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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Incubation in tissue culture media allows isolated rabbit proximal tubules to regain in-vivo-like transport function: response of HCO3-absorption to norepinephrine.
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Incubation in tissue culture media allows isolated rabbit proximal tubules to regain in-vivo-like transport function: response of HCO3-absorption to norepinephrine.

机译:在组织培养基中孵育可使分离的兔近端小管恢复体内样转运功能:HCO3吸收对去甲肾上腺素的反应。

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摘要

Using a new stop-flow perfusion technique with microspectrofluorometric determination of luminal fluid pH, we have studied which substrates or incubation conditions allow isolated rabbit proximal tubules to attain in-vivo-like rates of HCO3- absorption (J(HCO3)) and maximal responses of J(HCO3) to norepinephrine (NE). Essentially three incubation media were tested: plasma-like HCO(3-)-Ringer solution containing 5 mmol/l D-glucose (G-Ringer sol.), the same solution also containing 10 mmol/l lactate and 5 mmol/l L-alanine, (LAG-Ringer sol.), and two tissue culture media (DMEM and RPMI 1640). Compared to G-Ringer sol., application of LAG-Ringer sol. in the bath and/or lumen, or application of DMEM or RPMI 1640 in the bath either slightly increased or decreased J(HCO3) with borderline significance. However, RPMI 1640 plus 1 mmol/l pyruvate stimulated J(HCO3) by 55%. While NE (10(-5) mol/l), if applied in G-Ringer sol., had no effect, in the presence of LAG-Ringer sol. it increased J(HCO3) by approximately =40%, and in the presence of DMEM or RPMI 1640 it increased J(HCO3) by approximately =100%. This stimulation by NE followed Michaelis-Menten kinetics with an EC50 value of 0.25 micromol/l and was probably mediated by alpha1-adrenergic receptors. Additional cell pH measurements suggest that NE stimulates the basolateral Na+-HCO3- cotransporter which then becomes susceptible to inhibition by cAMP. We conclude that incubation in tissue culture media allows isolated proximal tubules to maintain a better functional state than the commonly used solutions with unphysiologically high substrate concentrations.
机译:我们使用新的停止流灌注技术和微量荧光法测定腔液pH,我们研究了哪些底物或孵育条件允许离体的兔近端小管达到体内样的HCO3-吸收速率(J(HCO3))和最大响应J(HCO3)对去甲肾上腺素(NE)的影响。基本上测试了三种温育介质:含有5 mmol / l D-葡萄糖的血浆样HCO(3-)-Ringer溶液(G-Ringer sol。),同样包含10 mmol / l乳酸和5 mmol / l L的溶液-丙氨酸(LAG-Ringer sol。)和两种组织培养基(DMEM和RPMI 1640)。与G-Ringer溶胶相比,LAG-Ringer溶胶的应用。在浴和/或内腔中使用DMEM或RPMI 1640可能会略有增加或减少J(HCO3)的临界值。但是,RPMI 1640加1 mmol / l丙酮酸可将J(HCO3)刺激55%。而NE(10(-5)mol / l),如果在G-Ringer溶胶中使用,则在LAG-Ringer溶胶存在下没有作用。它使J(HCO3)增加约= 40%,在DMEM或RPMI 1640存在的情况下,J(HCO3)增加约= 100%。 NE的这种刺激遵循Michaelis-Menten动力学,其EC50值为0.25 micromol / l,可能是由α1-肾上腺素能受体介导的。额外的细胞pH测量表明,NE刺激了基底外侧Na + -HCO3-协同转运蛋白,然后变得易于被cAMP抑制。我们得出的结论是,在组织培养基中进行孵育可以使分离的近端小管保持比通常使用的具有非生理性高底物浓度的溶液更好的功能状态。

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