首页> 外文期刊>Cell transplantation >Intracerebroventricular transplantation of human bone marrow-derived multipotent progenitor cells in an immunodeficient mouse model of mucopolysaccharidosis type I (MPS-I)
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Intracerebroventricular transplantation of human bone marrow-derived multipotent progenitor cells in an immunodeficient mouse model of mucopolysaccharidosis type I (MPS-I)

机译:在I型粘多糖贮积症(MPS-I)免疫缺陷小鼠模型中,将人骨髓源性多能祖细胞进行脑室内移植

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Mucopolysaccharidosis type I (MPS-I; Hurler syndrome) is an inborn error of metabolism caused by lack of the functional lysosomal glycosaminoglycan (GAG)-degrading enzyme α-L-iduronidase (IDUA). Without treatment, the resulting GAG accumulation causes multisystem dysfunction and death within the first decade. Current treatments include allogeneic hematopoietic stem cell transplantation (HSCT) and enzyme replacement therapy. HSCT ameliorates clinical features and extends life but is not available to all patients, and inadequately corrects the most devastating features of the disease including mental retardation and skeletal deformities. Recent developments suggest that stem cells can be used to deliver needed enzymes to the central nervous system. To test this concept, we transplanted bone marrow-derived normal adult human MultiStem? cells into the cerebral lateral ventricles of immunodeficient MPS-I neonatal mice. Transplanted cells and human-specific DNA were detected in the hippocampal formation, striatum, and other areas of the central nervous system. Brain tissue assays revealed significant long-term decrease in GAG levels in the hippocampus and striatum. Sensorimotor testing 6 months after transplantation demonstrated significantly improved rotarod performance of transplanted mice in comparison to nontransplanted and sham-transplanted control animals. These results suggest that a single injection of MultiStem cells into the cerebral ventricles of neonatal MPS-I mice induces sustained reduction in GAG accumulation within the brain, and modest long-term improvement in sensorimotor function.
机译:I型粘多糖贮积病(MPS-1; Hurler综合征)是由于缺乏功能性溶酶体糖胺聚糖(GAG)降解酶α-L-艾杜糖苷酸酶(IDUA)引起的先天性代谢错误。如果不进行治疗,则产生的GAG积累会在第一个十年内导致多系统功能障碍和死亡。目前的治疗方法包括同种异体造血干细胞移植(HSCT)和酶替代疗法。 HSCT改善了临床特征并延长了寿命,但并非对所有患者都可用,并且不足以纠正该疾病最具破坏性的特征,包括智力低下和骨骼畸形。最近的发展表明干细胞可用于将所需的酶传递至中枢神经系统。为了检验这个概念,我们移植了骨髓来源的正常成人MultiStem?细胞进入免疫缺陷的MPS-1新生小鼠的大脑侧脑室。在海马结构,纹状体和中枢神经系统的其他区域中检测到移植的细胞和人类特异性DNA。脑组织测定显示,海马和纹状体中GAG水平长期显着下降。移植后6个月的感觉运动测试表明,与未移植和假移植的对照动物相比,移植小鼠的轮转表现显着提高。这些结果表明,向新生MPS-1小鼠的脑室单次注射MultiStem细胞可诱导脑内GAG积累的持续减少,并在感觉运动功能方面适度长期改善。

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