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依达拉奉在不涉及脑梗死的神经系统疾病中神经保护作用的潜力。

Potential of edaravone for neuroprotection in neurologic diseases that do not involve cerebral infarction.

作者信息

Kikuchi Kiyoshi, Kawahara Ko-Ichi, Uchikado Hisaaki, Miyagi Naohisa, Kuramoto Terukazu, Miyagi Tomoya, Morimoto Yoko, Ito Takashi, Tancharoen Salunya, Miura Naoki, Takenouchi Kazunori, Oyama Yoko, Shrestha Binita, Matsuda Fumiyo, Yoshida Yoshihiro, Arimura Shinihiro, Mera Kentaro, Tada Ko-Ichi, Yoshinaga Narimasa, Maenosono Ryuichi, Ohno Yoshiko, Hashiguchi Teruto, Maruyama Ikuro, Shigemori Minoru

机构信息

Department of Neurosurgery, Yame Public General Hospital, Yame 834-0034;

出版信息

Exp Ther Med. 2011 Sep;2(5):771-775. doi: 10.3892/etm.2011.281. Epub 2011 Jun 7.

Abstract

Edaravone was originally developed as a potent free radical scavenger and has been widely used to treat cerebral infarction in Japan since 2001. Several free radical scavengers have been developed and some of them have progressed to clinical trials for the treatment of cerebral infarction. One such scavenger, edaravone, has been approved by the regulatory authority in Japan for the treatment of patients with cerebral infarction. Of particular interest is the ability of edaravone to diffuse into the central nervous system in various neurologic diseases. Aside from its hydroxyl radical scavenging effect, edaravone has been found to have beneficial effects on inflammation, matrix metalloproteinases, nitric oxide production and apoptotic cell death. Concordantly, edaravone has been found to have neuroprotective effects in a number of animal models of disease, including stroke, spinal cord injury, traumatic brain injury, neurodegenerative diseases and brain tumors. The proven safety of edaravone following 9 years of use as a free radical scavenger suggests that it may have potential for development into an effective treatment of multiple neurologic conditions in humans.

摘要

依达拉奉最初是作为一种强效自由基清除剂开发的,自2001年以来在日本已被广泛用于治疗脑梗死。已经开发了几种自由基清除剂,其中一些已进入治疗脑梗死的临床试验阶段。其中一种清除剂依达拉奉已获得日本监管机构批准用于治疗脑梗死患者。依达拉奉在各种神经系统疾病中扩散到中枢神经系统的能力尤其令人关注。除了其清除羟基自由基的作用外,还发现依达拉奉对炎症、基质金属蛋白酶、一氧化氮生成和凋亡性细胞死亡具有有益作用。与此一致的是,在包括中风、脊髓损伤、创伤性脑损伤、神经退行性疾病和脑肿瘤在内的多种疾病动物模型中,已发现依达拉奉具有神经保护作用。依达拉奉作为自由基清除剂使用9年后已证实的安全性表明,它可能有潜力开发成为治疗人类多种神经系统疾病的有效药物。

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