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高碳酸血症性酸中毒会降低豹纹翼甲鲶心室的收缩功能。

Hypercapnic acidosis reduces contractile function in the ventricle of the armored catfish, Pterygoplichthys pardalis.

作者信息

Shiels H A, Santiago D A, Galli G L J

机构信息

Faculty of Life Sciences, University of Manchester, Manchester M13 9PL, United Kingdom.

出版信息

Physiol Biochem Zool. 2010 Mar-Apr;83(2):366-75. doi: 10.1086/644759.

Abstract

The armored catfish, Pterygoplichthys pardalis (formerly Liposarcus pardalis), is a freshwater, facultative air-breathing teleost that experiences seasonal hypercapnia in the water systems of South America. We studied the tolerance of the P. pardalis heart to hypercapnic acidosis using an isolated ventricular muscle strip preparation. Force generation and kinetic variables were examined across a range of contraction frequencies under normocapnic and hypercapnic conditions in the absence and presence of sarcoplasmic reticulum (SR) inhibitors. Pterygoplichthys pardalis ventricle exhibited robust contractile force, on par with athletic fish species such as trout and tuna and a relatively flat force-frequency relationship between 0.2 and 1.5 Hz under normocapnic conditions (1% CO2, pH 7.78 +/- 0.02). Hypercapnic acidosis (7.5% CO2, pH 7.78 +/- 0.03) did not alter the shape of the force-frequency response but reduced force by approximately 50% across all frequencies tested, with only partial recovery upon return to normocapnic conditions. A subsequent and more severe acidotic challenge (15% CO2, pH 6.77 +/- 0.05) caused an additional 20% decrease in force. Force recovered to the level at which it had stablized after the first hypercapnic insult. SR inhibition had no steady state effect on force production at 0.2 Hz but resulted in a negative force-frequency relationship, suggesting that SR Ca2+ is recruited to a greater extent at high contraction frequencies. Surprisingly, SR-inhibited muscle was more resistant to hypercapnic acidosis (force decreased by approximately 40% across all frequencies) and displayed improved recovery upon return to normocapnic conditions. The significance of this latter finding is not clear. In aggregate, our results demonstrate robust contractile force, which extends across a range of frequencies and appears to be supported by SR Ca2+ cycling. Hypercapnic acidosis reduced contractile force but may provide preconditioning-like protection from subsequent insults.

摘要

铠甲鲶鱼(Pterygoplichthys pardalis,曾用名Liposarcus pardalis)是一种淡水硬骨鱼,能够进行兼性空气呼吸,在南美洲的水系中会经历季节性高碳酸血症。我们使用离体心室肌条制备方法研究了铠甲鲶鱼心脏对高碳酸性酸中毒的耐受性。在常碳酸血症和高碳酸血症条件下,于有无肌浆网(SR)抑制剂的情况下,在一系列收缩频率下检测了力的产生和动力学变量。铠甲鲶鱼心室表现出强大的收缩力,与鳟鱼和金枪鱼等运动型鱼类相当,在常碳酸血症条件下(1%二氧化碳,pH 7.78±0.02),在0.2至1.5 Hz之间具有相对平坦的力-频率关系。高碳酸性酸中毒(7.5%二氧化碳,pH 7.78±0.03)并未改变力-频率响应的形状,但在所有测试频率下使力降低了约50%,恢复到常碳酸血症条件后仅部分恢复。随后更严重的酸中毒刺激(15%二氧化碳,pH 6.77±0.05)导致力额外降低20%。力恢复到第一次高碳酸血症损伤后稳定的水平。SR抑制在0.2 Hz时对力的产生没有稳态影响,但导致了负的力-频率关系,表明在高收缩频率下SR Ca2+的募集程度更高。令人惊讶的是,SR抑制的肌肉对高碳酸性酸中毒更具抵抗力(在所有频率下力降低约40%),并且在恢复到常碳酸血症条件时显示出更好的恢复。后一发现的意义尚不清楚。总体而言,我们的结果表明存在强大的收缩力,其在一系列频率范围内存在,并且似乎由SR Ca2+循环支持。高碳酸性酸中毒降低了收缩力,但可能提供类似预处理的保护以抵御后续损伤。

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