Hillreiner Maria, Flinspach Claudia, Pfaffl Michael W, Kliem Heike
Chair of Animal Physiology and Immunology, Technische Universität München, Freising, Germany.
PLoS One. 2016 Jun 16;11(6):e0157774. doi: 10.1371/journal.pone.0157774. eCollection 2016.
Negative energy balance and ketosis are thought to cause impaired immune function and to increase the risk of clinical mastitis in dairy cows. The present in vitro study aimed to investigate the effect of elevated levels of the predominant ketone body β-hydroxybutyrate on the innate defense capability of primary bovine mammary epithelial cells (pbMEC) challenged with the mastitis pathogen Escherichia coli (E. coli). Therefore, pbMEC of healthy dairy cows in mid- lactation were isolated from milk and challenged in culture with 3 mM BHBA and E. coli. pbMEC stimulated with E. coli for 6 h or 30 h showed an up-regulation of several innate immune genes, whereas co-stimulation of pbMEC with 3 mM BHBA and E. coli resulted in the down-regulation of CCL2, SAA3, LF and C3 gene expression compared to the challenge with solely the bacterial stimulus. These results indicated that increased BHBA concentrations may be partially responsible for the higher mastitis susceptibility of dairy cows in early lactation. Elevated levels of BHBA in blood and milk during negative energy balance and ketosis are likely to impair innate immune function in the bovine mammary gland by attenuating the expression of a broad range of innate immune genes.
负能量平衡和酮症被认为会导致免疫功能受损,并增加奶牛临床型乳腺炎的风险。本体外研究旨在调查主要酮体β-羟基丁酸水平升高对受乳腺炎病原体大肠杆菌(E. coli)攻击的原代牛乳腺上皮细胞(pbMEC)先天防御能力的影响。因此,从牛奶中分离出处于泌乳中期的健康奶牛的pbMEC,并在培养中用3 mM β-羟基丁酸(BHBA)和大肠杆菌进行攻击。用大肠杆菌刺激6小时或30小时的pbMEC显示几种先天免疫基因上调,而与仅用细菌刺激相比,用3 mM BHBA和大肠杆菌共同刺激pbMEC导致趋化因子配体2(CCL2)、血清淀粉样蛋白A3(SAA3)、乳铁蛋白(LF)和补体3(C3)基因表达下调。这些结果表明,较高的BHBA浓度可能是泌乳早期奶牛乳腺炎易感性较高的部分原因。负能量平衡和酮症期间血液和牛奶中升高的BHBA水平可能通过减弱多种先天免疫基因的表达来损害牛乳腺的先天免疫功能。