Effects of Anions on PAH Transport in Rabbit Kidney Cortical Slices

가토 신피질 절편에서 PAH$(\rho-aminohippuric\;acid)$ 이동에 미치는 음이온의 영향

  • Suh, Duk-Joon (Department of Physiology, Pusan National University, College of Medicine) ;
  • Lee, Sang-Ho (Department of Physiology, Pusan National University, College of Medicine) ;
  • Sung, Ho-Kyung (Department of Physiology, Seoul National University, College of Medicine)
  • 서덕준 (부산대학교 의과대학 생리학교실) ;
  • 이상호 (부산대학교 의과대학 생리학교실) ;
  • 성호경 (서울대학교 의과대학 생리학교실)
  • Published : 1985.06.30

Abstract

The effects of anions on net accumulation of $(\rho-aminohippuric\;acid)$(PAH) were studied in rabbit kidney cortical slices. Experiments were carried while varying the major anionic composition of the incubation medium(replacement of $Cl^-$ by isethionate and $SCN^-$). The total replacement of $Cl^-$ with isethionate, $SO_4\;^{2-}$ and $SCN^-$ in the incubation medium decreased the 60-min slice-to-medium concentration(S/M) ratio of PAH to 60%, 40% and 50% of control value, respectively. The degree of inhibition in PAH accumulation by the replacement of isethionate and $SCN^-$ was increased with increasing of both preincubation and incubation time. The influence of isethionate and $SCN^-$ on PAH uptake was fully reversible. Both isethionate and $SCN^-$ increased the apparent Km value significantly with no change on the apparent Vmax value, suggesting a competitive inhibition on PAH uptake. And the inhibitory effect of $SCN^-$ on PAH uptake decreased with increase of pH in the incubation medium while that of isethionate increased with increase of pH. Intracellular water content, intracellular electrolyte concentration and oxygen consumption were not influenced by the replacement of $Cl^-$ with isethionate or $SCN^-$ in the incubation medium. These results suggest that both $isethionate^-$ and $SCN^-$ inhibit the PAH uptake by binding to some site necessary for normal PAH transport without affecting the cellular viability.

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