Institute of Physiologically Active Compounds of Russian Academy of Science, Chernogolovka. Russian Federation.
Departamento de Nutrición y Bioquímica, Facultad de Ciencias, Pontificia Universidad Javeriana, Bogotá D.C.. Colombia.
CNS Neurol Disord Drug Targets. 2017;16(6):677-685. doi: 10.2174/1871527316666170424114444.
A considerable amount of data suggests the age-related impairments of mitochondrial functions in the development of sporadic forms of neurodegenerative pathologies. Mitochondria and the phenomenon of mitochondrial permeability transition (MPT), which marks the point of no return in cell death cascades, have special value in this regard. It is important that the vulnerability to MPT-inducing factors is increased with aging. Simultaneously, a decrease in the calcium retention capacity of mitochondria is developed, which leads to the disturbance of the functional activity of neurons.
The systematic investigations and web content related to the importance of MPT as the target for the search of neuroprotective and cognitive enhancing drugs, especially with multitargeted action, are reviewed.
Here, we have highlighted some experimental data that determines the importance of mitochondria for the search of neuroprotective drugs, and drugs with multitargeted action. We have also discussed a number of new compounds with similar properties. Being MPT inhibitors/modulators, virtually all the compounds described in this review have the ability to exhibit a neuroprotective effect, interact with some other targets, providing coupled beneficial therapeutic effects such as cognitive stimulation, anti-seizure, and antidepressant actions.
Inhibitors of MPT, which increases calcium retention capacity of mitochondria, are considered as promising neuroprotective drugs able not only to halt the neurodegenerative cascade, but also to increase the functional activity of neurons.
大量数据表明,线粒体功能的年龄相关性损伤与散发性神经退行性病理的发生发展有关。线粒体和线粒体通透性转换(MPT)现象在这方面具有特殊意义,后者标志着细胞死亡级联反应中不可逆转的点。重要的是,随着年龄的增长,对 MPT 诱导因素的易感性会增加。同时,线粒体的钙保留能力下降,导致神经元功能活动紊乱。
综述了关于 MPT 作为寻找神经保护和认知增强药物,特别是具有多靶点作用的药物的目标的重要性的系统研究和网络内容。
在这里,我们强调了一些实验数据,这些数据确定了线粒体在寻找神经保护药物和具有多靶点作用的药物中的重要性。我们还讨论了一些具有类似特性的新化合物。作为 MPT 抑制剂/调节剂,本文所述的几乎所有化合物都具有表现出神经保护作用的能力,与其他一些靶点相互作用,提供了耦合的有益治疗效果,如认知刺激、抗癫痫和抗抑郁作用。
增加线粒体钙保留能力的 MPT 抑制剂被认为是有前途的神经保护药物,不仅能够阻止神经退行性级联反应,还能够提高神经元的功能活性。