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渗透压对肾髓质中磷酸肌醇水解的影响。

Effects of osmolality on phosphoinositide hydrolysis in renal medulla.

作者信息

Garg L C, Kapturczak E, McArdle S

机构信息

Department of Pharmacology and Therapeutic, University of Florida College of Medicine, Gainesville.

出版信息

J Pharmacol Exp Ther. 1988 Nov;247(2):495-501.

PMID:2846822
Abstract

We have reported previously that carbachol stimulates hydrolysis of phosphoinositides (PIs) in the renomedullary slices when incubated in a buffer of 300 mOsm/kg of H2O. However, the mammalian renal medulla has a hypertonic environment that changes with the state of hydration of the animal. In order to determine if the change in renal osmolality produces a change in the response of the inner medulla to hormones and neurotransmitters, we determined the effects of osmolality on carbachol-stimulated hydrolysis of PIs in the inner medullary slices of the rabbit kidney. The hydrolysis was determined by incorporation of [3H]inositol into PIs and the release of [3H]inositol phosphates in the presence and absence of 1 mM carbachol. The osmolality of the incubation media was increased from 300 to 1200 mOsm/kg of H2O in increments of 300 mOsm/kg of H2O by addition of either urea, NaCl, mannitol or an equiosmolar mixture of urea and NaCl. Increasing the osmolality of the incubation media by any one of these solutes decreased carbachol-stimulated release of inositol phosphates in the inner medullary slices of the rabbit kidney. Our results suggest that the effect of carbachol on PI messenger system in the renal medulla in vivo will depend on the tissue osmolality that itself depends on the state of hydration of the animal.

摘要

我们之前报道过,当在300 mOsm/kg H₂O的缓冲液中孵育时,卡巴胆碱可刺激肾髓质切片中磷酸肌醇(PI)的水解。然而,哺乳动物的肾髓质具有高渗环境,该环境会随动物的水合状态而变化。为了确定肾渗透压的变化是否会导致肾髓质对激素和神经递质的反应发生变化,我们测定了渗透压对兔肾内髓质切片中卡巴胆碱刺激的PI水解的影响。通过在存在和不存在1 mM卡巴胆碱的情况下,将[³H]肌醇掺入PI中以及释放[³H]肌醇磷酸来测定水解情况。通过添加尿素、氯化钠、甘露醇或尿素与氯化钠的等渗混合物,将孵育介质的渗透压以300 mOsm/kg H₂O的增量从300 mOsm/kg H₂O增加到1200 mOsm/kg H₂O。通过这些溶质中的任何一种提高孵育介质的渗透压,都会降低兔肾内髓质切片中卡巴胆碱刺激的肌醇磷酸释放。我们的结果表明,卡巴胆碱对体内肾髓质中PI信使系统的影响将取决于组织渗透压,而组织渗透压本身又取决于动物的水合状态。

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