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Heat Stress Elicits Different Responses in Peripheral Blood Mononuclear Cells from Brown Swiss and Holstein Cows

机译:热应激引起布朗瑞士人和荷斯坦奶牛外周血单个核细胞的不同反应

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This study was undertaken to assess whether peripheral blood mononuclear cells (PBMC) isolated from Brown Swiss (Br) and Holstein (Ho) cows and stimulated with concanavalin A differ in response to chronic exposure to incubation temperatures simulating conditions of hyperthermia. Five multiparous Br and 5 Ho cows were utilized as blood donors. Peripheral blood mononuclear cells were subjected for 65 h to each of 5 treatments (T). Cells were exposed to 39℃ continuously (T39) and three 13-h cycles at 40 (T40), 41 (T41), 42 (T42) or 43℃ (T43), respectively, which were interspersed with two 13-h cycles at 39℃. Treatment T39 was adopted to mimic normothermia; T40, T41, T42, and T43 mimicked conditions of more severe hyperthermia alternating with normothermia. Measures evaluated at the end of the incubation period were prolifera-tive response (DNA synthesis), intracellular reactive oxygen species (ROS) concentrations, and mRNA abundance of the 72-kDa heat-shock protein (Hsp72). In Br cows, DNA synthesis began to decline when PBMC were repeatedly exposed to 41℃ (-22%), whereas DNA synthesis in cells isolated from Ho cows did not begin to decline until 42℃ (-40%). Furthermore, under T41 and T42, DNA synthesis from Br cows was lower than in Ho (-24 and -54%, respectively). In both breeds, increased incubation temperatures caused a reduction of intracellular ROS (from -39.6 and -69.7%). Increase in incubation temperatures enhanced Hsp72 mRNA levels only in PBMC isolated from Br cows. The Hsp72 mRNA in Br cows increased significantly under T41 and T43 compared with T39. In both breeds, DNA synthesis was positively and negatively correlated with intracellular ROS and Hsp72 mRNA abundance, respectively (r = 0.85 and r = -0.70, respectively). Results indicated that PBMC from Br cows are less tolerant to chronic heat exposure than those from Ho cows, and that the lower tolerance is associated with higher expression of Hsp72, suggesting that the same level of hyperthermia may be associated with a differential decline of immune function in the 2 breeds.
机译:进行这项研究以评估从布朗瑞士人(Br)和荷斯坦(Ho)牛分离并用伴刀豆球蛋白A刺激的外周血单个核细胞(PBMC)在长期暴露于模拟高温条件下的培养温度下是否有反应。 5头Br和5头Ho母牛被用作献血者。将外周血单核细胞进行5小时(T)处理65小时。将细胞分别连续暴露于39℃(T39)和三个13-h周期,分别在40(T40),41(T41),42(T42)或43℃(T43)下,并散布在两个13-h周期下39℃。采用T39疗法模拟正常体温。 T40,T41,T42和T43模仿了更严重的体温过高与正常体温交替的情况。孵育期结束时评估的措施是增殖反应(DNA合成),细胞内活性氧(ROS)浓度和72 kDa热激蛋白(Hsp72)的mRNA丰度。在Br奶牛中,当PBMC反复暴露于41℃(-22%)时,DNA合成开始下降,而从Ho奶牛分离的细胞中的DNA合成直到42℃(-40%)才开始下降。此外,在T41和T42下,Br牛的DNA合成水平比Ho低(分别为-24%和-54%)。在两个品种中,温育温度升高导致细胞内ROS降低(从-39.6和-69.7%)。孵育温度的升高仅在从Br牛分离的PBMC中增强了Hsp72 mRNA水平。与T39相比,在T41和T43下,Br奶牛的Hsp72 mRNA显着增加。在这两个品种中,DNA合成分别与细胞内ROS和Hsp72 mRNA丰度呈正相关和负相关(分别为r = 0.85和r = -0.70)。结果表明,Br奶牛的PBMC与Ho奶牛的PBMC相比,对慢性热耐受性差,并且较低的耐受性与Hsp72的高表达有关,这表明相同水平的高温可能与免疫功能的差异下降有关。在两个品种中。

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