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Glycoengineered Acid α-Glucosidase With Improved Efficacy at Correcting the Metabolic Aberrations and Motor Function Deficits in a Mouse Model of Pompe Disease

机译:糖工程酸α-葡糖苷酶具有更高的功效可纠正庞贝氏病小鼠模型的代谢异常和运动功能障碍

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摘要

Improving the delivery of therapeutics to disease-affected tissues can increase their efficacy and safety. Here, we show that chemical conjugation of a synthetic oligosaccharide harboring mannose 6-phosphate (M6P) residues onto recombinant human acid α-glucosidase (rhGAA) via oxime chemistry significantly improved its affinity for the cation-independent mannose 6-phosphate receptor (CI-MPR) and subsequent uptake by muscle cells. Administration of the carbohydrate-remodeled enzyme (oxime-neo-rhGAA) into Pompe mice resulted in an approximately fivefold higher clearance of lysosomal glycogen in muscles when compared to the unmodified counterpart. Importantly, treatment of immunotolerized Pompe mice with oxime-neo-rhGAA translated to greater improvements in muscle function and strength. Treating older, symptomatic Pompe mice also reduced tissue glycogen levels but provided only modest improvements in motor function. Examination of the muscle pathology suggested that the poor response in the older animals might have been due to a reduced regenerative capacity of the skeletal muscles. These findings lend support to early therapeutic intervention with a targeted enzyme as important considerations in the management of Pompe disease.
机译:改善治疗药物对受疾病影响的组织的递送可以提高其功效和安全性。在这里,我们表明,通过肟化学将含有甘露糖6-磷酸(M6P)残基的合成寡糖化学偶联到重组人酸α-葡萄糖苷酶(rhGAA)上,显着提高了其对不依赖阳离子的甘露糖6-磷酸受体(CI- MPR)和随后被肌肉细胞摄取。与未经修饰的对应物相比,将碳水化合物重建的酶(oxime-neo-rhGAA)施用到Pompe小鼠体内可使溶酶体糖原在肌肉中的清除率提高约五倍。重要的是,用肟-neo-rhGAA治疗免疫耐受的庞贝小鼠可改善肌肉功能和强度。治疗年龄较大,有症状的庞贝小鼠也可降低组织糖原水平,但仅能适度改善运动功能。肌肉病理学检查表明,较年长动物反应较差,可能是由于骨骼肌的再生能力降低所致。这些发现为以庞贝氏病管理中的重要考虑因素提供了针对性靶向酶的早期治疗干预的支持。

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