首页> 美国卫生研究院文献>American Journal of Physiology - Regulatory Integrative and Comparative Physiology >Cold-acclimation leads to differential regulation of the steelhead trout (Oncorhynchus mykiss) coronary microcirculation
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Cold-acclimation leads to differential regulation of the steelhead trout (Oncorhynchus mykiss) coronary microcirculation

机译:冷适应导致硬头鳟(Oncorhynchus mykiss)冠状动脉微循环的差异调节

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摘要

The regulation of vascular resistance in fishes has largely been studied using isolated large conductance vessels, yet changes in tissue perfusion/vascular resistance are primarily mediated by the dilation/constriction of small arterioles. Thus we adapted mammalian isolated microvessel techniques for use in fish and examined how several agents affected the tone/resistance of isolated coronary arterioles (<150 μm ID) from steelhead trout (Oncorhynchus mykiss) acclimated to 1, 5, and 10°C. At 10°C, the vessels showed a concentration-dependent dilation to adenosine (ADE; 61 ± 8%), sodium nitroprusside (SNP; 35 ± 10%), and serotonin (SER; 27 ± 2%) (all values maximum responses). A biphasic response (mild contraction then dilation) was observed in vessels exposed to increasing concentrations of epinephrine (EPI; 34 ± 9% dilation) and norepinephrine (NE; 32 ± 7% dilation), whereas the effect was less pronounced with bradykinin (BK; 12.5 ± 3.5% constriction vs. 6 ± 6% dilation). Finally, a mild constriction was observed after exposure to acetylcholine (ACh; 6.5 ± 1.4%), while endothelin (ET)-1 caused a strong dose-dependent increase in tone (79 ± 5% constriction). Acclimation temperature had varying effects on the responsiveness of vessels. The dilations induced by EPI, ADE, SER, and SNP were reduced/eliminated at 5°C and/or 1°C as compared with 10°C. In contrast, acclimation to 5 and 1°C increased the maximum constriction induced by ACh and the sensitivity of vessels to ET-1 (but not the maximum response) at 1°C was greater. Acclimation temperature had no effect on the response to NE, and responsiveness to BK was variable.
机译:鱼类中血管阻力的调节已使用隔离的大型电导血管进行了研究,但是组织灌注/血管阻力的变化主要是由小小动脉的扩张/收缩介导的。因此,我们调整了哺乳动物分离的微血管技术以用于鱼中,并研究了几种试剂如何影响适应于1、5和10°C的硬头鳟鱼(Oncorhynchus mykiss)分离的冠状小动脉(<150μmID)的音调/抗性。在10°C时,血管对腺苷(ADE; 61±8%),硝普钠(SNP; 35±10%)和5-羟色胺(SER; 27±2%)呈浓度依赖性扩张(所有值均显示最大反应) )。在暴露于浓度不断升高的肾上腺素(EPI; 34±9%扩张)和去甲肾上腺素(NE; 32±7%扩张)的血管中观察到双相反应(轻度收缩然后扩张),而缓激肽(BK)的影响不明显;收缩率为12.5±3.5%,而扩张度为6±6%)。最后,在暴露于乙酰胆碱(ACh; 6.5±1.4%)后观察到轻度收缩,而内皮素(ET)-1引起音调的强烈剂量依赖性增加(79±5%收缩)。适应温度对血管的反应性有不同的影响。与10°C相比,在5°C和/或1°C下,由EPI,ADE,SER和SNP引起的扩张被减少/消除。相反,适应5和1°C会增加ACh引起的最大收缩,并且在1°C时血管对ET-1的敏感性更大(但不是最大响应)。适应温度对NE的反应没有影响,对BK的反应是可变的。

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