Chen Yu, Zhang Xiangqian, Yang Jing, Feng Wen, Deng Ganzhen, Xu Shiwen, Guo Mengyao
College of Veterinary Medicine, Northeast Agricultural University, Harbin 150030, China.
School of Tropical Agriculture and Forestry, Hainan University, Haikou 570228, China.
Antioxidants (Basel). 2023 Dec 5;12(12):2077. doi: 10.3390/antiox12122077.
Selenium (Se) deficiency disrupts intracellular REDOX homeostasis and severely deteriorates immune and anti-inflammatory function in high-yielding periparturient dairy cattle. To investigate the damage of extracellular vesicles derived from Se-deficient MAC-T cells (SeD-EV) on normal mammary epithelial cells, an in vitro model of Se deficiency was established. Se-deficient MAC-T cells produced many ROS, promoting apoptosis and the release of inflammatory factors. Extracellular vesicles were successfully isolated by ultrahigh-speed centrifugation and identified by transmission electron microscopy, particle size analysis, and surface markers (CD63, CD81, HSP70, and TSG101). RNA sequencing was performed on exosomal RNA. A total of 9393 lncRNAs and 63,155 mRNAs transcripts were identified in the SeC and SeD groups, respectively, of which 126 lncRNAs and 955 mRNAs were differentially expressed. Furthermore, SeD-EV promoted apoptosis of normal MAC-T cells by TUNEL analysis. SeD-EV significantly inhibited Bcl-2, while Bax and Cleaved Caspase3 were greatly increased. Antioxidant capacity (CAT, T-AOC, SOD, and GSH-Px) was inhibited in SeD-EV-treated MAC-T cells. Additionally, p-PERK, p-eIF2α, ATF4, CHOP, and XBP1 were all elevated in MAC-T cells supplemented with SeD-EV. In addition, p-PI3K, p-Akt, and p-mTOR were decreased strikingly by SeD-EV. In conclusion, SeD-EV caused oxidative stress, thus triggering apoptosis and inflammation through endoplasmic reticulum stress and the PI3K-Akt-mTOR signaling pathway, which contributed to explaining the mechanism of Se deficiency causing mastitis.
硒(Se)缺乏会破坏细胞内氧化还原稳态,并严重损害高产围产期奶牛的免疫和抗炎功能。为了研究硒缺乏的MAC-T细胞衍生的细胞外囊泡(SeD-EV)对正常乳腺上皮细胞的损伤,建立了体外硒缺乏模型。硒缺乏的MAC-T细胞产生大量活性氧,促进细胞凋亡和炎症因子释放。通过超速离心成功分离细胞外囊泡,并通过透射电子显微镜、粒径分析和表面标志物(CD63、CD81、HSP70和TSG101)进行鉴定。对外泌体RNA进行RNA测序。在SeC组和SeD组中分别鉴定出9393个lncRNA和63155个mRNA转录本,其中126个lncRNA和955个mRNA差异表达。此外,通过TUNEL分析发现SeD-EV促进正常MAC-T细胞凋亡。SeD-EV显著抑制Bcl-2,而Bax和裂解的Caspase3大幅增加。在SeD-EV处理的MAC-T细胞中,抗氧化能力(CAT、T-AOC、SOD和GSH-Px)受到抑制。此外,在补充SeD-EV的MAC-T细胞中,p-PERK、p-eIF2α、ATF4、CHOP和XBP1均升高。此外,SeD-EV显著降低p-PI3K、p-Akt和p-mTOR。总之,SeD-EV导致氧化应激,从而通过内质网应激和PI3K-Akt-mTOR信号通路触发细胞凋亡和炎症,这有助于解释硒缺乏导致乳腺炎的机制。