首页> 外文期刊>American Journal of Physiology >Ouabain-sensitive bicarbonate secretion and acid absorption by the marine teleost fish intestine play a role in osmoregulation.
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Ouabain-sensitive bicarbonate secretion and acid absorption by the marine teleost fish intestine play a role in osmoregulation.

机译:海洋硬骨鱼肠对瓦巴因敏感的碳酸氢盐分泌和酸吸收在渗透调节中起作用。

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摘要

The gulf toadfish (Opsanus beta) intestine secretes base mainly in the form of HCO3- via apical anion exchange to serve Cl- and water absorption for osmoregulatory purposes. Luminal HCO3- secretion rates measured by pH-stat techniques in Ussing chambers rely on oxidative energy metabolism and are highly temperature sensitive. At 25 degrees C under in vivo-like conditions, secretion rates averaged 0.45 micromol x cm(-2) x h(-1), of which 0.25 micromol x cm(-2) x h(-1) can be accounted for by hydration of endogenous CO2 partly catalyzed by carbonic anhydrase. Complete polarity of secretion of HCO3- and H+ arising from the CO2 hydration reaction is evident from equal rates of luminal HCO3- secretion via anion exchange and basolateral H+ extrusion. When basolateral H+ extrusion is partly inhibited by reduction of serosal pH, luminal HCO3- secretion is reduced. Basolateral H+ secretion occurs in exchange for Na+ via an ethylisopropylamiloride-insensitive mechanism and is ultimately fueled by the activity ofthe basolateral Na+-K+-ATPase. Fluid absorption by the toadfish intestine to oppose diffusive water loss to the concentrated marine environment is accompanied by a substantial basolateral H+ extrusion, intimately linking osmoregulation and acid-base balance.
机译:海湾蟾蜍鱼(Opsanus beta)的肠道主要通过顶端阴离子交换以HCO3-的形式分泌碱基,从而为渗透压调节目的提供Cl-和水的吸收。通过Ussing室中的pH值统计技术测量的发光HCO3-分泌速率依赖于氧化能代谢,并且对温度高度敏感。在25摄氏度的体内类似条件下,分泌率平均为0.45 micromol x cm(-2)xh(-1),其中0.25 micromol x cm(-2)xh(-1)可以通过水合来解决内源性CO2部分被碳酸酐酶催化。通过阴离子交换和基底外侧H +挤出,腔内HCO3-的分泌速率相等,可以证明由CO2水合反应引起的HCO3-和H +分泌的完全极性。当降低浆膜pH值可部分抑制基底外侧H +挤出时,腔内HCO3-的分泌减少。基底外侧H +分泌通过对乙基异丙基阿米洛利不敏感的机制交换Na +而发生,并最终由基底外侧Na +-K + -ATPase的活性提供动力。蟾蜍肠道吸收液体以防止扩散水流向集中的海洋环境,同时伴随着大量的基底外侧H +挤出,将渗透压和酸碱平衡紧密地联系在一起。

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