Taurine supplementation for prevention of stroke-like episodes in MELAS: a multicentre, open-label, 52-week phase III trial.

Yutaka Ohsawa, Hiroki Hagiwara, Shin-Ichiro Nishimatsu, Akihiro Hirakawa, Naomi Kamimura, Hideaki Ohtsubo, Yuta Fukai, Tatsufumi Murakami, Yasutoshi Koga, Yu-Ichi Goto, Shigeo Ohta, Yoshihide Sunada

Journal: Journal of neurology, neurosurgery, and psychiatry 2020;90(5):529-536

PMID: 29666206

Plain Language Summary

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Mitochondrial myopathy, encephalopathy, lactic acidosis and stroke-like episodes (MELAS) is a major clinical entity encompassing mitochondrial diseases resulting from mitochondrial dysfunction. Stroke-like episodes, the most critical symptom of MELAS, are characterised by an abrupt onset of cortical neurological deficits with typical MRI abnormalities not conforming to the distribution of main arteries. The aim of this study was to evaluate the efficacy and safety of high-dose taurine supplementation for prevention of stroke-like episodes. This study is a multicentre, open-label, phase III trial with a total of 291 patients with MELAS. Results show that oral supplementation with high-dose taurine was effective in preventing stroke-like episodes. Furthermore, the 50% responder rate reached 80%, and the annual relapse rate of stroke-like episodes significantly decreased with concomitant increases in blood and cerebrospinal fluid taurine levels. Adverse events associated with taurine were observed among the participants, but no serious adverse events associated with taurine supplementation were reported. Authors conclude that oral high-dose taurine supplementation was effective and safe for the prevention of stroke-like episodes in patients with MELAS by ameliorating the modification defect in the first anticodon nucleotide of mitochondrial tRNA [transfer RNA – a small RNA molecule].

Abstract

OBJECTIVE

The aim of this study was to evaluate the efficacy and safety of high-dose taurine supplementation for prevention of stroke-like episodes of MELAS (mitochondrial myopathy, encephalopathy, lactic acidosis and stroke-like episodes), a rare genetic disorder caused by point mutations in the mitochondrial DNA that lead to a taurine modification defect at the first anticodon nucleotide of mitochondrial tRNA, resulting in failure to decode codons accurately.

METHODS

After the nationwide survey of MELAS, we conducted a multicentre, open-label, phase III trial in which 10 patients with recurrent stroke-like episodes received high-dose taurine (9 g or 12 g per day) for 52 weeks. The primary endpoint was the complete prevention of stroke-like episodes during the evaluation period. The taurine modification rate of mitochondrial tRNA was measured before and after the trial.

RESULTS

The proportion of patients who reached the primary endpoint (100% responder rate) was 60% (95% CI 26.2% to 87.8%). The 50% responder rate, that is, the number of patients achieving a 50% or greater reduction in frequency of stroke-like episodes, was 80% (95% CI 44.4% to 97.5%). Taurine reduced the annual relapse rate of stroke-like episodes from 2.22 to 0.72 (P=0.001). Five patients showed a significant increase in the taurine modification of mitochondrial tRNA from peripheral blood leukocytes (P<0.05). No severe adverse events were associated with taurine.

CONCLUSIONS

The current study demonstrates that oral taurine supplementation can effectively reduce the recurrence of stroke-like episodes and increase taurine modification in mitochondrial tRNA in MELAS.

TRIAL REGISTRATION NUMBER

UMIN000011908.

© Article author(s) (or their employer(s) unless otherwise stated in the text of the article) 2019. All rights reserved. No commercial use is permitted unless otherwise expressly granted.

Address: Department of Neurology, Kawasaki Medical School, Kurashiki, Japan.; Department of Medical Science, Teikyo University of Science, Adachi-ku, Japan.; Department of Natural Science, Kawasaki Medical School, Kurashiki, Japan.; Center for Advanced Medicine and Clinical Research, Statistical Analysis Section, Nagoya University Hospital, Nagoya, Japan.; Graduate School of Medicine, Department of Biostatistics and Bioinformatics, The University of Tokyo, Tokyo, Japan.; Department of Biochemistry and Cell Biology, Graduate School of Medicine, Nippon Medical School, Tokyo, Japan.; Department of Pediatrics and Child Health, Kurume University Graduate School of Medicine, Kurume, Japan.; The Department of Mental Retardation and Birth Defect Research, National Institute of Neuroscience, National Center of Neurology and Psychiatry, Tokyo, Japan.; Department of Biochemistry and Cell Biology, Graduate School of Medicine, Nippon Medical School, Tokyo, Japan.; Department of Neurology, Juntendo University Graduate School of Medicine, Bunkyo-ku, Japan.

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