Suppr超能文献

两栖动物和爬行动物在水分充足条件下肾脏中的锂分泌。

Lithium secretion in kidneys of amphibians and reptiles under hydrated conditions.

作者信息

Fleishman D G, Nikiforov V A, Saulus A A, Vasilieva V F, Borkin L Y

机构信息

Sechenov Institute of Evolutionary Physiology and Biochemistry, Russian Academy of Sciences, St. Petersburg, Russia.

出版信息

Comp Biochem Physiol A Physiol. 1997 Dec;118(4):1259-65. doi: 10.1016/s0300-9629(97)00220-x.

Abstract

Renal lithium transport was studied at different hydration levels in five species of anuran amphibians (Bufo bufo, B. danatensis, B. viridis, Rana ridibunda, and R. temporaria), two species of urodeles (Triturus vulgaris and T. cristatus) and four species of reptiles (lizards Eremias multiocellata, Lacerta vivipara, Trapelus sanguinolentus, and Teratoscincus scincus). Under dehydration conditions, Li+ was reabsorbed in the kidneys of amphibians ans reptiles, but to a lesser degree than in mammalian kidneys: the ratio of lithium clearance (CLi) to glomerular filtration rate (GFR)--fractional lithium excretion--in dehydrated animals was in the range 0.5-0.8. The transition to the hydrated state resulted in a cessation of net renal lithium reabsorption. Under condition of high hydration, all the animals studied, except for urodeles, showed net renal secretion of Li+, i.e., CLi exceeded GFR. The ratio CLi/GFR was 1.2-1.3 in hydrated anurans and 1.7-2.3 in hydrated lizards. In urodeles, this ratio was approximately unity. It is suggested that renal lithium secretion in hydrated amphibians and reptiles reflects fluid secretion in the proximal tubule, which is additional to the glomerular filtration mechanism of fluid delivery to nephron under water loading.

摘要

在五种无尾两栖动物(普通蟾蜍、达纳蟾蜍、绿蟾蜍、食用蛙和欧洲林蛙)、两种有尾两栖动物(普通真螈和冠真螈)以及四种爬行动物(多斑沙蜥、胎生蜥蜴、红斑沙蜥和新疆沙虎)中,研究了不同水合水平下的肾脏锂转运情况。在脱水条件下,两栖动物和爬行动物的肾脏会重吸收Li +,但程度低于哺乳动物肾脏:脱水动物的锂清除率(CLi)与肾小球滤过率(GFR)之比——锂排泄分数——在0.5 - 0.8范围内。向水合状态转变会导致肾脏净锂重吸收停止。在高水合状态下,除有尾两栖动物外,所有研究的动物都表现出肾脏净分泌Li +,即CLi超过GFR。水合无尾两栖动物的CLi/GFR比值为1.2 - 1.3,水合蜥蜴的该比值为1.7 - 2.3。在有尾两栖动物中,该比值约为1。有人认为,水合两栖动物和爬行动物的肾脏锂分泌反映了近端小管中的液体分泌,这是在水负荷下液体输送到肾单位的肾小球滤过机制之外的。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验