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用于脑疾病诊断和治疗的核酸药物载体。

Nucleic acid drug vectors for diagnosis and treatment of brain diseases.

机构信息

State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100190, P.R. China.

University of Chinese Academy of Sciences, Beijing, 100049, P.R. China.

出版信息

Signal Transduct Target Ther. 2023 Jan 17;8(1):39. doi: 10.1038/s41392-022-01298-z.

Abstract

Nucleic acid drugs have the advantages of rich target selection, simple in design, good and enduring effect. They have been demonstrated to have irreplaceable superiority in brain disease treatment, while vectors are a decisive factor in therapeutic efficacy. Strict physiological barriers, such as degradation and clearance in circulation, blood-brain barrier, cellular uptake, endosome/lysosome barriers, release, obstruct the delivery of nucleic acid drugs to the brain by the vectors. Nucleic acid drugs against a single target are inefficient in treating brain diseases of complex pathogenesis. Differences between individual patients lead to severe uncertainties in brain disease treatment with nucleic acid drugs. In this Review, we briefly summarize the classification of nucleic acid drugs. Next, we discuss physiological barriers during drug delivery and universal coping strategies and introduce the application methods of these universal strategies to nucleic acid drug vectors. Subsequently, we explore nucleic acid drug-based multidrug regimens for the combination treatment of brain diseases and the construction of the corresponding vectors. In the following, we address the feasibility of patient stratification and personalized therapy through diagnostic information from medical imaging and the manner of introducing contrast agents into vectors. Finally, we take a perspective on the future feasibility and remaining challenges of vector-based integrated diagnosis and gene therapy for brain diseases.

摘要

核酸药物具有靶点选择丰富、设计简单、效果好、持久等优点。在脑部疾病治疗中,已证明其具有不可替代的优势,而载体是影响治疗效果的决定性因素。严格的生理屏障,如在循环中降解和清除、血脑屏障、细胞摄取、内体/溶酶体屏障、释放等,阻碍了载体将核酸药物递送到大脑。针对单一靶点的核酸药物在治疗复杂发病机制的脑部疾病方面效率低下。个体患者之间的差异导致核酸药物治疗脑部疾病存在严重的不确定性。在这篇综述中,我们简要总结了核酸药物的分类。接下来,我们讨论了药物传递过程中的生理屏障和通用应对策略,并介绍了这些通用策略在核酸药物载体中的应用方法。随后,我们探讨了基于核酸药物的多药方案用于联合治疗脑部疾病和构建相应载体的方法。接下来,我们通过来自医学影像学的诊断信息和引入载体的对比剂的方式,探讨了通过患者分层和个性化治疗的可行性。最后,我们从基于载体的综合诊断和基因治疗的未来可行性和遗留挑战的角度来看待这个问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3092/9845388/02f9f6af5897/41392_2022_1298_Fig1_HTML.jpg

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