Bijman J, Quinton P
Pflugers Arch. 1987 May;408(5):505-10. doi: 10.1007/BF00585076.
The transepithelial permeability properties to Na, K, and Cl in microperfused segments of human eccrine sweat ducts from normal (N) subjects and patients with cystic fibrosis (CF) were examined. Amiloride administered on the luminal surface caused the transepithelial potential (Vt) of normal ducts to depolarize to 0 mV, but in the absence of Cl in the medium or in CF ducts, amiloride caused the Vt to significantly reverse electrical polarity from lumen negative to lumen positive with respect to the serosal bath. The Vt responses to changes in Na concentration in the lumen and K concentration in the bath were similar in CF and N ducts and showed that the basolateral membrane of the duct is K permeable and the apical membrane (in the absence of an anion shunt) is an almost ideal Na electrode. The Vt of N ducts was insensitive to 10-fold changes in luminal K and contraluminal Na solution concentrations. These responses show that in normal ducts, the apical membrane and tight junctions are relatively impermeable to K, and the basal membrane and tight junctions are relatively impermeable to Na. The Vt was highly sensitive to Cl- changes on either surface before or after ouabain inhibition in N ducts, but in every case were insensitive to Cl- changes in CF ducts. By comparison to control ducts the cation selective properties of the CF duct are probably normal, but both cell membranes as well as the tight junctions of the CF duct are relatively impermeable to Cl. The present data are inconclusive as to whether the route of Cl movement across the N duct epithelium is trans- or paracellular.
对来自正常(N)受试者和囊性纤维化(CF)患者的人外泌汗腺微灌注段对钠、钾和氯的跨上皮通透性特性进行了研究。在管腔表面施用氨氯吡脒会使正常导管的跨上皮电位(Vt)去极化至0 mV,但在培养基中无氯或CF导管中,氨氯吡脒会使Vt相对于浆膜浴显著反转电极性,从管腔负变为管腔正。CF导管和N导管对管腔内钠浓度变化和浴中钾浓度变化时的Vt反应相似,表明导管的基底外侧膜对钾有通透性,而顶端膜(在没有阴离子分流的情况下)几乎是理想的钠电极。N导管的Vt对管腔内钾和对侧管腔钠溶液浓度10倍的变化不敏感。这些反应表明,在正常导管中,顶端膜和紧密连接对钾相对不通透,而基底膜和紧密连接对钠相对不通透。在N导管中,哇巴因抑制前后,Vt对任何一侧表面的氯离子变化都高度敏感,但在每种情况下CF导管对氯离子变化都不敏感。与对照导管相比,CF导管的阳离子选择性特性可能正常,但CF导管的细胞膜以及紧密连接对氯相对不通透。关于氯通过N导管上皮的移动途径是跨细胞还是细胞旁,目前的数据尚无定论。