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鲫鱼心脏的窦房组织对自主神经激动剂仅产生负性收缩反应。

Sinoatrial tissue of crucian carp heart has only negative contractile responses to autonomic agonists.

作者信息

Vornanen Matti, Hälinen Mervi, Haverinen Jaakko

机构信息

Department of Biology, University of Eastern Finland, 80101 Joensuu, Finland.

出版信息

BMC Physiol. 2010 Jun 11;10:10. doi: 10.1186/1472-6793-10-10.

Abstract

BACKGROUND

In the anoxia-tolerant crucian carp (Carassius carassius) cardiac activity varies according to the seasons. To clarify the role of autonomic nervous control in modulation of cardiac activity, responses of atrial contraction and heart rate (HR) to carbacholine (CCh) and isoprenaline (Iso) were determined in fish acclimatized to winter (4 degrees C, cold-acclimated, CA) and summer (18 degrees C, warm-acclimated, WA) temperatures.

RESULTS

Inhibitory action of CCh was much stronger on atrial contractility than HR. CCh reduced force of atrial contraction at an order of magnitude lower concentrations (EC50 2.75-3.5.10-8 M) in comparison to its depressive effect on HR (EC50 1.23-2.02.10-7 M) (P < 0.05) without differences between winter and summer acclimatized fish. Inhibition of nitric oxide synthase with 100 microM L-NMMA did not change the response of the sinoatrial tissue to CCh. Reduction of atrial force was associated with a strong shortening of action potential (AP) duration to approximately 50% (48 +/- 10 and 50 +/- 6% for CA and WA fish, respectively) and 11% (11 +/- 3 and 11 +/- 2% for CA and WA fish, respectively) of the control value at 3.10-8 M and 10-7 M CCh, respectively (P < 0.05). In atrial myocytes, CCh induced an inwardly rectifying K+ current, IK,CCh, with an EC50 value of 3-4.5.10-7 M and inhibited Ca2+ current (ICa) by 28 +/- 8% and 51 +/- 6% at 10-7 M and 10-6 M, respectively. These currents can explain the shortening of AP. Iso did not elicit any responses in crucian carp sinoatrial preparations nor did it have any effect on atrial ICa, probably due to the saturation of the beta-adrenergic cascade in the basal state.

CONCLUSION

In the crucian carp, HR and force of atrial contraction show cardio-depressive responses to the cholinergic agonist, but do not have any responses to the beta-adrenergic agonist. The scope of inhibitory regulation by CCh is increased by the high basal tone of the adenylate cyclase-cAMP cascade. Higher concentrations of CCh were required to induce IK,CCh and inhibit ICa than was needed for CCh's negative inotropic effect on atrial muscle suggesting that neither IK,CCh nor ICa alone can mediate CCh's actions but they might synergistically reduce AP duration and atrial force production. Autonomic responses were similar in CA winter fish and WA summer fish indicating that cardiac sensitivity to external modulation by the autonomic nervous system is not involved in seasonal acclimatization of the crucian carp heart to cold and anoxic winter conditions.

摘要

背景

耐缺氧鲫鱼(Carassius carassius)的心脏活动随季节变化。为阐明自主神经控制在调节心脏活动中的作用,我们测定了适应冬季(4℃,冷适应,CA)和夏季(18℃,热适应,WA)温度的鲫鱼心房收缩和心率(HR)对卡巴胆碱(CCh)和异丙肾上腺素(Iso)的反应。

结果

CCh对心房收缩力的抑制作用比对HR的抑制作用强得多。与对HR的抑制作用(EC50 1.23 - 2.02×10⁻⁷ M)相比,CCh在低一个数量级的浓度(EC50 2.75 - 3.5×10⁻⁸ M)时就降低了心房收缩力(P < 0.05),冷适应和热适应的鱼之间无差异。用100 μM L - NMMA抑制一氧化氮合酶并未改变窦房组织对CCh的反应。心房力的降低与动作电位(AP)持续时间强烈缩短有关,在3×10⁻⁸ M和10⁻⁷ M CCh时分别缩短至对照值的约50%(CA和WA鱼分别为48 ± 10%和50 ± 6%)和11%(CA和WA鱼分别为11 ± 3%和11 ± 2%)(P < 0.05)。在心房肌细胞中,CCh诱导内向整流钾电流IK,CCh,其EC50值为3 - 4.5×10⁻⁷ M,在10⁻⁷ M和10⁻⁶ M时分别抑制钙电流(ICa)28 ± 8%和51 ± 6%。这些电流可以解释AP的缩短。Iso在鲫鱼窦房制备物中未引起任何反应,对心房ICa也无任何影响,可能是由于基础状态下β - 肾上腺素能级联反应饱和。

结论

在鲫鱼中,HR和心房收缩力对胆碱能激动剂表现出心脏抑制反应,但对β - 肾上腺素能激动剂无任何反应。腺苷酸环化酶 - cAMP级联反应的高基础张力增加了CCh的抑制调节范围。诱导IK,CCh和抑制ICa所需的CCh浓度高于CCh对心房肌负性肌力作用所需的浓度,这表明IK,CCh和ICa单独都不能介导CCh的作用,但它们可能协同降低AP持续时间和心房力的产生。冷适应冬季鱼和热适应夏季鱼的自主反应相似,表明自主神经系统对心脏的外部调节敏感性不参与鲫鱼心脏对寒冷和缺氧冬季条件的季节性适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8772/2894799/1c37df7f569f/1472-6793-10-10-1.jpg

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