Stephens N L, Mitchell R W
J Appl Physiol Respir Environ Exerc Physiol. 1977 Mar;42(3):408-12. doi: 10.1152/jappl.1977.42.3.408.
Previous work in our laboratory has shown that respiratory acidosis (RA) impaired mechanical function in canine tracheal smooth muscle (TSM). Since an intracellular acidosis could be brought on by the increased CO2 content of the bathing medium and alter the Km's of rate-limiting glycolytic enzymes in the pathway of energy production for contractile function, we have investigated the effects of RA on the intracellular pH (pHi) of TSM. Using the DMO method, paired unstimulated or resting TSM strips were incubated under normocapnic conditions (PO2 600 Torr, PCO2 40 Torr, pH 7.40) and RA (PO2 550 Torr, PCO2 110 Torr, pH 6.95) with 14C-labeled DMO and 3H-labeled inulin or PEG-4000. In another set of paired experiments, TSM strips were tetanized electrically every 5 min or pharmacologically throughout the incubation period ("active" muscle strips). The tissue and an aliquot of bathing medium were counted for 3H and 14C content and the values entered into the Wadell and Butler equation. The pHi's of "resting" normocapnic and acidotic strips were 7.041 +/- 0.017 (SE) and 6.752 +/- 0.012, respectively. However, the pHi's of "active" normocapnic and acidotic strips were 7.275 +/- 0.017 and 7.017 +/- 0.015, respectively. We conclude that respiratory acidosis lowers intracellular pH in both resting and mechanically active TSM's; however, "active" preparations whether exposed to normocapnia or acidosis were unexpectedly more alkaline than their "resting" counterparts.
我们实验室之前的研究表明,呼吸性酸中毒(RA)会损害犬气管平滑肌(TSM)的机械功能。由于浴液中二氧化碳含量增加可导致细胞内酸中毒,并改变收缩功能能量产生途径中限速糖酵解酶的米氏常数,因此我们研究了RA对TSM细胞内pH(pHi)的影响。使用二甲基氧乙酸(DMO)法,将成对的未刺激或静息TSM条带在常碳酸条件(PO2 600 Torr,PCO2 40 Torr,pH 7.40)和RA(PO2 550 Torr,PCO2 110 Torr,pH 6.95)下与14C标记的DMO和3H标记的菊粉或聚乙二醇-4000一起孵育。在另一组成对实验中,TSM条带在整个孵育期间每5分钟进行一次电刺激或药物刺激(“活跃”肌条)。对组织和一份浴液进行3H和14C含量计数,并将这些值代入瓦德尔和巴特勒方程。“静息”常碳酸和酸中毒条带的pHi分别为7.041±0.017(SE)和6.752±0.012。然而,“活跃”常碳酸和酸中毒条带的pHi分别为7.275±0.017和7.017±0.015。我们得出结论,呼吸性酸中毒会降低静息和机械活跃TSM中的细胞内pH;然而,无论是暴露于常碳酸还是酸中毒的“活跃”制剂,其碱性出人意料地高于“静息”对应制剂。