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氟烷和异氟烷抑制内皮细胞 - 血管平滑肌共培养物中内皮源性舒张因子依赖性环磷酸鸟苷的积累,且这种抑制与对鸟苷酸环化酶激活的影响无关。

Halothane and isoflurane inhibit endothelium-derived relaxing factor-dependent cyclic guanosine monophosphate accumulation in endothelial cell-vascular smooth muscle co-cultures independent of an effect on guanylyl cyclase activation.

作者信息

Johns R A, Tichotsky A, Muro M, Spaeth J P, Le Cras T D, Rengasamy A

机构信息

Department of Anesthesiology, University of Virginia Health Sciences Center, Charlottesville 22908, USA.

出版信息

Anesthesiology. 1995 Oct;83(4):823-34. doi: 10.1097/00000542-199510000-00023.

Abstract

BACKGROUND

Interaction of inhalational anesthetics with the nitric oxide signaling pathway and the mechanism of such effects are controversial. The aim of this study was to clarify the sites and mechanism of inhalational anesthetic interaction with the vascular nitric oxide and guanylyl cyclase signaling pathway.

METHODS

To specifically study the mechanism of anesthetic interaction with the nitric oxide-guanylyl cyclase pathway, cultured vascular smooth muscle and endothelial cell-vascular smooth muscle (EC-VSM) co-culture models were chosen. Monolayer cultures of VSM with or without cultured endothelial cells grown on microcarrier beads were preequilibrated with anesthetic and stimulated with agonists. The effect of inhalational anesthetics on cyclic guanosine monophosphate (GMP) content of unstimulated VSM and of VSM in which soluble guanylyl cyclase had been activated by the endothelium-independent nitrovasodilators, sodium nitroprusside, nitroglycerin, or nitric oxide was determined. Experiments were also performed to assess the effect of inhalational anesthetics on unstimulated endothelial cell-vascular smooth muscle co-cultures and on co-cultures in which nitric oxide synthase and subsequent cyclic GMP production had been activated by the receptor-mediated agonists bradykinin and adenosine triphosphate and by the non-receptor-mediated calcium ionophore A23187.

RESULTS

Increasing concentrations of halothane and isoflurane from 0.5 to 5% had no effect on basal cyclic GMP concentrations in cultured VSM alone or in endothelial cell-vascular smooth muscle co-cultures, and had no effect on sodium nitroprusside, nitroglycerin, or nitric oxide stimulated cyclic GMP accumulation in cultured VSM. In agonist-stimulated co-cultures, however, halothane and isoflurane significantly (P < 0.05) inhibited increases in cyclic GMP concentration in response to both receptor- and non-receptor-mediated nitric oxide synthase activating agents.

CONCLUSIONS

Inhalational anesthetics do not stimulate or inhibit basal cyclic GMP production in co-cultures or VSM, suggesting that inhalational anesthetics do not activate soluble or particulate guanylyl cyclase and do not activate nitric oxide synthase. Inhalational anesthetics do not inhibit nitrovasodilator-induced cyclic GMP formation, suggesting a lack of interference with soluble guanylyl cyclase activation. Inhalational anesthetics inhibit both agonist and calcium ionophore-stimulated nitric oxide-dependent cyclic GMP accumulation in endothelial cell-vascular smooth muscle co-cultures. Consistent with previous vascular ring studies, anesthetics appear to inhibit nitric oxide-guanylyl cyclase signaling distal to receptor activation in the endothelial cell and proximal to nitric oxide activation of guanylyl cyclase.

摘要

背景

吸入性麻醉药与一氧化氮信号通路的相互作用及其作用机制存在争议。本研究旨在阐明吸入性麻醉药与血管一氧化氮和鸟苷酸环化酶信号通路相互作用的位点及机制。

方法

为了专门研究麻醉药与一氧化氮 - 鸟苷酸环化酶通路的相互作用机制,选用了培养的血管平滑肌和内皮细胞 - 血管平滑肌(EC - VSM)共培养模型。在微载体珠上生长有或没有培养内皮细胞的血管平滑肌单层培养物先用麻醉药预平衡,然后用激动剂刺激。测定吸入性麻醉药对未刺激的血管平滑肌以及内皮细胞非依赖性血管扩张剂硝普钠、硝酸甘油或一氧化氮激活可溶性鸟苷酸环化酶后的血管平滑肌中环磷酸鸟苷(cGMP)含量的影响。还进行了实验以评估吸入性麻醉药对未刺激的内皮细胞 - 血管平滑肌共培养物以及一氧化氮合酶和随后的环磷酸鸟苷生成已被受体介导的激动剂缓激肽和三磷酸腺苷以及非受体介导的钙离子载体A23187激活的共培养物的影响。

结果

将氟烷和异氟烷的浓度从0.5%增加到5%,对单独培养的血管平滑肌或内皮细胞 - 血管平滑肌共培养物中的基础环磷酸鸟苷浓度没有影响,对硝普钠、硝酸甘油或一氧化氮刺激的培养血管平滑肌中环磷酸鸟苷的积累也没有影响。然而,在激动剂刺激的共培养物中,氟烷和异氟烷显著(P < 0.05)抑制了对受体介导和非受体介导的一氧化氮合酶激活剂的反应中环磷酸鸟苷浓度的增加。

结论

吸入性麻醉药不会刺激或抑制共培养物或血管平滑肌中的基础环磷酸鸟苷生成,这表明吸入性麻醉药不会激活可溶性或颗粒性鸟苷酸环化酶,也不会激活一氧化氮合酶。吸入性麻醉药不会抑制血管扩张剂诱导的环磷酸鸟苷形成,这表明对可溶性鸟苷酸环化酶的激活没有干扰。吸入性麻醉药抑制内皮细胞 - 血管平滑肌共培养物中激动剂和钙离子载体刺激的一氧化氮依赖性环磷酸鸟苷积累。与先前的血管环研究一致,麻醉药似乎在内皮细胞中受体激活的远端和鸟苷酸环化酶一氧化氮激活的近端抑制一氧化氮 - 鸟苷酸环化酶信号传导。

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