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首页> 外文期刊>Brain research bulletin >Characterization of an immunodeficient mouse model of mucopolysaccharidosis type I suitable for preclinical testing of human stem cell and gene therapy.
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Characterization of an immunodeficient mouse model of mucopolysaccharidosis type I suitable for preclinical testing of human stem cell and gene therapy.

机译:I型粘多糖贮积症免疫缺陷小鼠模型的特征,适用于人类干细胞的临床前测试和基因治疗。

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摘要

Mucopolysaccharidosis type I (MPS-I or Hurler syndrome) is an inherited deficiency of the lysosomal glycosaminoglycan (GAG)-degrading enzyme alpha-l-iduronidase (IDUA) in which GAG accumulation causes progressive multi-system dysfunction and death. Early allogeneic hematopoietic stem cell transplantation (HSCT) ameliorates clinical features and extends life but is not available to all patients, and inadequately corrects its most devastating features including mental retardation and skeletal deformities. To test novel therapies, we characterized an immunodeficient MPS-I mouse model less likely to develop immune reactions to transplanted human or gene-corrected cells or secreted IDUA. In the liver, spleen, heart, lung, kidney and brain of NOD/SCID/MPS-I mice IDUA was undetectable, and reduced to half in heterozygotes. MPS-I mice developed marked GAG accumulation (3-38-fold) in these organs. Neuropathological examination showed GM(3) ganglioside accumulation in the striatum, cerebral peduncles, cerebellumand ventral brainstem of MPS-I mice. Urinary GAG excretion (6.5-fold higher in MPS-I mice) provided a non-invasive and reliable method suitable for serially following the biochemical efficacy of therapeutic interventions. We identified and validated using rigorous biostatistical methods, a highly reproducible method for evaluating sensorimotor function and motor skills development. This Rotarod test revealed marked abnormalities in sensorimotor integration involving the cerebellum, striatum, proprioceptive pathways, motor cortex, and in acquisition of motor coordination. NOD/SCID/MPS-I mice exhibit many of the clinical, skeletal, pathological and behavioral abnormalities of human MPS-I, and provide an extremely suitable animal model for assessing the systemic and neurological effects of human stem cell transplantation and gene therapeutic approaches, using the above techniques to measure efficacy.
机译:I型粘多糖贮积病(MPS-1或Hurler综合征)是溶酶体糖胺聚糖(GAG)降解酶α-1异丁烯酸酶(IDUA)的遗传缺陷,其中GAG积累导致进行性多系统功能障碍和死亡。早期的同种异体造血干细胞移植(HSCT)改善了临床特征并延长了寿命,但不适用于所有患者,并且不足以纠正其最具破坏性的特征,包括智力低下和骨骼畸形。为了测试新疗法,我们表征了一种免疫缺陷的MPS-1小鼠模型,该模型不太可能对移植的人或基因校正细胞或分泌的IDUA产生免疫反应。在NOD / SCID / MPS-1小鼠的肝脏,脾脏,心脏,肺,肾和脑中,IDUA无法检测到,在杂合子中减少到一半。 MPS-1小鼠在这些器官中出现了明显的GAG积累(3-38倍)。神经病理学检查显示,MPS-1小鼠的纹状体,脑柄,小脑和腹侧脑干中存在GM(3)神经节苷脂蓄积。尿GAG排泄(在MPS-1小鼠中高6.5倍)提供了一种无创且可靠的方法,适合连续遵循治疗干预措施的生化功效。我们使用严格的生物统计学方法进行了鉴定和验证,这是一种高度可复制的评估感觉运动功能和运动技能发展的方法。这项Rotarod测试揭示了感觉运动整合中的异常,包括小脑,纹状体,本体感受途径,运动皮层以及获得运动协调。 NOD / SCID / MPS-1小鼠表现出人类MPS-1的许多临床,骨骼,病理和行为异常,并提供了一种非常合适的动物模型,用于评估人类干细胞移植和基因治疗方法的全身和神经学作用,使用以上技术来衡量疗效。

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