Benefits of Prenatal Taurine Supplementation in Preventing the Onset of Acute Damage in the Mdx Mouse.

Robert G Barker, Deanna Horvath, Chris van der Poel, Robyn M Murphy
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Abstract

Introduction: Duchenne Muscular Dystrophy (DMD) is a debilitating muscle wasting disorder with no cure. Safer supplements and therapies are needed to improve the severity of symptoms, as severe side effects are associated with the only effective treatment, corticosteroids. The amino acid taurine has shown promise in ameliorating dystrophic symptoms in mdx mice, an animal model of DMD, however little work is in 21-28 (d)ay animals, the period of natural peak damage.

Methods: This study compares the effect of prenatal taurine supplementation on tibialis anterior (TA) in situ contractile function, histopathological characteristics and the abundance of Ca2+-handling as well as pathologically relevant proteins in non-exercised mdx mice at 28 and 70 d.

Results: Supplementation elevated TA taurine content by 25% (p<0.05), ameliorated in situ specific force by 60% (p<0.05) and improved histological characteristics in 28 d mdx mice; however no benefit was seen in 70 d mice, where background pathology was initially stable. Age specific effects in SERCA1, calsequestrin 1 (CSQ1), CSQ2, utrophin and myogenin protein abundances were seen between both 28 and 70 d mdx and mdx taurine-supplemented mice.

Discussion: Considering these findings and that taurine is a relatively cost effective, readily accessible and side effect free dietary supplement, we propose further investigation into taurine supplementation during pregnancy in a protective capacity, reminiscent of folate in the prevention of spinal bifida.

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产前补充牛磺酸对预防 Mdx 小鼠急性损伤的益处
简介杜兴氏肌肉萎缩症(DMD)是一种无法治愈的肌肉萎缩性疾病。由于唯一有效的治疗方法皮质类固醇会产生严重的副作用,因此需要更安全的补充剂和疗法来改善症状的严重程度。氨基酸牛磺酸有望改善 DMD 动物模型 mdx 小鼠的肌营养不良症状,但针对 21-28 (d)ay 动物(自然损伤高峰期)的研究很少:本研究比较了产前补充牛磺酸对28 d和70 d未运动的mdx小鼠胫骨前肌(TA)原位收缩功能、组织病理学特征、Ca2+处理蛋白以及病理相关蛋白丰度的影响:结果:补充牛磺酸可使TA牛磺酸含量提高25%(p讨论):考虑到这些发现,以及牛磺酸是一种相对经济、容易获得且无副作用的膳食补充剂,我们建议进一步研究孕期补充牛磺酸的保护作用,这与叶酸预防脊柱裂的作用类似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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