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Ethanol Exposure Causes Muscle Degeneration in Zebrafish

机译:乙醇暴露导致斑马鱼肌肉变性

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摘要

Alcoholic myopathies are characterized by neuromusculoskeletal symptoms such as compromised movement and weakness. Although these symptoms have been attributed to neurological damage, EtOH may also target skeletal muscle. EtOH exposure during zebrafish primary muscle development or adulthood results in smaller muscle fibers. However, the effects of EtOH exposure on skeletal muscle during the growth period that follows primary muscle development are not well understood. We determined the effects of EtOH exposure on muscle during this phase of development. Strikingly, muscle fibers at this stage are acutely sensitive to EtOH treatment: EtOH induces muscle degeneration. The severity of EtOH-induced muscle damage varies but muscle becomes more refractory to EtOH as muscle develops. NF-kB induction in muscle indicates that EtOH triggers a pro-inflammatory response. EtOH-induced muscle damage is p53-independent. Uptake of Evans blue dye shows that EtOH treatment causes sarcolemmal instability before muscle fiber detachment. Dystrophin-null sapje mutant zebrafish also exhibit sarcolemmal instability. We tested whether Trichostatin A (TSA), which reduces muscle degeneration in sapje mutants, would affect EtOH-treated zebrafish. We found that TSA and EtOH are a lethal combination. EtOH does, however, exacerbate muscle degeneration in sapje mutants. EtOH also disrupts adhesion of muscle fibers to their extracellular matrix at the myotendinous junction: some detached muscle fibers retain beta-Dystroglycan indicating failure of muscle end attachments. Overexpression of Paxillin, which reduces muscle degeneration in zebrafish deficient for beta-Dystroglycan, is not sufficient to rescue degeneration. Taken together, our results suggest that EtOH exposure has pleiotropic deleterious effects on skeletal muscle.
机译:酒精性肌病的特征是神经肌肉骨骼症状,如运动不全和虚弱。尽管这些症状可归因于神经系统损害,但EtOH也可能靶向骨骼肌。斑马鱼初级肌肉发育或成年期的EtOH暴露会导致较小的肌肉纤维。然而,在原发性肌肉发育后的生长期,EtOH暴露对骨骼肌的影响尚不清楚。我们确定了EtOH暴露在此发育阶段对肌肉的影响。令人惊讶的是,此阶段的肌肉纤维对EtOH治疗极为敏感:EtOH引起肌肉变性。 EtOH引起的肌肉损伤的严重程度各不相同,但随着肌肉的发育,肌肉对EtOH的抵抗力会增强。肌肉中的NF-kB诱导表明EtOH触发促炎反应。 EtOH诱导的肌肉损伤不依赖p53。吸收Evans蓝色染料表明,EtOH处理会导致肌纤维脱离之前的肌膜不稳定性。肌营养不良蛋白无效的沙皮鱼突变斑马鱼也表现出肌膜不稳定性。我们测试了减少sapje突变体中肌肉变性的曲古抑菌素A(TSA)是否会影响EtOH处理的斑马鱼。我们发现TSA和EtOH是致命的组合。然而,EtOH确实会加剧sapje突变体中的肌肉变性。 EtOH还破坏了肌纤维在肌腱连接处对它们的细胞外基质的粘附:一些分离的肌纤维保留了β-Dystroglycan,表明肌肉末端附着失败。 Paxillin的过表达减少了缺乏β-Dystroglycan的斑马鱼的肌肉变性,不足以挽救变性。两者合计,我们的结果表明,EtOH暴露对骨骼肌具有多效性有害作用。

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