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奶牛挤奶过程中乳腺上皮细胞的破坏和脱落。

Mammary epithelium disruption and mammary epithelial cell exfoliation during milking in dairy cows.

机构信息

PEGASE, Agrocampus Ouest, INRA, 35590 Saint-Gilles, France.

PEGASE, Agrocampus Ouest, INRA, 35590 Saint-Gilles, France; Université Bretagne Loire, 35044 Rennes, France.

出版信息

J Dairy Sci. 2017 Dec;100(12):9824-9834. doi: 10.3168/jds.2017-13166. Epub 2017 Oct 4.

Abstract

The presence of mammary epithelial cells (MEC) in the milk of ruminants indicates that some MEC are shed from the mammary epithelium; however, the mechanisms that regulate the MEC exfoliation process are not known. Through the release of oxytocin, prolactin, and cortisol and through oxytocin-induced mechanical forces on the mammary epithelium, milking could participate in regulating the MEC exfoliation process. The aims of the present study were to determine the rate of MEC exfoliation throughout milking and to investigate its relationship to mammary epithelium integrity and milking-induced hormone release. Milk samples from 9 Holstein dairy cows producing 40.6 ± 1.36 kg of milk/d were collected at the beginning (after 1 and 2 min), in the middle, and at the end of milking. Milk MEC were purified using an immunomagnetic method. Blood samples were collected before, during, and after milking, and the oxytocin, prolactin, and cortisol concentrations in the samples were measured. Tight junction opening was assessed by plasma lactose concentration and the Na:K ratio in milk. The somatic cell count in milk varied during the course of milking; it decreased at the beginning of milking and then increased, reaching the highest values at the end of milking. Exfoliated MEC were present in all milk samples collected. The presence of MEC in the milk sample collected during min 1 of milking, likely corresponding to the cisternal milk fraction, suggests that MEC were exfoliated between milkings. The observed increase in the Na:K ratio in milk and in the plasma concentration of lactose indicated that disruption of mammary epithelium integrity occurred during milking. The MEC exfoliation rate at milking was not correlated with the variables describing milking-induced prolactin release but was negatively correlated with cortisol release, suggesting that cortisol may play a role in limiting exfoliation. In conclusion, milking induced a disruption of the mammary epithelial barrier. Mammary epithelial cells may be continuously exfoliated between milkings or exfoliated during milking as a consequence of the oxytocin-induced mechanical forces and the disruption of mammary epithelium integrity.

摘要

反刍动物乳中存在乳腺上皮细胞(MEC)表明,一些 MEC 是从乳腺上皮脱落的;然而,调节 MEC 脱落过程的机制尚不清楚。通过释放催产素、催乳素和皮质醇以及通过催产素对乳腺上皮产生的机械力,挤奶可能参与调节 MEC 脱落过程。本研究的目的是确定整个挤奶过程中 MEC 的脱落率,并研究其与乳腺上皮完整性和挤奶诱导的激素释放的关系。从 9 头产奶量为 40.6±1.36kg/d 的荷斯坦奶牛中采集乳样,在挤奶开始(第 1 和 2 分钟后)、中间和结束时采集。使用免疫磁珠法纯化乳 MEC。在挤奶前、挤奶中和挤奶后采集血样,测量样本中的催产素、催乳素和皮质醇浓度。通过乳中血浆乳糖浓度和 Na:K 比值评估紧密连接的开放情况。乳中体细胞计数在挤奶过程中发生变化;挤奶开始时下降,然后增加,在挤奶结束时达到最高值。所有采集的乳样中都存在脱落的 MEC。在挤奶第 1 分钟采集的乳样中存在 MEC,可能对应于乳池乳部分,表明 MEC 在挤奶之间脱落。乳中 Na:K 比值和血浆乳糖浓度的增加表明,在挤奶过程中乳腺上皮完整性受到破坏。挤奶时 MEC 的脱落率与描述催乳素释放的变量无关,但与皮质醇释放呈负相关,提示皮质醇可能在限制脱落方面发挥作用。总之,挤奶导致乳腺上皮屏障破坏。乳腺上皮细胞可能在挤奶之间持续脱落,或者由于催产素诱导的机械力和乳腺上皮完整性的破坏而在挤奶过程中脱落。

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