4.5 Article

NOVEL VITAMIN K ANALOGS SUPPRESS SEIZURES IN ZEBRAFISH AND MOUSE MODELS OF EPILEPSY

期刊

NEUROSCIENCE
卷 259, 期 -, 页码 142-154

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.neuroscience.2013.11.040

关键词

Vitamin K; epilepsy; zebrafish; mitochondria; respiration; ATP metabolism

资金

  1. NIH [R00ES01555, 5P20RR024485-02, 8 P20 GM103542-02]
  2. MUSC
  3. South Carolina Clinical and Translational Research Institute/MUSC CTSA, NIH/NCRR Grant [UL1RR029882]
  4. NIH/NHLBI predoctoral training fellowship [T32-HL007260-36]

向作者/读者索取更多资源

Epilepsy is a debilitating disease affecting 1-2% of the world's population. Despite this high prevalence, 30% of patients suffering from epilepsy are not successfully managed by current medication suggesting a critical need for new anti-epileptic drugs (AEDs). In an effort to discover new therapeutics for the management of epilepsy, we began our study by screening drugs that, like some currently used AEDs, inhibit histone deacetylases (HDACs) using a well-established larval zebrafish model. In this model, 7-day post fertilization (dpf) larvae are treated with the widely used seizure-inducing compound pentylenetetrazol (PTZ) which stimulates a rapid increase in swimming behavior previously determined to be a measurable manifestation of seizures. In our first screen, we tested a number of different HDAC inhibitors and found that one, 2-benzamido-1 4-naphthoquinone (NQN1), significantly decreased swim activity to levels equal to that of valproic acid, 2-n-propylpentanoic acid (VPA). We continued to screen structurally related compounds including Vitamin K-3 (VK3) and a number of novel Vitamin K (VK) analogs. We found that VK3 was a robust inhibitor of the PTZ-induced swim activity, as were several of our novel compounds. Three of these compounds were subsequently tested on mouse seizure models at the National Institute of Neurological Disorders and Stroke (NINDS) Anticonvulsant Screening Program. Compound 2h reduced seizures particularly well in the minimal clonic seizure (6 Hz) and corneal-kindled mouse models of epilepsy, with no observable toxicity. As VK3 affects mitochondrial function, we tested the effects of our compounds on mitochondrial respiration and ATP production in a mouse hippocampal cell line. We demonstrate that these compounds affect ATP metabolism and increase total cellular ATP. Our data indicate the potential utility of these and other VK analogs for the prevention of seizures and suggest the potential mechanism for this protection may lie in the ability of these compounds to affect energy production. (C) 2013 IBRO. Published by Elsevier Ltd. All rights reserved.

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