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Ex?Vivo Gene Therapy Treats Bone Complications of Mucopolysaccharidosis Type II Mouse Models through Bone Remodeling Reactivation

机译:EX?体内基因治疗通过骨改造再激活治疗二氧​​化二族药剂型二手小鼠模型的骨并发症

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Mucopolysaccharidosis type II is a disease caused by organ accumulation of glycosaminoglycans due to iduronate 2-sulfatase deficiency. This study investigated the pathophysiology of the bone complications associated with mucopolysaccharidosis II and the effect of lentivirus-mediated gene therapy of hematopoietic stem cells on bone lesions of mucopolysaccharidosis type II mouse models in comparison with enzyme replacement therapy. Bone volume, density, strength, and trabecular number were significantly higher in the untreated mucopolysaccharidosis type II mice than in wild-type mice. Accumulation of glycosaminoglycans caused reduced bone metabolism. Specifically, persistent high serum iduronate 2-sulfatase levels and release of glycosaminoglycans from osteoblasts and osteoclasts in mucopolysaccharidosis type II mice that had undergone gene therapy reactivated bone lineage remodeling, subsequently reducing bone mineral density, strength, and trabecular number to a similar degree as that observed in wild-type mice. Bone formation, resorption parameters, and mineral density in the diaphysis edge did not appear to have been affected by the irradiation administered as a pre-treatment for gene therapy. Hence, the therapeutic effect of gene therapy on the bone complications of mucopolysaccharidosis type II mice possibly outweighed that of enzyme replacement therapy in many aspects.
机译:粘性多种素型II型是由于乙糖苷二硫酸糖酶缺乏而由糖胺聚糖的器官积累引起的疾病。本研究调查了与粘性多种子甾体症相关的骨并发症的病理生理学,以及杂志介导的造血干细胞对粘性多糖尿病骨病变的影响,与酶替代疗法相比,粘附型二手小鼠模型。在未处理的粘多蛋白型小鼠中,骨体积,密度,强度和胫胚量显着高于野生型小鼠。糖胺聚糖的积累引起骨代谢降低。具体地,持续的高血清雌磺酸2-硫酸酯水平和粘蛋白聚糖的粘蛋白聚糖酶从成骨细胞和骨髓细胞中释放,其粘多素病患者II型小鼠含有基因治疗重新激活的骨谱系重塑,随后将骨矿物密度,强度和小梁数降低到类似程度的情况下在野生型小鼠中观察到。骨形成,再吸收参数和晶体密度的矿物密度似乎没有受到基因治疗预处理的辐照的影响。因此,基因治疗对粘性多种子蛋白病症骨并发症的治疗效果可能超过了许多方面的酶替代疗法中的比例。

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