Centre de Biophysique Moleculaire, CNRS UPR4301, Universite d'Orleans France, 45071 Orleans Cedex, France.
Curr Neuropharmacol. 2017;15(2):276-290. doi: 10.2174/1570159x14666160630210422.
Given the importance of microRNAs (miRNAs) in modulating brain functions and their implications in neurocognitive disorders there are currently significant efforts devoted in the field of miRNA-based therapeutics to correct and/or to treat these brain diseases. The observation that miRNA 29a/b-1 cluster, miRNA 10b and miRNA 7, for instance, are frequently deregulated in the brains of patients with neurocognitive diseases and in animal models of Alzheimer, Huntington's and Parkinson's diseases, suggest that correction of miRNA expression using agonist or antagonist miRNA oligonucleotides might be a promising approach to correct or even to cure such diseases. The encouraging results from recent clinical trials allow envisioning that pharmacological approaches based on miRNAs might, in a near future, reach the requirements for successful therapeutic outcomes and will improve the healthcare of patients with brain injuries or disorders. This review will focus on the current strategies used to modulate pharmacological function of miRNA using chemically modified oligonucleotides. We will then review the recent literature on strategies to improve nucleic acid delivery across the blood-brain barrier which remains a severe obstacle to the widespread application of miRNA therapeutics to treat brain diseases. Finally, we provide a state-of-art of current preclinical research performed in animal models for the treatment of neurocognitive disorders using miRNA as therapeutic agents and discuss future developments of miRNA therapeutics.
鉴于 microRNAs(miRNAs)在调节大脑功能方面的重要性及其在神经认知障碍中的影响,目前 miRNA 治疗领域正在做出重大努力,以纠正和/或治疗这些脑部疾病。例如,miRNA 29a/b-1 簇、miRNA 10b 和 miRNA 7 在神经认知疾病患者的大脑中和阿尔茨海默病、亨廷顿病和帕金森病的动物模型中经常失调,这表明使用激动剂或拮抗剂 miRNA 寡核苷酸纠正 miRNA 表达可能是一种有前途的方法来纠正甚至治愈这些疾病。最近临床试验的令人鼓舞的结果使得基于 miRNA 的药理学方法有可能在不久的将来达到成功治疗结果的要求,并改善脑损伤或疾病患者的医疗保健。本综述将重点介绍目前使用化学修饰的寡核苷酸来调节 miRNA 药理学功能的策略。然后,我们将回顾最近关于改善核酸穿过血脑屏障的传递的文献,这仍然是 miRNA 治疗广泛应用于治疗脑部疾病的严重障碍。最后,我们提供了使用 miRNA 作为治疗剂治疗神经认知障碍的动物模型中当前临床前研究的最新状态,并讨论 miRNA 治疗的未来发展。