首页> 外文OA文献 >Coupling of dual acid extrusion in the guinea-pig isolated ventricular myocyte to alpha 1- and beta-adrenoceptors.
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Coupling of dual acid extrusion in the guinea-pig isolated ventricular myocyte to alpha 1- and beta-adrenoceptors.

机译:豚鼠离体的心室肌细胞中双酸挤出与α1和β肾上腺素能受体的耦合。

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摘要

1. Intracellular pH (pHi) was recorded in single, isolated guinea-pig ventricular myocytes using the pH-sensitive fluorophore, carboxy-SNARF-1 (AM-loaded). 2. The dual acid extrusion system in this cell (Na(+)-H+ antiport and Na(+)-HCO3- symport) was activated by inducing an intracellular acid load, produced by addition and subsequent removal of extracellular 10 mM NH4Cl. Under these conditions, it is known that both acid-equivalent extruders are activated about equally. 3. Application of phenylephrine (100 microM; alpha-adrenergic agonist) resulted in an inhibition of pHi recovery from an acid load, recorded in HCO3-buffered medium containing 1.5 mM amiloride (amiloride inhibits Na(+)-H+ antiport; under these conditions pHi recovery is mediated through only the Na(+)-HCO3- symport carrier). This inhibitory effect of phenylephrine was prevented by the alpha 1-antagonist, prazosin (0.1 microM) and was unaffected by propranolol (1 microM). 4. Application of phenylephrine in Hepes-buffered medium (only Na(+)-H+ antiport is active under these conditions) elicited a stimulation of pHi recovery, again prevented by prazosin (0.1 microM). 5. These results point to an alpha 1 inhibition of Na(+)-HCO3- symport and an alpha 1 stimulation of Na+-H+ antiport. 6. Both adrenaline (1-5 microM) and noradrenaline (5 microM) slowed pHi recovery recorded in HCO3(-)-buffered solution containing amiloride (1.5 mM). The similarity of this result with that obtained previously using phenylephrine (paragraph 3) suggests that all three agonists inhibit the Na(+)-HCO3- symport through alpha 1 activation. 7. Isoprenaline (1 microM; beta-adrenergic agonist) slowed pHi recovery in Hepes-buffered solution but stimulated recovery in a HCO3(-)-buffered solution containing amiloride (1.5 mM). These results suggest that beta activation slows Na(+)-H+ antiport but stimulates Na(+)-HCO3- symport. 8. When both acid-equivalent extrusion carriers were inhibited in Na(+)-free, HCO3(-)-buffered medium, phenylephrine or isoprenaline had no effect on pHi, ruling out any effect of the adrenergic agonists on background acid-loading mechanisms. 9. Under physiological conditions (CO2/HCO3(-)-buffered solution, no amiloride), when both acid extruders would be activated by an intracellular acid load, application of phenylephrine, adrenaline or noradrenaline were found to slow pHi recovery. In contrast, isoprenaline stimulated pHi recovery under the same conditions.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.使用对pH敏感的荧光团羧基SNARF-1(AM加载)在单个分离的豚鼠心室肌​​细胞中记录细胞内pH(pHi)。 2.通过诱导细胞内酸负荷激活该细胞中的双酸挤出系统(Na(+)-H +反向转运和Na(+)-HCO3-对称转运),该负荷是通过添加和随后去除细胞外10 mM NH4Cl产生的。在这些条件下,已知两个当量酸的挤出机被大致相等地活化。 3.苯肾上腺素(100 microM;α-肾上腺素激动剂)的应用导致抑制了酸负荷下pHi的恢复,记录在含有1.5 mM阿米洛利的HCO3缓冲介质中(阿米洛利抑制Na(+)-H +反向转运;在这些条件下) pHi恢复仅通过Na(+)-HCO3-对称载体介导。苯肾上腺素的这种抑制作用被α1-拮抗剂prazosin(0.1 microM)阻止,而不受心得安(1 microM)的影响。 4.苯肾上腺素在Hepes缓冲液中的应用(在这些条件下仅Na(+)-H +反向转运是有活性的)引起pHi恢复的刺激,再次被哌唑嗪(0.1 microM)阻止。 5.这些结果表明Na(-)-HCO 3-共价的α1抑制和Na + -H +逆向的α1刺激。 6.在含有阿米洛利(1.5 mM)的HCO3(-)缓冲溶液中记录的肾上腺素(1-5 microM)和去甲肾上腺素(5 microM)均减慢了pHi恢复。该结果与先前使用去氧肾上腺素所获得的结果相似(第3段)表明,所有三种激动剂均通过α1激活抑制Na(+)-HCO 3-共价。 7.异丙肾上腺素(1 microM;β-肾上腺素能激动剂)减慢了Hepes缓冲溶液中pHi的回收率,但刺激了含有阿米洛利(1.5 mM)的HCO3(-)缓冲溶液中的pHi恢复。这些结果表明,β激活减慢了Na(+)-H +的反向转运,但刺激了Na(+)-HCO3-的同向转运。 8.当两种酸当量的挤出载体均在无Na(+),HCO3(-)缓冲的介质中被抑制时,去氧肾上腺素或异丙肾上腺素对pHi没有影响,排除了肾上腺素能激动剂对背景酸加载机制的任何影响。 9.在生理条件下(CO2 / HCO3(-)缓冲溶液,无阿米洛利),当两个酸挤出机都被细胞内酸负荷激活时,发现使用去氧肾上腺素,肾上腺素或去甲肾上腺素会减慢pHi的恢复。相反,在相同条件下,异丙肾上腺素刺激了pHi的恢复(摘要截断了400个单词)

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