Kim Jungeun, Lee Hong-Gu
Department of Animal Science and Technology, Sanghuh College of Life Sciences, Konkuk University, Seoul 05029, Korea.
Team of Educational Program for Specialists in Global Animal Science, Brain Korea 21 Plus Project, Konkuk University, Seoul 05029, Korea.
Animals (Basel). 2021 May 18;11(5):1444. doi: 10.3390/ani11051444.
Nutrient restriction is a challenging condition for the mammary glands of dairy cows. In this condition, supplementing amino acids and energy sources might be a good strategy to improve the concentration of one of the most important caseins in bovine milk. Therefore, the objective of this study was to investigate the effects of L-histidine (His) and sodium acetate (Ace) in a nutrient-restricted (NR) immortalized bovine mammary epithelial cell line (MAC-T cells). The treatments for the MAC-T cells are as follows: experiment (1) 0-5% diluted basal medium; experiment (2) supplementation of 0-9.6 mM of His or Ace in NR or normal conditions; experiment (3) supplementation of 0-9.6 mM of Ace plus 0.15 mM of His in NR or normal conditions. The 1% diluted medium showed no significant effect on the cell viability with the basal medium; thus, it was selected as the NR condition. The relative expression of β-casein was significantly increased in the NR condition with the inclusion of 0.15 mM His alone or with Ace compared to that in control. The supplementation of Ace increased the β-casein level under normal conditions. However, it did not change the expression of β-casein under the NR condition. The results suggest that His has the potential to increase the β-casein expression under the NR condition.
营养限制对奶牛的乳腺来说是一种具有挑战性的状况。在这种情况下,补充氨基酸和能量来源可能是提高牛乳中最重要的酪蛋白之一浓度的良好策略。因此,本研究的目的是调查L-组氨酸(His)和醋酸钠(Ace)对营养限制(NR)的永生化牛乳腺上皮细胞系(MAC-T细胞)的影响。对MAC-T细胞的处理如下:实验(1)0-5%稀释的基础培养基;实验(2)在NR或正常条件下补充0-9.6 mM的His或Ace;实验(3)在NR或正常条件下补充0-9.6 mM的Ace加0.15 mM的His。1%稀释培养基对基础培养基中的细胞活力无显著影响;因此,它被选为NR条件。与对照组相比,在NR条件下单独添加0.15 mM His或与Ace一起添加时,β-酪蛋白的相对表达显著增加。在正常条件下补充Ace可提高β-酪蛋白水平。然而,在NR条件下它并未改变β-酪蛋白的表达。结果表明,His有潜力在NR条件下增加β-酪蛋白的表达。