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Effects of acidosis on resting cytosolic and mitochondrial Ca2+ in mammalian myocardium

机译:酸中毒对哺乳动物心肌细胞胞浆和线粒体Ca2 +的影响

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摘要

Acidosis increases resting cytosolic [Ca2+], (Cai) of myocardial preparations; however, neither the Ca2+ sources for the increase in Cai nor the effect of acidosis on mitochondrial free [Ca2+], (Cam) have been characterized. In this study cytosolic pH (pHi) was monitored in adult rat left ventricular myocytes loaded with the acetoxymethyl ester (AM form) of SNARF-1. A stable decrease in the pHi of 0.52 +/- 0.05 U (n = 16) was obtained by switching from a bicarbonate buffer equilibrated with 5% CO2 to a buffer equilibrated with 20% CO2. Electrical stimulation at either 0.5 or 1.5 Hz had no effect on pHi in 5% CO2, nor did it affect the magnitude of pHi decrease in response to hypercarbic acidosis. Cai was measured in myocytes loaded with indo- 1/free acid and Cam was monitored in cells loaded with indo-1/AM after quenching cytosolic indo-1 fluorescence with MnCl2. In quiescent intact myocytes bathed in 1.5 mM [Ca2+], hypercarbia increased Cai from 130 +/- 5 to 221 +/- 13 nM. However, when acidosis was effected in electrically stimulated myocytes, diastolic Cai increased more than resting Cai in quiescent myocytes, and during pacing at 1.5 Hz diastolic Cai was higher (285 +/- 17 nM) than at 0.5 Hz (245 +/- 18 nM; P < 0.05). The magnitude of Cai increase in quiescent myocytes was not affected either by sarcoplasmic reticulum (SR) Ca2+ depletion with ryanodine or by SR Ca2+ depletion and concomitant superfusion with a Ca(2+)-free buffer. In unstimulated intact myocytes hypercarbia increased Cam from 95 +/- 12 to 147 +/- 19 nM and this response was not modified either by ryanodine and a Ca(2+)-free buffer or by 50 microM ruthenium red in order to block the mitochondrial uniporter. In mitochondrial suspensions loaded either with BCECF/AM or indo-1/AM, acidosis produced by lactic acid addition decreased both intra- and extramitochondrial pH and increased Cam. Studies of mitochondrial suspensions bathed in indo- 1/free acid-containing solution showed an increase in extramitochondrial Ca2+ after the addition of lactic acid. Thus, in quiescent myocytes, cytoplasmic and intramitochondrial buffers, rather than transsarcolemmal Ca2+ influx or SR Ca2+ release, are the likely Ca2+ sources for the increase in Cai and Cam, respectively; additionally, Ca2+ efflux from the mitochondria may contribute to the raise in Cai. In contrast, in response to acidosis, diastolic Cai in electrically stimulated myocytes increases more than resting Cai in quiescent cells; this suggests that during pacing, net cell Ca2+ gain contributes to enhance diastolic Cai.
机译:酸中毒会增加心肌制剂的静息胞质[Ca2 +](Cai);然而,既没有表征Ca增加的Ca 2+来源,也没有酸中毒对线粒体游离[Ca 2+](Cam)的影响。在这项研究中,对成年大鼠左心室肌细胞中SNARF-1的乙酰氧甲基酯(AM形式)的胞浆pH值(pHi)进行监测。通过从用5%CO2平衡的碳酸氢盐缓冲液切换到用20%CO2平衡的缓冲液,可以使pHi稳定降低0.52 +/- 0.05 U(n = 16)。 0.5或1.5 Hz的电刺激对5%CO2中的pHi无影响,也不会影响因高碳酸中毒引起的pHi降低幅度。在负载有indo-1 /游离酸的心肌细胞中测量Cai,在用MnCl2淬灭胞质indo-1荧光后,在装有indo-1 / AM的细胞中监测Cam。在1.5 mM [Ca2 +]中浸泡的静止完整心肌细胞中,高碳酸血症将Cai从130 +/- 5增加到221 +/- 13 nM。但是,当在电刺激的心肌细胞中发生酸中毒时,静态心肌细胞的舒张期Cai比静息Cai升高更多,并且在1.5 Hz起搏期间,舒张期Cai比0.5 Hz(245 +/- 18)更高(285 +/- 17 nM)。 nM; P <0.05)。静止肌细胞中Cai增加的幅度不受肌浆网(SR)Ca2 +耗尽与雷诺丁的影响或不受SR Ca2 +消耗以及伴随无Ca(2+)的缓冲液的伴随灌注的影响。在未刺激的完整肌细胞中,高碳酸血症将Cam从95 +/- 12 nM增加到147 +/- 19 nM,并且该反应未被ryanodine和无Ca(2+)的缓冲液或50 microM钌红修饰,以阻止细胞凋亡。线粒体单向转运蛋白。在装载有BCECF / AM或indo-1 / AM的线粒体悬浮液中,添加乳酸会导致酸中毒,降低线粒体内和线粒体pH值,并增加Cam。浸入含吲哚-1 /游离酸的溶液中的线粒体悬浮液的研究表明,添加乳酸后线粒体Ca2 +含量增加。因此,在静止的心肌细胞中,胞质和线粒体内的缓冲液,而不是经跨膜膜的Ca2 +流入或SR Ca2 +释放,分别是Cai和Cam增加的可能的Ca2 +来源。另外,来自线粒体的Ca2 +外排可能会促进Cai的升高。相反,对酸中毒的反应是,电刺激的心肌细胞中的舒张期Cai比静止细胞中的静止Cai增加更多。这表明在起搏过程中,净细胞Ca2 +的增加有助于增强舒张期Cai。

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