasis will be placed on gene transfer to various types of brain cells in different regions of the brain after intravenous, intracerebro-ventricular or intracerebral injection of the vectors. We will also determine the potential of injecting these vectors into newborn or fetal mice on the ability to correct GUSB deficiency early in development, thereby preventing early brain damage, which is common in MPS VII. Since SV-40-based vectors are non-toxic, non-immunogenic and capable of integrating into the host genome, successful completion of this project should provide a safe and effective method for comprehensive molecular therapy of all forms of lysosomal storage disorders that are associated with visceral, skeletal and central nervous system injury.
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Core D: Genetic Engineering and Gene Therapy Core
Cell Culture and Genetic Engineering Core
Cell Culture and Genetic Engineering Core
Cell Culture and Genetic Engineering Core
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