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米诺环素在枫糖尿症模型中对氧化应激具有保护作用。

Minocycline Protects Against Oxidative Stress in a Model of Maple Syrup Urine Disease.

作者信息

da Silva Lemos Isabela, Seldenreich Rejane Figueiredo, Alano Carolina Giassi, Schmitt Laura Quinsani, Matiola Rafaela Tezza, De Pieri Ellen, Petronilho Fabricia, Machado-De-Ávila Ricardo Andrez, Streck Emilio Luiz

机构信息

Laboratório de Doenças Neurometabólicas, Programa de Pós-Graduação Em Ciências da Saúde, Universidade Do Extremo Sul Catarinense, Criciúma, SC, 88806-000, Brazil.

Laboratório de Fisiopatologia Experimental, Programa de Pós-Graduação Em Ciências da Saúde, Universidade Do Extremo Sul Catarinense, Criciúma, SC, 88806-000, Brazil.

出版信息

Neurochem Res. 2025 Sep 3;50(5):280. doi: 10.1007/s11064-025-04549-x.

Abstract

Branched-chain amino acids (BCAA) leucine, isoleucine, and valine are metabolized by complex branched-chain ketoacids dehydrogenase (BCKDH). In Maple Syrup Urine Disease (MSUD), the BCKDH complex has its activity blocked by a genetic mutation, compromising the BCAA metabolism and leading to the accumulation of these BCAA, related to neurological damage in this disease. Thus, minocycline is a broad-spectrum antibiotic, bacteriostatic, and studies have shown benefits in neurodegenerative disease progression, like reduction of oxidative stress, inflammation, and downregulation of molecular pathways, such as apoptosis. Therefore, we make the hypothesis that the minocycline can ameliorate oxidative stress in the MSUD model. For this, we used 7-day-old male rats, who were treated with BCAA (leucine 393.42 mg/kg, isoleucine 121.66 mg/kg and valine 126.4 mg/kg) or saline solution (0,9%) subcutaneously, water, or minocycline (50 mg/kg) via gavage. Our results show that the MSUD group presents an increase in DCFH oxidation and TBARS levels, as well as a decrease in sulfhydryl content, related to oxidative species production, lipid and protein damage, and minocycline treatment rescues this damage found. In antioxidant activity, we found an increase in SOD activity also, a decrease in CAT in all groups studied compared to the control group. So, our results present positive effects of minocycline in MSUD, showing a potential use in this disease; moreover, more studies are necessary to understand the role of this molecule in this disease.

摘要

支链氨基酸(BCAA)中的亮氨酸、异亮氨酸和缬氨酸由复杂的支链酮酸脱氢酶(BCKDH)代谢。在枫糖尿症(MSUD)中,BCKDH复合物的活性因基因突变而受阻,损害了支链氨基酸的代谢,导致这些支链氨基酸积累,这与该疾病中的神经损伤有关。因此,米诺环素是一种广谱抗生素,具有抑菌作用,研究表明其在神经退行性疾病进展中具有益处,如减少氧化应激、炎症以及下调分子途径(如细胞凋亡)。因此,我们提出假设,米诺环素可以改善MSUD模型中的氧化应激。为此,我们使用了7日龄的雄性大鼠,它们被皮下注射支链氨基酸(亮氨酸393.42mg/kg、异亮氨酸121.66mg/kg和缬氨酸126.4mg/kg)或盐溶液(0.9%),通过灌胃给予水或米诺环素(50mg/kg)。我们的结果表明,MSUD组的DCFH氧化和TBARS水平升高,以及巯基含量降低,这与氧化物质产生、脂质和蛋白质损伤有关,而米诺环素治疗可挽救所发现的这种损伤。在抗氧化活性方面,我们还发现超氧化物歧化酶(SOD)活性增加,与对照组相比,所有研究组的过氧化氢酶(CAT)活性降低。所以,我们的结果显示了米诺环素对MSUD的积极作用,表明其在该疾病中具有潜在用途;此外,还需要更多研究来了解该分子在这种疾病中的作用。

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