C-fos mRNA Expression in Rat Hippocampal Neurons by Antidepressant Drugs

배양한 흰쥐 해마신경세포에서 항우울제에 의한 c-fos mRNA의 발현

  • Park, Eung-Chul (Park's Neuropsychiatric Clinic) ;
  • Cho, Yun-Gyoo (Department of Neuropsychiatry and Mental Health Research Institute, Han-Yang University) ;
  • Yang, Byung-Hwan (Department of Neuropsychiatry and Mental Health Research Institute, Han-Yang University) ;
  • Kim, Kwang-Iel (Department of Neuropsychiatry and Mental Health Research Institute, Han-Yang University) ;
  • Yang, Bo-Gee (Department of Biochemistry, College of Science, Han-Yang University) ;
  • Chai, Young-Gyu (Department of Biochemistry, College of Science, Han-Yang University)
  • 박응철 (박응철 신경정신과) ;
  • 조연규 (한양대학교 의과대학 신경정신과학교실 및 정신건강연구소) ;
  • 양병환 (한양대학교 의과대학 신경정신과학교실 및 정신건강연구소) ;
  • 김광일 (한양대학교 의과대학 신경정신과학교실 및 정신건강연구소) ;
  • 양보기 (한양대학교 이과대학 생화학과) ;
  • 채영규 (한양대학교 이과대학 생화학과)
  • Published : 2001.06.30

Abstract

This study was designed to examine the effects of two antidepressant drugs on the expression of c-fos mRNA in cultured embryonic rat hippocampal neurons. The drugs used were imipramine and amitriptyline. On the fourth day of culture, hippocampal neurons were treated with variable concentrations of each drug. Competitive RT-PCR(Reverse Transcriptase-PCR) analysis was used to quantify the c-fos mRNA expression induced by each drug. Experimental results showed that acute and direct treatment with imipramine and amitriptyline with relatively low concentrations(imipramine ${\leq}10{\mu}M$, amitriptylne ${\leq}10{\mu}M$) had no inductive effect on the expression of c-fos mRNA in the rat hippocampal neurons. However, after treatment with relatively high concentrations(imipramine ${\geq}100{\mu}M$, amitriptyline ${\geq}100{\mu}M$) c-fos mRNA was not detected. These findings suggest the followings. Firstly, the action mechanisms of these drugs on the hippocampal neurons might not be mediated by c-fos but by other immediate-early genes(IEGs). Secondly, their actions may be mediated indirectly via other areas of the brain. Thirdly, the expression of c-fos might be inhibited by high concentrations of these drugs, or the high concentrations could induce cell death. Finally, though cell death remains to be confirmed, the inhibition of c-fos induction or cell death could play a role in the cognitive impairments known to be adverse effects of some antidepressants. This study is believed to be a first step toward understanding the mechanisms of learning and memory. Further studies are needed to investigate the expression of various IEGs and changes in the hippocampal neurons of rat resulting from chronic treatment with antidepressant drugs.

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