Laboratory of Neurosciences and National Institute for Translational Medicine (INCT-TM), Postgraduate Program in Health Sciences, University of Southern Santa Catarina, Criciúma, SC, Brazil.
Mol Neurobiol. 2011 Jun;43(3):207-14. doi: 10.1007/s12035-011-8178-0. Epub 2011 Mar 22.
An increasing number of studies have evaluated the potential therapeutic relevance of histone deacetylases (HDAC) inhibitors in mood disorder including bipolar disorder (BD). It has been suggested that the anterior limbic, which controls impulsivity and psychosis, is dysfunctional in BD. The present studies aims to evaluate the effects of microinjection of HDAC inhibitors in the ventricle, amygdala, striatum, prefrontal, and hippocampus on m-amphetamine-induced manic-like behavior in rats. Rats were given a single intracerebral (in the ventricle, amygdala, striatum, prefrontal, or hippocampus) injection of artificial cerebrospinal fluid, sodium butyrate (SB), or valproate (VPA) followed by an intraperitoneal injection of saline or m-AMPH 2 h before the open-field task. The activity of HDAC was evaluated in amygdala, striatum, prefrontal, and hippocampus of animals. The microinjection of SB and VPA in the ventricle, amygdala, striatum, and prefrontal, but not in hippocampus blocked the hyperactivity induced by m-AMPH. In addition, SB and VPA inhibited the HDAC activity; however, this effect varied depending on the experimental procedure and the brain structure evaluated. Our results suggest that the antimanic effects of SB and VPA, HDAC inhibitors, are related to the amygdala, striatum, and prefrontal, but not the hippocampus. More studies are needed to clarify the therapeutic effects of the HDAC inhibitor in BD and thereby develop new drugs.
越来越多的研究评估了组蛋白去乙酰化酶(HDAC)抑制剂在心境障碍(包括双相情感障碍(BD))中的潜在治疗相关性。有人认为,控制冲动和精神病的前边缘系统在 BD 中功能失调。本研究旨在评估脑室、杏仁核、纹状体、前额叶和海马中 HDAC 抑制剂微注射对大鼠 m-安非他命诱导的躁狂样行为的影响。大鼠在脑室、杏仁核、纹状体、前额叶或海马中接受单次脑室内(脑室、杏仁核、纹状体、前额叶或海马)注射人工脑脊液、丁酸钠(SB)或丙戊酸钠(VPA),然后在旷场任务前 2 小时腹腔内注射生理盐水或 m-AMPH。评估了动物杏仁核、纹状体、前额叶和海马中的 HDAC 活性。SB 和 VPA 微注射脑室、杏仁核、纹状体和前额叶,但不注射海马,可阻断 m-AMPH 引起的过度活跃。此外,SB 和 VPA 抑制了 HDAC 活性;然而,这种效应取决于实验程序和评估的大脑结构而有所不同。我们的结果表明,SB 和 VPA 作为 HDAC 抑制剂的抗躁狂作用与杏仁核、纹状体和前额叶有关,而与海马无关。需要更多的研究来阐明 HDAC 抑制剂在 BD 中的治疗效果,从而开发新的药物。