首页> 外文期刊>Turkish journal of biology >Expression profiles of genes related to melatonin and oxidative stress in human renal proximal tubule cells treated with antibiotic amphotericin B and its modified forms
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Expression profiles of genes related to melatonin and oxidative stress in human renal proximal tubule cells treated with antibiotic amphotericin B and its modified forms

机译:抗生素两性霉素B及其修饰形式在褪黑素和氧化应激相关基因在人肾小管细胞中的表达

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摘要

Melatonin protects cells from oxidative stress caused by antibiotics. Through the generation of reactive oxygen species (ROS), amphotericin B (AmB) causes oxidative injuries of the kidneys and liver. Generation of oxidized forms of AmB (AmB-ox) in a patient's circulation may also generate ROS, causing side effects. Studies aimed at elimination of toxic properties of AmB are focused on forming complexes of AmB with copper(II) ions (AmB-Cu2+). However, the influence of such modified forms on renal cells and their transcriptome has not been studied so far. Therefore, the aim of this study was to answer the question of whether AmB-Cu2+ complexes and AmB-ox influence the transcriptional activity of melatonin-related and oxidative stress-related genes in human renal proximal tubule epithelial cells (RPTECs) and whether these changes can result in less toxicity of modified forms of AmB. Gene expression profile was evaluated with the use of oligonucleotide microarrays. At high concentrations AmB-Cu2+ was two times less toxic than AmB and AmB-ox. AmB-Cu2+ caused downregulation of oxidative stress-related genes and RORA, and upregulation of AANAT and MTNR1B. AmB-ox caused similar molecular changes. Based on cytotoxicity tests results and changes in melatonin-and oxidative stress-related genes expression profiles, we conclude that AmB-Cu2+ is less toxic for RPTECs.
机译:褪黑素可保护细胞免受抗生素引起的氧化应激。通过生成活性氧(ROS),两性霉素B(AmB)会导致肾脏和肝脏的氧化损伤。患者循环中氧化形式的AmB(AmB-ox)的生成也可能产生ROS,从而引起副作用。旨在消除AmB毒性特性的研究集中于与铜(II)离子(AmB-Cu2 +)形成AmB的配合物。但是,到目前为止,尚未研究过这种修饰形式对肾细胞及其转录组的影响。因此,本研究的目的是回答AmB-Cu2 +复合物和AmB-ox是否影响人肾近端肾小管上皮细胞(RPTECs)褪黑素相关和氧化应激相关基因的转录活性以及这些变化是否可以降低修饰形式的AmB的毒性。使用寡核苷酸微阵列评估基因表达谱。在高浓度下,AmB-Cu2 +的毒性比AmB和AmB-ox低两倍。 AmB-Cu2 +导致氧化应激相关基因和RORA的下调,以及AANAT和MTNR1B的上调。 AmB-ox引起了类似的分子变化。根据细胞毒性测试结果以及褪黑激素和氧化应激相关基因表达谱的变化,我们得出结论,AmB-Cu2 +对RPTEC的毒性较小。

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