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代谢性疾病的替代疗法

Replacement Therapies in Metabolic Disease.

作者信息

Keller Alexander S, Keller Iv T C Stevenson, DeLalio Leon J, Shahab Guleer, Yang Yang, Murphy Sara A, Shu Xiaohong, Isakson Brant E

机构信息

Robert M. Berne Cardiovascular Research Center, University of Virginia, Charlottesville, Virginia, United States.

Department of Pharmacology, University of Virginia, Charlottesville, Virginia, United States.

出版信息

Curr Pharm Biotechnol. 2018;19(5):382-399. doi: 10.2174/1389201019666180619151413.

Abstract

BACKGROUND

Replacement therapies have revolutionized treatment paradigms in metabolic diseases by restoring defective enzymes and supplementing missing downstream metabolites. Through most of the 20th century, no targeted therapies existed for these conditions, the only treatment options available focusing on symptoms rather than the underlying disorders. Improved understanding of the molecular pathways underlying metabolic disease has allowed not only supplementation of missing metabolites and reduction of upstream substrates, but replacement of defective or missing enzymes.

OBJECTIVE

Modern genetic technologies have facilitated steady progress in recombinant enzyme innovation, providing treatments that replicate not only endogenous enzymes, but also their posttranslational modifications to optimize their delivery and function. The advent of the gene therapy revolution brings a possibility of new therapeutic opportunities in which the enzymes at the core of metabolic diseases may not only be added back, but genetically replaced.

CONCLUSION

With the next generation of treatments approaching, this review examines the recent decades of replacement therapy innovation in metabolic disease and discusses the challenges and opportunities for the next generation of treatments.

摘要

背景

替代疗法通过恢复缺陷酶和补充缺失的下游代谢物,彻底改变了代谢疾病的治疗模式。在20世纪的大部分时间里,针对这些病症不存在靶向治疗方法,唯一可用的治疗选择侧重于症状而非潜在疾病。对代谢疾病潜在分子途径的深入了解不仅使得能够补充缺失的代谢物并减少上游底物,还能替代缺陷或缺失的酶。

目的

现代基因技术推动了重组酶创新的稳步进展,提供的治疗方法不仅能复制内源性酶,还能复制其翻译后修饰,以优化其递送和功能。基因治疗革命的到来带来了新的治疗机会,在这些机会中,代谢疾病核心的酶不仅可以补充回来,还可以进行基因替代。

结论

随着下一代治疗方法的临近,本综述审视了近几十年代谢疾病替代疗法的创新,并讨论了下一代治疗方法面临的挑战和机遇。

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