...
首页> 外文期刊>Comparative Medicine >Changes in plasma arginine vasopressin concentration during lactation in Rats
【24h】

Changes in plasma arginine vasopressin concentration during lactation in Rats

机译:哺乳期大鼠血浆精氨酸加压素浓度的变化

获取原文
获取原文并翻译 | 示例

摘要

Background and Purpose: The objectives of the study reported here were to determine whether a change in the plasma arginine vasopressin (AVP) concentration occurred in lactating, compared with non-lactating rats and to examine the involvement of suckling with plasma AVP concentration. Methods: Experiments were performed on 86 female Wister Imamichi rats, 12 weeks old at parturition, with fast lactation. On day 13 of lactation, AVP concentration and plasma osmotic pressure were measured in lactating and non-lactating rats. Results: Plasma AVP concentration was always higher in rats of the lactating groups than in non-lactating controls (1.06+-0.28 pg/ml), and a conspicuous increase in AVP concentration was seen during the postsuckling period (1.70+-0.61 pg/ml before vs. 2.56+-1.31 pg/ml after suckling, P<0.05). Plasma osmotic pressure in lactating rats with 12 pups (296.6+-5.2 mOsmol/kg·H_2O) was lower than that in rats of the removed control groups (306.7+-5.7 mOsmol/kg·H_2O). Conclusion: On the basis of these results, it appears that "low plasma osmotic pressure-high AVP status" develops in the lactating period, similar to pregnancy, through resetting of the regulatory mechanism of the AVP system. It was concluded that suckling stimulation could release AVP, which could dilute the blood with water resulting in the increase in circulating blood volume.
机译:背景与目的:此处报告的研究目的是确定与非哺乳期大鼠相比,泌乳期血浆精氨酸加压素(AVP)浓度是否发生变化,并检查血浆AVP浓度与哺乳有关。方法:对86只雌性Wister Imamichi大鼠进行了实验,该大鼠在分娩时12周龄,具有快速泌乳能力。泌乳第13天,在哺乳期和非哺乳期大鼠中测量AVP浓度和血浆渗透压。结果:哺乳组大鼠血浆AVP浓度始终高于未哺乳对照组(1.06 + -0.28 pg / ml),在哺乳期后血浆AVP浓度显着增加(1.70 + -0.61 pg / ml)。哺乳前ml(毫升)与哺乳后2.56±-1.31 pg / ml(P <0.05)。哺乳期12只幼仔的血浆渗透压(296.6±-5.2mOsmol / kg·H_2O)低于对照组(306.7±-5.7mOsmol / kg·H_2O)。结论:根据这些结果,在哺乳期,类似于妊娠,通过重置AVP系统的调节机制,似乎出现了“低血浆渗透压-高AVP状态”。结论是哺乳刺激可以释放AVP,AVP可以用水稀释血液,导致循环血量增加。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号