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Protective Effects of Inorganic and Organic Selenium on Heat Stress in Bovine Mammary Epithelial Cells

机译:无机和有机硒对牛乳腺上皮细胞热应激的保护作用

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摘要

When dairy cows are exposed to high-temperature environment, their antioxidant capacity and productive performance decrease, leading to economic losses. Emerging evidence has shown that selenium (Se) can effectively alleviate heat stress in dairy cows; however, the cellular mechanism underlying this protection is not clear. The purpose of this study was to investigate and compare the protective effects of inorganic Se (sodium selenite, SS) and organic Se (selenite methionine, SM) in MAC-T (mammary alveolar cells-large T antigen, a bovine mammary epithelial cell (BMEC) line) cells during heat stress. MAC-T cells were treated in 4 ways unless otherwise described: (i) cells in the heat treatment (HT) group were cultured at 42.5°C for 1 h and then recovered in 37°C for another 12 h; (ii) the SM group was pretreated with organic Se for 2 h, cultured at 42.5°C for 1 h, and then recovered in 37°C for 12 h; (iii) the SS group was treated similarly to the SM group except that the cells were pretreated with inorganic Se instead of organic Se; and (iv) the control group was continuously cultured in 37°C and received no Se treatment. The results showed that heat shock at 42.5°C for 1 h triggered heat shock response, sabotaged the redox balance, and reduced cell viability in MAC-T cells; and pretreatment of cells with SM or SS effectively alleviated the negative effects of heat shock on the cells. However, the cells were much more sensitive to SS treatment but more tolerant to SM. In addition, two forms of Se appeared to affect the expression of different genes, including nuclear factor erythroid 2-related factor 2 (Nrf2) and inducible nitric oxide synthase (iNOS) in the SM group and thioredoxin reductase 1 (TXNRD1) in the SS group in Nrf2-ARE (antioxidant response element) antioxidant pathway and inflammation response. In summary, results showed the mechanistic differences in the protective effects of organic and inorganic Se on heat stress in BMECs.
机译:当奶牛暴露于高温环境时,其抗氧化能力和生产性能下降,导致经济损失。新兴证据表明,硒可以有效缓解奶牛的热应激。然而,这种保护的细胞机制尚不清楚。本研究的目的是研究和比较无机硒(亚硒酸钠,SS)和有机硒(硒蛋氨酸,SM)对MAC-T(乳腺肺泡细胞-大T抗原,牛乳腺上皮细胞( BMEC)线)热应力期间的细胞。除非另有说明,否则以4种方式处理MAC-T细胞:(i)将热处理(HT)组中的细胞在42.5°C下培养1 h,然后在37°C下再培养12 h; (ii)SM组用有机硒预处理2 h,在42.5°C下培养1 h,然后在37 oC下恢复12 h; (iii)除了用无机硒代替有机硒对细胞进行预处理外,对SS组的处理与SM组相似。 (iv)对照组在37℃下连续培养,不进行Se处理。结果表明,在42.5°C下热休克1h,会触发热休克反应,破坏氧化还原平衡,并降低MAC-T细胞的细胞活力。用SM或SS预处理细胞可以有效减轻热激对细胞的负面影响。但是,这些细胞对SS处理更为敏感,但对SM更为耐受。另外,硒的两种形式似乎会影响不同基因的表达,包括SM组中的核因子红系2相关因子2(Nrf2)和诱导型一氧化氮合酶(iNOS),以及SS中的硫氧还蛋白还原酶1(TXNRD1)。 Nrf2-ARE(抗氧化反应元件)的抗氧化途径和炎症反应。总之,结果表明,有机硒和无机硒对BMEC热应力的保护作用机理不同。

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