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Preservation of vascular function in rat mesenteric resistance arteries following cold storage studied by small vessel myography

机译:小血管肌电图研究冷藏后大鼠肠系膜阻力动脉的血管功能保存

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摘要

class="enumerated" style="list-style-type:decimal">The use of isolated blood vessels to investigate the physiological and pharmacological control of the vasculature is limited by the requirement to use freshly isolated vessels. Hence, the aim of this study was to determine whether vascular smooth muscle and endothelial cell function could be preserved in resistance arteries by storing them in physiological salt solution (PSS) at 4°C.Third order mesenteric resistance arteries (mean internal diameter 237±6 μm) were dissected from the mesenteric bed of male Cob-Wistar rats. The vessel segments were mounted in a small vessel myograph for measurement of isometric tension, and equilibrated at their optimum resting force. Contractile responses to noradrenaline (NA; 1×10−9–3×10−5 M), phenylephrine (PE, 1×10−9–3×10−5 M), potassium chloride (KCl; 2.5–140 mM) and endothelin (ET-1, 1×10−11–3×10−7 M) and relaxant responses to acetylcholine (ACh; 1×10−9–3×10−5 M) and 3-morpholinosydnonimine (SIN-1; 1×10−9–1×10−4 M) were obtained in arteries, immediately after dissection (day 0) and following one to four days storage (day 1–day 4).All arteries produced concentration-dependent contractions in response to each of the vasoconstrictors. There were no significant differences in the magnitude or sensitivity (pD2) of the vasoconstrictor responses between fresh and stored vessels.Arteries precontracted with NA to approximately 80% of the maximum response, relaxed in a concentration-dependent manner in response to ACh and SIN-1. Vessel storage for up to three days resulted in no change in response to ACh or SIN-1.Vessels analysed after four days of storage demonstrated a significant increase in sensitivity to ACh and SIN-1 (−logIC50 (M) values; ACh; day 0, 7.46±0.13 vs day 4, 7.97±0.11, P<0.01 and SIN-1; day 0, 4.87±0.10 vs day 4, 5.52±0.08, P<0.01). There was also a significant increase in the maximum relaxant response to ACh after four days of storage (% relaxation; day 0, 92.65±2.84 vs day 4, 100.36±0.36, P<0.05).These results demonstrate that small resistance arteries remain viable if stored in PSS at 4°C for up to four days, with no loss in endothelial cell function. The altered sensitivity to the vasodilators on day 4 suggests that vessels should only be stored for up to three days following dissection for analysis of functional responses.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 使用分离的血管来研究脉管系统的生理和药理控制受到使用新鲜分离的血管的要求的限制。因此,本研究的目的是确定在4°C的生理盐溶液(PSS)中储存血管平滑肌和内皮细胞功能是否可以在抵抗性动脉中保存。 肠系膜三阶抗性从雄性Cob-Wistar大鼠的肠系膜床解剖动脉(平均内径237±6μm)。将血管段安装在小型血管肌张力计中,以测量等轴测张力,并在其最佳静力下平衡。对去甲肾上腺素(NA; 1×10 −9 –3×10 −5 M),去氧肾上腺素(PE,1×10 −9 –3×10 −5 M),氯化钾(KCl; 2.5–140 mM)和内皮素(ET-1,1×10 −11 –3×10) −7 M)和对乙酰胆碱(ACh; 1×10 −9 –3×10 −5 M)和3-吗啉代亚胺的松弛反应在解剖后(第0天)和随后的第1-4天立即在动脉中获得(SIN-1; 1×10 −9 –1×10 −4 M)储存(第1天至第4天)。 所有动脉均对每种血管收缩剂产生浓度依赖性的收缩。新鲜血管和储存血管之间的血管收缩反应的大小或敏感性(pD2)均无显着差异。 预先用NA收缩至最大反应约80%的动脉以浓度依赖性方式舒张响应ACh和SIN-1。储存最多三天的容器对ACh或SIN-1的响应没有变化。 储存四天后分析的容器显示出对ACh和SIN-1的敏感性显着提高(-logIC50( M)值; ACh;第0天,第7.46±0.13天,第4天,7.97±0.11,P <0.01和SIN-1;第0天,第4.87±0.10天,第4天,5.52±0.08,P <0.01)。储存四天后,对ACh的最大松弛反应也显着增加(松弛%;第0天为92.65±2.84,而第4天为100.36±0.36,P <0.05)。 这些结果证明如果将小阻力动脉在4°C的PSS中保存长达四天,内皮细胞仍将保持活力。在第4天,对血管扩张剂的敏感性改变,表明血管只应在解剖后最多保存三天,以分析功能反应。

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