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肥胖人群的红细胞氧化状态:与组织损耗、血糖水平及体重减轻的关系

Erythrocyte Oxidative Status in People with Obesity: Relation to Tissue Losses, Glucose Levels, and Weight Reduction.

作者信息

Szlachta Beata, Birková Anna, Čižmárová Beáta, Głogowska-Gruszka Anna, Zalejska-Fiolka Paulina, Dydoń Maria, Zalejska-Fiolka Jolanta

机构信息

Department of Biochemistry, Faculty of Medical Science, Zabrze Medical University of Silesia, 40-055 Katowice, Poland.

Department of Medical and Clinical Biochemistry, Pavol Jozef Šafárik University, 040 11 Košice, Slovakia.

出版信息

Antioxidants (Basel). 2024 Aug 7;13(8):960. doi: 10.3390/antiox13080960.

Abstract

BACKGROUND

This study aimed to investigate the impact of reductions in various body mass components on the erythrocyte oxidative status and glycemic state of people with obesity (PWO).

METHODS

A total of 53 PWO followed a six-month individualized low-calorie diet with exercise, during which anthropometric, biochemical, and oxidative parameters were measured. The participants were divided into groups based on weight (W), visceral fat area (VFA), total body water (TBW), and skeletal muscle mass (SMM) losses, as well as normoglycemia (NG) and hyperglycemia (HG).

RESULTS

Weight reduction normalized glycemia and influenced erythrocyte enzyme activity. Regardless of the tissue type lost (VFA, TBW, or SMM), glutathione peroxidase activity decreased in all groups, accompanied by an increase in glutathione reductase activity. Lipofuscin (LPS) and malondialdehyde (MDA) concentrations decreased regardless of the type of tissue lost. The α-/γ-tocopherol ratio increased in those losing >10% body weight, >15% VFA, and >5% TBW. In the NG group, compared to the HG group, there was a decrease in glutathione peroxidase and an increase in glutathione reductase, with these changes being stronger in the HG group. The LPS and MDA concentrations decreased in both groups. Significant correlations were observed between glucose reduction and changes in catalase, retinol, and α-tocopherol, as well as between VFA reduction and changes in vitamin E, L-LPS, and the activities of L-GR and L-GST.

CONCLUSIONS

This analysis highlights the complex interactions between glucose metabolism, oxidative state, and erythrocyte membrane integrity, crucial for understanding diabetes and its management. This study shows the significant metabolic adaptability of erythrocytes in response to systemic changes induced by obesity and hyperglycemia, suggesting potential therapeutic targets to improve metabolic health in obese individuals.

摘要

背景

本研究旨在探讨各种身体质量成分减少对肥胖人群红细胞氧化状态和血糖状态的影响。

方法

共有53名肥胖人群遵循为期六个月的个体化低热量饮食并进行运动,在此期间测量人体测量学、生化和氧化参数。参与者根据体重(W)、内脏脂肪面积(VFA)、总体水(TBW)和骨骼肌质量(SMM)的减少情况,以及正常血糖(NG)和高血糖(HG)进行分组。

结果

体重减轻使血糖正常化并影响红细胞酶活性。无论丢失的组织类型是VFA、TBW还是SMM,所有组的谷胱甘肽过氧化物酶活性均降低,同时谷胱甘肽还原酶活性增加。无论丢失的组织类型如何,脂褐素(LPS)和丙二醛(MDA)浓度均降低。体重减轻>10%、VFA减少>15%和TBW减少>5%的人群中,α-/γ-生育酚比值增加。在NG组中,与HG组相比,谷胱甘肽过氧化物酶减少,谷胱甘肽还原酶增加,且这些变化在HG组中更明显。两组的LPS和MDA浓度均降低。观察到葡萄糖降低与过氧化氢酶、视黄醇和α-生育酚变化之间存在显著相关性,以及VFA降低与维生素E、L-LPS变化以及L-GR和L-GST活性之间存在显著相关性。

结论

该分析突出了葡萄糖代谢、氧化状态和红细胞膜完整性之间的复杂相互作用,这对于理解糖尿病及其管理至关重要。本研究表明红细胞在应对肥胖和高血糖引起的全身变化时具有显著的代谢适应性,提示了改善肥胖个体代谢健康的潜在治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7866/11351941/2e89e22bfe00/antioxidants-13-00960-g001.jpg

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