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分泌上皮中的等渗性水转运。

Isotonic water transport in secretory epithelia.

作者信息

Swanson C H

出版信息

Yale J Biol Med. 1977 Mar-Apr;50(2):153-63.

Abstract

The model proposed by Diamond and Bossert [1] for isotonic water transport has received wide acceptance in recent years. It assumes that the local driving force for water transport is a standing osmotic gradient produced in the lateral intercellular spaces of the epithelial cell layer by active solute transport. While this model is based on work done in absorptive epithelia where the closed to open direction of the lateral space and the direction of net transport are the same, it has been proposed that the lateral spaces could also serve as the site of the local osmotic gradients for water transport in secretory epithelia, where the closed to open direction of the lateral space and net transport are opposed, by actively transporting solute out of the space rather than into it. Operation in the backward direction, however, requires a lower than ambient hydrostatic pressure within the lateral space which would seem more likely to cause the space to collapse with loss of function. On the other hand, most secretory epithelia are characterized by transport into a restricted ductal system which is similar to the lateral intercellular space in the absorptive epithelia in that its closed to open direction is the same as that of net transport. In vitro micropuncture studies on the exocrine pancreas of the rabbit indicate the presence of a small but statistically significant increase in juice osmolality, 6 mOsm/kg H(2)O, at the site of electrolyte and water secretion in the smallest extralobular ducts with secretin stimulation which suggests that the ductal system in the secretory epithelia rather than the lateral intercellular space is the site of the local osmotic gradients responsible for isotonic water transport.

摘要

戴蒙德和博塞尔特[1]提出的等渗水转运模型近年来已被广泛接受。该模型假设水转运的局部驱动力是上皮细胞层侧向细胞间隙中由主动溶质转运产生的稳定渗透梯度。虽然这个模型是基于在吸收性上皮细胞中所做的研究,在那里侧向间隙的封闭到开放方向与净转运方向相同,但有人提出,在分泌性上皮细胞中,侧向间隙也可以作为水转运局部渗透梯度的位点,在分泌性上皮细胞中,侧向间隙的封闭到开放方向与净转运方向相反,通过将溶质主动转运出间隙而不是转运到间隙中。然而,反向运作需要侧向间隙内的静水压力低于环境压力,这似乎更有可能导致间隙塌陷并丧失功能。另一方面,大多数分泌性上皮细胞的特征是向一个受限的导管系统转运,该导管系统与吸收性上皮细胞中的侧向细胞间隙相似,其封闭到开放方向与净转运方向相同。对兔外分泌胰腺的体外微穿刺研究表明,在促胰液素刺激下,最小小叶外导管中电解质和水分泌部位的胰液渗透压有小幅但具有统计学意义的升高,为6毫摩尔渗透压/千克H₂O,这表明分泌性上皮细胞中的导管系统而非侧向细胞间隙是负责等渗水转运的局部渗透梯度的位点。

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