Chen Jun, Zhang Yinzhi, Lv Yantao, Tian Min, You Jinming, Chen Fang, Zhang Shihai, Guan Wutai
Guangdong Provincial Key Laboratory of Animal Nutrition Control, College of Animal Science, South China Agricultural University, Guangzhou, China.
Jiangxi Province Key Laboratory of Animal Nutrition, Engineering Research Center of Feed Development, Jiangxi Agricultural University, Nanchang, China.
Front Nutr. 2021 Jul 26;8:665855. doi: 10.3389/fnut.2021.665855. eCollection 2021.
This study investigated the effects of selenomethionine (Se-Met) on the cell viability, selenoprotein expression, and antioxidant function of porcine mammary epithelial cells (pMECs) to reveal the underlying molecular mechanism of Se-Met on the lactation performance and antioxidant capacity of sows . The pMECs were used as an model and were treated with various concentrations of Se-Met (0, 0.5, 1, 2, and 4 μM). Cells were analyzed for cell viability, selenoprotein transcriptome, selenoprotein expression, and antioxidant enzyme activities. The results showed that, with increasing Se-Met concentrations, cell viability first increased and then decreased at 24, 48, or 72 h posttreatment with maximum values at 0.5-μM Se-Met. As the Se-Met concentrations increased, the mRNA expression of 17 selenoproteins first upregulated and then downregulated, with maximum values at 0.5-μM Se-Met. The 17 selenoproteins included , and . Additionally, the protein expression levels of SEPHS2, SELENOP, GPX1, and TXNRD1 and the activities of glutathione peroxidase and thioredoxin were highest at 0.5-μM Se-Met. In conclusion, 0.5-μM Se-Met promotes cell viability partially by improving selenoprotein expression and antioxidant function in pMECs, which provides evidence for the potential ability of Se-Met to improve mammary gland health in sows.
本研究调查了硒代蛋氨酸(Se-Met)对猪乳腺上皮细胞(pMECs)的细胞活力、硒蛋白表达和抗氧化功能的影响,以揭示Se-Met对母猪泌乳性能和抗氧化能力的潜在分子机制。将pMECs作为模型,并使用不同浓度的Se-Met(0、0.5、1、2和4μM)进行处理。分析细胞的活力、硒蛋白转录组、硒蛋白表达和抗氧化酶活性。结果表明,随着Se-Met浓度的增加,在处理后24、48或72小时,细胞活力先增加后降低,在0.5μM Se-Met时达到最大值。随着Se-Met浓度的增加,17种硒蛋白的mRNA表达先上调后下调,在0.5μM Se-Met时达到最大值。这17种硒蛋白包括 ,以及 。此外,SEPHS2、SELENOP、GPX1和TXNRD1的蛋白表达水平以及谷胱甘肽过氧化物酶和硫氧还蛋白的活性在0.5μM Se-Met时最高。总之, 0.5μM Se-Met通过改善pMECs中的硒蛋白表达和抗氧化功能来部分促进细胞活力,这为Se-Met改善母猪乳腺健康的潜在能力提供了证据。