首页> 外文期刊>Research in Veterinary Science >Permeation of acetate across sheep ruminal epithelium is partly mediated by an anion channel
【24h】

Permeation of acetate across sheep ruminal epithelium is partly mediated by an anion channel

机译:横跨绵羊瘤胃上皮渗透的渗透性部分由阴离子通道部分介导

获取原文
获取原文并翻译 | 示例
           

摘要

The present study pursued the question if an anion channel could be partly responsible for the transport of acetate in the isolated ovine ruminal epithelium. Using the Ussing chamber technique, changes of short-circuit current (I-sc) induced by mucosal or serosal addition of acetate was investigated. To further evaluate the I-sc changes induced by acetate the epithelia were preincubated with ouabain or 4,4'-diisothiocyano-2,2'-stilbene-disulfonic acid (DIDS). In addition, unidirectional flux rates of C-14-acetate were measured at different transepithelial potential difference (V-t). At V-t = 0 mV, acetate addition to the mucosal side of epithelia incubated in ouabain/DIDS free solution resulted in an I-sc decrease, whereas application to the serosal side induced an I-sc increase. Absolute I-sc changes were significantly larger after serosal than after mucosal acetate addition. Ouabain pre-incubation abolished these side-specific differences. Pre-incubation with DIDS on the mucosal side inhibited the current induced by subsequent mucosal acetate addition in a voltage dependent manner, whereas serosal DIDS pre-incubation had no effect on acetate-induced changes of I-sc. Mucosal-to-serosal acetate flux was partly voltage-dependent. The serosal-to-mucosal flux of acetate was not influenced by V-t. The asymmetric changes of I-sc after acetate application and the V-t dependence of the DIDS inhibition on the mucosal side indicate a partly electrogenic transcellular permeation of acetate which includes an apically located acetate conductance. It is suggested that this conductance may be important for epithelial cell homeostasis.
机译:本研究追求这个问题如果阴离子频道可以部分原因在分离的绵延上皮上分离的醋酸盐转运。采用USSing室技术,研究了由粘膜或浆膜添加乙酸盐引起的短路电流(I-SC)的变化。为了进一步评估乙酸盐诱导的I-SC变化,将上皮预孵育,与Oubabain或4,4'-二硫氰酸盐-2,2'-芪 - 二磺酸(DID)进行预孵育。此外,在不同的TransePithelial电位差(V-T)下测量单向化的C-14-乙酸盐的通量速率。在V-T = 0 mV下,醋酸粘膜侧的醋酸粘膜侧孵育在瓦巴因/ DIDS的自由溶液中导致I-SC降低,而施用于浆膜侧的诱导I-SC增加。浆膜后绝对I-SC变化显着大于粘膜醋酸盐酸盐后。 Ouabain预孵育废除了这些侧面特异性差异。与粘膜侧的DIDS预孵育抑制电压依赖性方式的随后粘膜醋酸酸诱导的电流,而浆液使孵育预孵育对I-SC的乙酸盐诱导的变化没有影响。粘膜脂肪酸乙酸酯通量部分依赖于电压。乙酸酯的浆膜粘膜通量不受V-T的影响。醋酸盐应用后I-Sc的不对称变化和粘膜侧的确保抑制的V-T依赖性表明乙酸盐的部分电介质渗透,其包括乙酸顶部定位。建议该电导对于上皮细胞稳态可能是重要的。

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