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(-)-表儿茶素可改善氯化钡诱导损伤的 CD1 小鼠比目鱼肌修复。

(-) - Epicatechin improves Tibialis anterior muscle repair in CD1 mice with BaCl-induced damage.

机构信息

Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Mexico City, Mexico, USA; Subdirección de Enseñanza e Investigación, Centro Médico Nacional "20 de Noviembre", Instituto de Seguridad y Servicios Sociales de los Trabajadores del Estado, Mexico City, Mexico, USA.

Laboratorio de Patología Experimental, Instituto Nacional de Neurología y Neurocirugía "Manuel Velasco Suárez", Mexico City, Mexico, USA.

出版信息

J Nutr Biochem. 2022 Sep;107:109069. doi: 10.1016/j.jnutbio.2022.109069. Epub 2022 May 21.

Abstract

Several studies have shown the beneficial effect that Epicatechin (Epi) has on the skeletal muscle of murine models and patients with muscular dystrophy and in the muscles of patients with diabetes or murine sarcopenia models. This flavanol has been shown to enhance antioxidant pathways and improve muscle architecture. However, the repair process during muscle regeneration has not been analyzed. To address this, we characterize the effect of Epi in the repair process of the Tibialis anterior in a murine model with BaCl-induced damage. CD1 mice of 10 weeks of age were randomly selected and injured with BaCl. One hour later, they were divided into four groups (n=6 for histology groups and n=12 for western blot groups). Epi was administered every 12h, until the time of sacrifice. Histological and morphological analysis showed that Epi significantly reduced the area of damage and hypertrophy at 15 days in the damaged muscle. Furthermore, western blot assays showed that the treatment increases β-catenin (active) and myogenic proteins such as MyoD and Myogenin. These results show that Epi exerts therapeutic effects accelerating skeletal muscle repair after induced damage chemically, thus highlighting the therapeutic potential of this flavanol in different myopathies.

摘要

几项研究表明,表儿茶素(Epi)对肌肉营养不良的鼠模型和患者的骨骼肌以及糖尿病或鼠肌肉减少症模型患者的肌肉具有有益作用。这种黄烷醇已被证明可增强抗氧化途径并改善肌肉结构。然而,肌肉再生过程中的修复过程尚未进行分析。为了解决这个问题,我们在 BaCl 诱导损伤的鼠模型中研究了 Epi 对前胫骨肌修复过程的影响。随机选择 10 周龄的 CD1 小鼠并用 BaCl 损伤。1 小时后,将它们分为四组(n=6 用于组织学组,n=12 用于 western blot 组)。Epi 每 12h 给药一次,直到处死。组织学和形态学分析表明,Epi 在损伤后 15 天可显著减少损伤肌肉的损伤和肥大面积。此外,western blot 检测表明,该治疗可增加β-连环蛋白(活性)和肌生成蛋白,如 MyoD 和 Myogenin。这些结果表明,Epi 发挥治疗作用,加速化学诱导损伤后的骨骼肌修复,从而突出了这种黄烷醇在不同肌肉疾病中的治疗潜力。

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