Rehni Ashish K, Nautiyal Neha, Perez-Pinzon Miguel A, Dave Kunjan R
Department of Pharmacology, Chitkara College of Pharmacy, Chitkara University, Patiala, 140401, Punjab, India.
Metab Brain Dis. 2015 Apr;30(2):437-47. doi: 10.1007/s11011-014-9538-z. Epub 2014 Apr 16.
Enhancement of ischemic brain damage is one of the most serious complications of diabetes. Studies from various in vivo and in vitro models of cerebral ischemia have led to an understanding of the role of mitochondria and complex interrelated mitochondrial biochemical pathways leading to the aggravation of ischemic neuronal damage. Advancements in the elucidation of the mechanisms of ischemic brain damage in diabetic subjects have revealed a number of key mitochondrial targets that have been hypothesized to participate in enhancement of brain damage. The present review initially discusses the neurobiology of ischemic neuronal injury, with special emphasis on the central role of mitochondria in mediating its pathogenesis and therapeutic targets. Later it further details the potential role of various biochemical mediators and second messengers causing widespread ischemic brain damage among diabetics via mitochondrial pathways. The present review discusses preclinical data which validates the significance of mitochondrial mechanisms in mediating the aggravation of ischemic cerebral injury in diabetes. Exploitation of these targets may provide effective therapeutic agents for the management of diabetes-related aggravation of ischemic neuronal damage.
缺血性脑损伤的加重是糖尿病最严重的并发症之一。来自各种脑缺血体内和体外模型的研究使人们了解了线粒体的作用以及导致缺血性神经元损伤加重的复杂且相互关联的线粒体生化途径。在阐明糖尿病患者缺血性脑损伤机制方面取得的进展揭示了一些关键的线粒体靶点,据推测这些靶点参与了脑损伤的加重过程。本综述首先讨论缺血性神经元损伤的神经生物学,特别强调线粒体在介导其发病机制和治疗靶点中的核心作用。随后进一步详细阐述各种生化介质和第二信使通过线粒体途径在糖尿病患者中导致广泛缺血性脑损伤的潜在作用。本综述讨论了临床前数据,这些数据证实了线粒体机制在介导糖尿病缺血性脑损伤加重中的重要性。对这些靶点的开发可能为治疗糖尿病相关的缺血性神经元损伤加重提供有效的治疗药物。