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美洲螯龙虾心脏在伸展过程中产生的力是各向异性的,并且会被神经调质改变。

Forces generated during stretch in the heart of the lobster Homarus americanus are anisotropic and are altered by neuromodulators.

作者信息

Dickinson E S, Johnson A S, Ellers O, Dickinson P S

机构信息

Biology Department, Bowdoin College, 6500 College Station, Brunswick, ME 04011, USA.

Biology Department, Bowdoin College, 6500 College Station, Brunswick, ME 04011, USA

出版信息

J Exp Biol. 2016 Apr 15;219(Pt 8):1187-202. doi: 10.1242/jeb.135657. Epub 2016 Feb 19.

Abstract

Mechanical and neurophysiological anisotropies mediate three-dimensional responses of the heart of ITALIC! Homarus americanus Although hearts ITALIC! in vivoare loaded multi-axially by pressure, studies of invertebrate cardiac function typically use uniaxial tests. To generate whole-heart length-tension curves, stretch pyramids at constant lengthening and shortening rates were imposed uniaxially and biaxially along longitudinal and transverse axes of the beating whole heart. To determine whether neuropeptides that are known to modulate cardiac activity in ITALIC! H. americanusaffect the active or passive components of these length-tension curves, we also performed these tests in the presence of SGRNFLRFamide (SGRN) and GYSNRNYLRFamide (GYS). In uniaxial and biaxial tests, both passive and active forces increased with stretch along both measurement axes. The increase in passive forces was anisotropic, with greater increases along the longitudinal axis. Passive forces showed hysteresis and active forces were higher during lengthening than shortening phases of the stretch pyramid. Active forces at a given length were increased by both neuropeptides. To exert these effects, neuropeptides might have acted indirectly on the muscle via their effects on the cardiac ganglion, directly on the neuromuscular junction, or directly on the muscles. Because increases in response to stretch were also seen in stimulated motor nerve-muscle preparations, at least some of the effects of the peptides are likely peripheral. Taken together, these findings suggest that flexibility in rhythmic cardiac contractions results from the amplified effects of neuropeptides interacting with the length-tension characteristics of the heart.

摘要

机械和神经生理各向异性介导了美洲螯龙虾心脏的三维反应。尽管美洲螯龙虾的心脏在体内受到多轴压力加载,但对无脊椎动物心脏功能的研究通常采用单轴测试。为了生成全心的长度-张力曲线,在跳动的全心的纵向和横向轴上分别进行单轴和双轴拉伸试验,以恒定的伸长和缩短速率施加拉伸金字塔。为了确定已知调节美洲螯龙虾心脏活动的神经肽是否影响这些长度-张力曲线的主动或被动成分,我们还在SGRNFLRFamide(SGRN)和GYSNRNYLRFamide(GYS)存在的情况下进行了这些测试。在单轴和双轴测试中,被动和主动力都随着沿两个测量轴的拉伸而增加。被动力的增加是各向异性的,沿纵向轴的增加更大。被动力表现出滞后现象,在拉伸金字塔的伸长阶段主动力高于缩短阶段。两种神经肽都增加了给定长度下的主动力。为了发挥这些作用,神经肽可能通过对心脏神经节的作用间接作用于肌肉,直接作用于神经肌肉接头,或直接作用于肌肉。因为在受刺激的运动神经-肌肉制剂中也观察到对拉伸的反应增加,所以这些肽的至少一些作用可能是外周性的。综上所述,这些发现表明,节律性心脏收缩的灵活性源于神经肽与心脏长度-张力特性相互作用的放大效应。

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