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In Vivo ADA Gene Delivery for the Treatment of SCID

In Vivo ADA Gene Delivery for the Treatment of SCID
用于治疗 SCID 的体内 ADA 基因递送
批准号:
8075650
负责人:
Donald B Kohn
金额:
$45.43万
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-06-01 至 2013-05-31

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中文摘要
翻译
描述(由申请方提供):腺苷脱氨酶(ADA)缺乏导致20%的人严重联合免疫缺陷(SCID)。目前ADA缺陷型SCID的治疗具有临床益处,但每种方法都有局限性。因此,开发新的治疗方法对这种形式的SCID很重要,这些进展可能对其他原发性免疫缺陷、血细胞疾病和代谢紊乱具有治疗应用。ADA缺陷型SCID的独特病理生理学,具有通过ADA异位表达反式校正免疫缺陷的潜力,可能允许开发新的治疗方法。我们已经在鼠ADA基因敲除小鼠模型中确定,携带正常人ADA cDNA的慢病毒载体的单次静脉内给药导致系统性ADA基因递送和ADA酶表达,其恢复免疫力并显著延长存活。该提案的中心假设是:正常ADA基因的体内全身递送将在临床上有益于纠正ADA缺陷型SCID的生化和免疫学异常,提供与外源性酶替代疗法相似或更高的疗效,但作为单一治疗,而不是作为慢性方案。为了验证这个假设,我们将1。通过在ADA基因敲除小鼠中IV载体施用优化体内基因递送,2.评估体内ADA基因递送的作用机制,以及3.将大型动物病媒剂量测定、药代动力学、生物分布和毒理学定义为临床前研究。本提案的总体目标是优化全身ADA基因递送的疗效,更好地了解治疗作用机制,并在大型动物模型中进行初步临床前研究。与公共卫生的相关性:原发性免疫缺陷病是一种严重的、危及生命的疾病,患者在生命的最初几年往往会发生严重的、危及生命的感染。目前对这些疾病的治疗具有显著的疗效,但仍然是次优的。因此,必须继续开发新的和改进的方法来治疗原发性免疫缺陷病,这是该项目的主要目标,具有显著的疗效,但仍然是次优的。
英文摘要
DESCRIPTION (provided by applicant): Deficiency of adenosine deaminase (ADA) is responsible for 20% of human severe combined immune deficiency (SCID). Current therapies for ADA-deficient SCID have clinical benefits, but each approach has limitations. Thus, development of novel therapeutic approaches are important for this form of SCID and these advances may have therapeutic applications for other primary immune deficiencies, blood cell diseases and metabolic disorders. The unique pathophysiology of ADA-deficient SCID, with the potential for trans-correction of the immune deficiency by ectopic expression of ADA, may allow a novel therapy to be developed. We have determined in a murine ADA gene knock-out mouse model that a single I.V. administration of a lentiviral vector carrying a normal human ADA cDNA leads to systemic ADA gene delivery and ADA enzyme expression that restores immunity and significantly prolongs survival. The central hypothesis of this proposal is that: In vivo systemic delivery of a normal ADA gene will be clinically beneficial for correcting the biochemical and immunologic abnormalities of ADA-deficient SCID, providing efficacy similar to or greater than that of exogenous enzyme replacement therapy, but as a single treatment, rather than as a chronic regimen. To assess this hypothesis, we will 1. optimize in vivo gene delivery by IV vector administration in ADA gene knock-out mice, 2. evaluate the mechanisms of the effect from in vivo ADA gene delivery, and 3. define large animal vector dosimetry, pharmacokinetics, bio-distribution and toxicology as pre-clinical studies. The overall goals of this Proposal are to optimize the efficacy of systemic ADA gene delivery, to gain better understanding of the mechanisms of the therapeutic effects and to perform initial pre- clinical studies in a large animal model. Relevance to public health: Primary immune deficiency diseases are serious, life-threatening disorders with patients often developing severe, life-threatening infections in the first years of life. Current therapies for these diseases have significant efficacy, but remain sub-optimal. Therefore, it is imperative to continue to develop new and improved methods to treat primary immune deficiency diseases and that is the primary goal of this project have significant efficacy, but remain sub-optimal.
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