功能性食物混合物可消除 D-半乳糖导致的大鼠骨骼肌损伤。

Rejuvenation research Pub Date : 2024-12-01 Epub Date: 2024-09-09 DOI:10.1089/rej.2024.0030
M Nagaraju, Pandarinath Savitikadi, Krishna Kalyan Kalahasti, Utkarsh R Addi, G Bhanuprakash Reddy, S Sreenivasa Reddy
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引用次数: 0

摘要

与衰老相关的肌肉萎缩/肌肉疏松症是影响生活质量的最常见肌肉损伤类型。在本研究中,我们考察了由阿姆拉、姜黄、黑胡椒、肉桂和生姜组成的功能性食物混合物对 D-半乳糖诱导的大鼠肌肉变化的影响。Wistar 大鼠被随机分为 3 组:对照组(C)、D-半乳糖组(G)和 D-半乳糖+功能性食物混合物干预组(G+I)。G 组和 G+I 组大鼠连续 90 天注射 D-半乳糖(300 毫克/千克/天)。三个月的实验期结束后,大鼠被处死以收集腓肠肌。与 C 组相比,G 组大鼠的炎症细胞因子(TNFα 和 NF-kB)、雄激素(Atrogin-1 和 MuRF1)水平升高,胰岛素/IGF1 信号传导减少(AKT 磷酸化减少),线粒体动力学改变(裂变蛋白增加,融合蛋白减少),凋亡介质(Bax/Bcl2 和 caspase-3)增加,肌肉细胞横截面积减少(P<0.05)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functional Food Mixture Extricates D-Galactose-Induced Skeletal Muscle Impairment in Rats.

Aging-related muscle atrophy/sarcopenia is the most common type of muscle impairment that affects the quality of life. In the current study, we examined the effect of a functional food mixture of amla, turmeric, black pepper, cinnamon, and ginger on D-galactose-induced muscle alterations in rats. Wistar rats were randomly divided into three groups: Control (C), D-galactose (G), and D-galactose + functional food mixture intervention (G + I). Rats in group-G and -G + I were injected with D-galactose (300 mg/kg/day) for 90 days. After 3 months of the experimental period, the rats were sacrificed to collect gastrocnemius muscle. Group-G rats showed elevated levels of inflammatory cytokines (TNFα and NF-kB), atrogenes (atrogin-1 and MuRF1), decreased insulin/IGF1 signaling (decreased AKT phosphorylation), altered mitochondrial dynamics (increased fission and decreased fusion proteins), increased apoptotic mediators (Bax/Bcl-2, and caspase-3), and decreased muscle cell cross-sectional area when compared with group-C (p < 0.05). Interestingly, supplementation with the functional food mixture prevented galactose-induced alterations in the muscle. The observed anti-inflammatory, insulin-sensitizing, mitochondria-protective, and antiapoptotic effects of the functional food could be the underlying mechanisms in displaying positive effects against galactose-induced muscle atrophy and, hence, may be useful for the prevention of age-related muscle disorders.

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