铵
化学
离子运输机
电化学梯度
ATP酶
插层细胞
生物物理学
肾单位
膜转运
排泄
主动运输
扩散
无机化学
生物化学
分泌物
膜
生物
酶
热力学
物理
肾功能
有机化学
出处
期刊:PubMed
日期:1996-01-01
卷期号:22 (5-6): 311-7
被引量:49
摘要
Ammonium (NH4+) excretion varies appropriately with changes in acid-base balance and represents the major regulatable component of net acid excretion. The transport of ammonium can occur by 'diffusion trapping', or active H+ secretion in parallel with passive NH3 diffusion. In addition, direct NH4+ transport is important in many nephron segments. Since NH4+ and K+ have a similar hydrated radius, these ions share common transport pathways in many renal and nonrenal cell types. For example, these ions compete for a common binding site on the Na,K-ATPase. In addition to Na+ pump-mediated NH4+ transport, the Na,K-ATPase generates an electrochemical gradient across the cell membrane which affects other H+ and NH4+ transport pathways. In this review, the role of the Na+ pump on each of these renal ammonium transport mechanisms will be reviewed.
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