首页> 美国卫生研究院文献>The Journal of Physiology >An energy-dependent sodium-independent component of active p-aminohippurate transport in rabbit renal cortex.
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An energy-dependent sodium-independent component of active p-aminohippurate transport in rabbit renal cortex.

机译:对氨基氨基嘌呤在兔肾皮质中活动的能量依赖性钠依赖性成分。

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摘要

1. The relation between the coupling of metabolic energy to renal p-aminohippurate (PAH) accumulation and Na+-K+ transport was studied in rabbit cortical slices. 2. Cyanide (CN-), 2,4-dinitrophenol (DNP) and fluoride (F-( at low-medium concentrations, giving rise to a slight decline of tissue ATP concentration, caused a reduction o PAH accumulation without significantly affecting intracellular Na+ and K+ concentrations. However, higher levels of the metabolic inhibitors also resulted in considerable inhibition of active Na+-K+ transport. 3. The rate of carrier-mediated PAH uptake was slow under anaerobic conditions, relative to that measured under aerobic conditions in Na+-depleted slices. In the latter case the maximal accumulation achieved was only 1.55 +/- 0.16. 4. The uptake rate of PAH under anaerobic conditions was not inhibited by the absence of Na+ or addition of metabolic inhibitors in the concentrations used under aerobic conditions. 5. It is concluded that although Na+ is required for the attainment of high accumulation ratios of PAH, oxidative metabolism stimulates PAH flux by a Na+-independent mechanism.
机译:1.研究了兔皮质切片中代谢能与肾脏对氨基马尿酸(PAH)积累与Na + -K +转运之间的关系。 2.氰化物(CN-),2,4-二硝基苯酚(DNP)和氟化物(F-(在中低浓度下,导致组织ATP浓度略有下降,导致PAH积累减少,而不会显着影响细胞内Na +然而,较高水平的代谢抑制剂也导致对Na + -K +活性转运的显着抑制; 3.在厌氧条件下,相对于在Na +-中需氧条件下,载体介导的PAH吸收速率缓慢。在后一种情况下,最大积累量仅为1.55 +/- 0.16。4.在有氧条件下使用的浓度不存在Na +或不添加代谢抑制剂,在无氧条件下PAH的吸收速率不会受到抑制。 5.结论是,尽管要达到高PAH积累比需要Na +,但氧化代谢会通过非Na +依赖性机制刺激PAH通量。

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