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体外微灌注期间大鼠髓袢细段氨基酸通量

Amino acid fluxes in rat thin limb segments of Henle's loop during in vitro microperfusion.

作者信息

Brokl O H, Dantzler W H

机构信息

Department of Physiology, College of Medicine, University of Arizona, Tucson, Arizona 85724-5051, USA.

出版信息

Am J Physiol. 1999 Aug;277(2):F204-10. doi: 10.1152/ajprenal.1999.277.2.F204.

Abstract

Amino acids are apparently recycled between loops of Henle and vasa recta in the rat papilla in vivo. To examine more closely papillary amino acid transport, we measured transepithelial fluxes of L-[(14)C]alanine and [(14)C]taurine in thin limbs of Henle's loops isolated from rat papilla and perfused in vitro. In descending thin limbs (DTL) in vitro, unidirectional bath-to-lumen fluxes tended to exceed unidirectional lumen-to-bath fluxes for both radiolabeled amino acids, although the difference was statistically significant only for taurine. In ascending thin limbs (ATL) in vitro, unidirectional lumen-to-bath fluxes tended to exceed unidirectional bath-to-lumen fluxes, although the difference was again statistically significant only for taurine. These results are compatible with apparent directional movements of amino acids in vivo. However, none of the unidirectional fluxes was saturable or inhibitable, an observation compatible with apparent reabsorption from the ATL in vivo but not compatible with apparent movement from vasa recta to DTL in vivo. There was no evidence of net active transepithelial transport when concentrations of radiolabeled amino acids were matched on both sides of perfused tubule segments. These data suggest that regulation of amino acid movement in vivo may involve the vasa recta, not the DTL of Henle's loops. The data also suggest that transepithelial movement of amino acids in thin limbs of Henle's loop may occur via a paracellular route.

摘要

在大鼠乳头体内,氨基酸显然在髓袢和直小血管之间循环利用。为了更深入地研究乳头氨基酸转运,我们测量了从大鼠乳头分离并在体外灌注的髓袢细段中L-[(14)C]丙氨酸和[(14)C]牛磺酸的跨上皮通量。在体外的降支细段(DTL)中,两种放射性标记氨基酸的单向从浴到管腔通量往往超过单向从管腔到浴通量,尽管仅牛磺酸的差异具有统计学意义。在体外的升支细段(ATL)中,单向从管腔到浴通量往往超过单向从浴到管腔通量,尽管同样仅牛磺酸的差异具有统计学意义。这些结果与体内氨基酸明显的定向移动相一致。然而,没有一种单向通量是可饱和的或可抑制的,这一观察结果与体内从ATL的明显重吸收相一致,但与体内从直小血管到DTL的明显移动不一致。当灌注的肾小管段两侧放射性标记氨基酸浓度相匹配时,没有净主动跨上皮转运的证据。这些数据表明,体内氨基酸移动的调节可能涉及直小血管,而非髓袢的DTL。数据还表明,髓袢细段中氨基酸的跨上皮移动可能通过细胞旁途径发生。

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