Dulaglutide reduces oxidative DNA damage and hypermethylation in the somatic cells of mice fed a high-energy diet by restoring redox balance, inflammatory responses, and DNA repair gene expressions

IF 3.2 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Biochemical and Molecular Toxicology Pub Date : 2024-07-04 DOI:10.1002/jbt.23764
Sabry M. Attia, Ali A. Alshamrani, Sheikh F. Ahmad, Norah A. Albekairi, Ahmed Nadeem, Mohamed S. M. Attia, Mushtaq A. Ansari, Faris Almutairi, Saleh A. Bakheet
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Abstract

Obesity is an established risk factor for numerous malignancies, although it remains uncertain whether the disease itself or weight-loss drugs are responsible for a greater predisposition to cancer. The objective of the current study was to determine the impact of dulaglutide on genetic and epigenetic DNA damage caused by obesity, which is a crucial factor in the development of cancer. Mice were administered a low-fat or high-fat diet for 12 weeks, followed by a 5-week treatment with dulaglutide. Following that, modifications of the DNA bases were examined using the comet assay. To clarify the underlying molecular mechanisms, oxidized and methylated DNA bases, changes in the redox status, levels of inflammatory cytokines, and the expression levels of some DNA repair genes were evaluated. Animals fed a high-fat diet exhibited increased body weights, elevated DNA damage, oxidation of DNA bases, and DNA hypermethylation. In addition, obese mice showed altered inflammatory responses, redox imbalances, and repair gene expressions. The findings demonstrated that dulaglutide does not exhibit genotoxicity in the investigated conditions. Following dulaglutide administration, animals fed a high-fat diet demonstrated low DNA damage, less oxidation and methylation of DNA bases, restored redox balance, and improved inflammatory responses. In addition, dulaglutide treatment restored the upregulated DNMT1, Ogg1, and p53 gene expression. Overall, dulaglutide effectively maintains DNA integrity in obese animals. It reduces oxidative DNA damage and hypermethylation by restoring redox balance, modulating inflammatory responses, and recovering altered gene expressions. These findings demonstrate dulaglutide's expediency in treating obesity and its associated complications.

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杜拉鲁肽通过恢复氧化还原平衡、炎症反应和DNA修复基因表达,减少了高能量饮食小鼠体细胞中的DNA氧化损伤和高甲基化。
肥胖是多种恶性肿瘤的既定风险因素,但目前仍不确定是疾病本身还是减肥药物导致了更大的癌症易感性。本研究的目的是确定度拉鲁肽对肥胖导致的遗传和表观遗传DNA损伤的影响,而肥胖是癌症发生的关键因素。小鼠接受了为期12周的低脂或高脂饮食,随后接受了为期5周的度拉鲁肽治疗。随后,使用彗星试验检测了DNA碱基的改变。为了阐明潜在的分子机制,还对氧化和甲基化的DNA碱基、氧化还原状态的变化、炎症细胞因子的水平以及一些DNA修复基因的表达水平进行了评估。以高脂肪饮食喂养的动物体重增加,DNA损伤、DNA碱基氧化和DNA甲基化程度升高。此外,肥胖小鼠还表现出炎症反应、氧化还原失衡和修复基因表达的改变。研究结果表明,在调查条件下,度拉鲁肽不会表现出遗传毒性。在服用度拉鲁肽后,以高脂肪饮食喂养的动物表现出较低的DNA损伤,较少的DNA碱基氧化和甲基化,恢复了氧化还原平衡,并改善了炎症反应。此外,度拉鲁肽治疗还能恢复上调的 DNMT1、Ogg1 和 p53 基因表达。总之,度拉鲁肽能有效保持肥胖动物 DNA 的完整性。它通过恢复氧化还原平衡、调节炎症反应和恢复改变的基因表达,减少了 DNA 氧化损伤和高甲基化。这些发现证明了度拉鲁肽在治疗肥胖症及其相关并发症方面的便捷性。
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来源期刊
CiteScore
5.80
自引率
2.80%
发文量
277
审稿时长
6-12 weeks
期刊介绍: The Journal of Biochemical and Molecular Toxicology is an international journal that contains original research papers, rapid communications, mini-reviews, and book reviews, all focusing on the molecular mechanisms of action and detoxication of exogenous and endogenous chemicals and toxic agents. The scope includes effects on the organism at all stages of development, on organ systems, tissues, and cells as well as on enzymes, receptors, hormones, and genes. The biochemical and molecular aspects of uptake, transport, storage, excretion, lactivation and detoxication of drugs, agricultural, industrial and environmental chemicals, natural products and food additives are all subjects suitable for publication. Of particular interest are aspects of molecular biology related to biochemical toxicology. These include studies of the expression of genes related to detoxication and activation enzymes, toxicants with modes of action involving effects on nucleic acids, gene expression and protein synthesis, and the toxicity of products derived from biotechnology.
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