首页> 美国卫生研究院文献>The Journal of Physiology >Chloride conductance and intracellular chloride accumulation in mouse Peyers patch enterocytes.
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Chloride conductance and intracellular chloride accumulation in mouse Peyers patch enterocytes.

机译:氯化物的电导率和细胞内氯化物在小鼠Peyers贴片肠细胞中的积累

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摘要

1. Measurements of membrane potential, Cl- conductance and intracellular Cl-, K+, Na+ and H+ activities have been carried out in the follicle-associated epithelium of the mouse Peyer's patch to characterize further the physiological properties of antigen-transporting M cells, enterocytes and intraepithelial lymphocytes. 2. Intraepithelial lymphocytes, identified in random impalements as a second negative jump in membrane potential (Vm), were found to have higher K+ and H+ activities, lower Na+ and Cl- activities and higher negative values for Vm than either of the other two epithelial cell types. Cl- activity in these cells was higher than that predicted from the Nernst equation. 3. M cells identified as having the first negative jump in Vm in impalements involving intraepithelial lymphocytes were unable to accumulate Cl-. They also had a lower Vm than that found in apparently fully differentiated enterocytes. This Vm was partly depolarized at a low Cl- concentration. 4. Apparently fully differentiated enterocytes could be further divided into two populations depending on whether the Vm could or could not be partly depolarized by a low Cl- concentration. The mean Vm and intracellular Cl- activity of Cl(-)-sensitive cells, measured in high Cl- medium, were less than values found for Cl(-)-insensitive enterocytes. Cl- was only accumulated by enterocytes showing no depolarization at low external Cl- concentration. 5. The Vm of mature villus enterocytes was the same as that determined for Cl(-)-insensitive follicle-associated enterocytes. Villus enterocyte Vm was not depolarized at a low Cl- concentration. 6. The present ability to distinguish two apparently large populations of follicle-associated enterocytes having M cell-like or villus enterocyte-like properties is discussed in relation to current theories describing how M cells might be formed. The presence of a Cl- conductance in M cell enterocytes, the inability to accumulate Cl- and the maintenance of a low Vm could aid endocytosis of macromolecules across the apical membrane.
机译:1.已在小鼠Peyer斑的卵泡相关上皮细胞中测量了膜电位,Cl-电导率和细胞内Cl-,K +,Na +和H +活性,以进一步表征转运抗原的M细胞,肠上皮细胞的生理特性和上皮内淋巴细胞。 2.发现随机上皮中上皮内淋巴细胞是膜电位(Vm)的第二次负跳变,与其他两个上皮细胞相比,其具有更高的K +和H +活性,更低的Na +和Cl-活性以及更高的Vm负值。单元格类型。这些细胞中的Cl活性高于能斯特方程所预测的。 3.在涉及上皮内淋巴细胞的损伤中,被鉴定为Vm首次负跳变的M细胞无法积累Cl-。它们的Vm也比表面完全分化的肠上皮细胞低。该Vm在低Cl-浓度下被部分去极化。 4.显然,完全分化的肠上皮细胞可进一步分为两个群体,这取决于低Cl-浓度是否能使Vm部分去极化。在高Cl-介质中测得的Cl(-)敏感细胞的平均Vm和胞内Cl-活性小于对Cl(-)不敏感的肠上皮细胞的值。 Cl-仅由肠细胞积聚,在低外部Cl-浓度下无去极化作用。 5.成熟的绒毛肠细胞的Vm与对Cl(-)不敏感的卵泡相关肠细胞的Vm相同。绒毛肠细胞Vm在低Cl-浓度下不会去极化。 6.关于描述如何形成M细胞的当前理论,讨论了区分具有M细胞样或绒毛肠细胞样特性的两个明显大的与卵泡相关的肠细胞群的能力。 M细胞肠上皮细胞中Cl-电导的存在,无法积累Cl-以及维持低Vm可能有助于大分子通过顶膜的内吞作用。

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