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Metabolism and force in hypertrophic smooth muscle from rat urinary bladder.

作者信息

Arner A, Malmqvist U, Uvelius B

机构信息

Department of Physiology, Lund University, Sweden.

出版信息

Am J Physiol. 1990 May;258(5 Pt 1):C923-32. doi: 10.1152/ajpcell.1990.258.5.C923.

DOI:10.1152/ajpcell.1990.258.5.C923
PMID:2333984
Abstract

Ten days of urinary outlet obstruction in the rat induced a threefold increase in bladder weight. Active force of control and hypertrophic bladder muscle strips was measured at varying PO2 levels after high-K+, carbachol, or electrical field stimulation. Highest force output was obtained with carbachol. Force per muscle area was lower in the hypertrophic muscles. The basal rates of oxygen consumption and lactate formation were similar in the two groups. The metabolic tension cost (ATP turnover/active force) was similar in the two groups for activation with high K+ and carbachol. In anoxia the active force decreased, but this was less pronounced in the hypertrophied muscle. Hypertrophied muscle could, in contrast to the controls, maintain a sustained K+ contracture in anoxia. Basal metabolic rates and tension cost were markedly reduced in anoxia for both groups. The lower force per area with unaltered tension cost, in hypertrophic muscles under all experimental conditions, may reflect unaltered intrinsic properties of the contractile system, although the amount of contractile material has decreased relative to cell volume. The increased resistance to anoxia may reflect a metabolic adaptation to impaired oxygen supply to the hypertrophied tissue.

摘要

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引用本文的文献

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HIF-mediated metabolic switching in bladder outlet obstruction mitigates the relaxing effect of mitochondrial inhibition.
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Smooth, slow and smart muscle motors.平滑、慢速且智能的肌肉马达。 (不过原英文表述可能不太准确规范,正常应该是“Smooth, slow and smart muscle motors”这样的组合在语义上不太符合常见逻辑,推测可能有误,也许是“Smooth, slow and strong muscle motors”,即“平滑、慢速且强劲的肌肉马达” )
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