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高渗盐水羟乙基淀粉在猪等容血液稀释后恢复右心室-动脉偶联。

Hypertonic saline hydroxyethylstarch restores right ventricular-arterial coupling after normovolemic hemodilution in piglets.

机构信息

Service d'Anesthésie-Réanimation Adultes, Hôpital La Timone, Marseille, France.

出版信息

Anesthesiology. 2011 Jul;115(1):136-43. doi: 10.1097/ALN.0b013e31821bdb69.

Abstract

BACKGROUND

Normovolemic hemodilution is known to inhibit hypoxic pulmonary vasoconstriction. How the coupling between the pulmonary arterial (PA) circulation and the right ventricle (RV) is affected by normovolemic hemodilution and by the composition of replacement solutions remains unknown. Therefore, the effects of isotonic and hypertonic saline hydroxyethylstarch solutions on the pulmonary circulation and RV, in control and hypoxic conditions, were compared.

METHODS

Anesthetized piglets (n = 14) were equipped with manometer-tipped catheters in the RV and main PA and an ultrasonic flow probe around the main PA. The pulmonary circulation was assessed by pressure-flow relations and vascular impedance, RV afterload by effective arterial elastance (Ea), RV contractility by end-systolic elastance (Ees), and RV-PA coupling by the Ees/Ea ratio. Measurements were done in control (Fio2 0.40) and hypoxic (Fio2 0.12) conditions before and after acute normovolemic hemodilution with either 20 ml/kg isotonic saline hydroxyethylstarch (hydroxyethylstarch 130/0.4 6% in NaCl 0.9%, Voluven, Fresenius-Kabi, Sevres, France) or 5 ml/kg hypertonic saline hydroxyethylstarch (hydroxyethylstarch 200/0.5 6% in NaCl 7.2%, HyperHES, Fresenius-Kabi) solutions.

RESULTS

Hypoxic pulmonary vasoconstriction was associated with proportional increases in Ea and Ees and did not affect RV-PA coupling. Hemodilution attenuated the hypoxic response. Hemodilution with isotonic saline hydroxyethylstarch did not affect the RV-PA coupling, whereas hemodilution with hypertonic saline hydroxyethylstarch increased Ees and the Ees/Ea ratio.

CONCLUSION

In experimental normovolemic hemodilution, both in control and in hypoxic conditions, RV-PA coupling is unaffected by isotonic saline hydroxyethylstarch but improved by hypertonic saline hydroxyethylstarch, mainly because of an increase in RV contractility.

摘要

背景

已知等容血液稀释可抑制低氧性肺血管收缩。等容血液稀释以及替代溶液的组成如何影响肺动脉(PA)循环和右心室(RV)的耦联尚不清楚。因此,比较了等渗和高渗盐水羟乙基淀粉溶液在对照和低氧条件下对肺循环和 RV 的影响。

方法

麻醉仔猪(n = 14)在 RV 和主 PA 上装有带测压导管的导管,在主 PA 周围装有超声血流探头。通过压力-流量关系和血管阻抗评估肺循环,通过有效动脉弹性(Ea)评估 RV 后负荷,通过收缩末期弹性(Ees)评估 RV 收缩性,通过 Ees/Ea 比值评估 RV-PA 耦联。在急性等容血液稀释前后(分别用 20 ml/kg 等渗盐水羟乙基淀粉(羟乙基淀粉 130/0.4 6%在 NaCl 0.9%,Voluven,Fresenius-Kabi,Sevres,France)或 5 ml/kg 高渗盐水羟乙基淀粉(羟乙基淀粉 200/0.5 6%在 NaCl 7.2%,HyperHES,Fresenius-Kabi)溶液),在对照(Fio2 0.40)和低氧(Fio2 0.12)条件下进行测量。

结果

低氧性肺血管收缩与 Ea 和 Ees 的比例增加相关,并不影响 RV-PA 耦联。血液稀释减弱了低氧反应。等渗盐水羟乙基淀粉血液稀释不影响 RV-PA 耦联,而高渗盐水羟乙基淀粉血液稀释增加了 Ees 和 Ees/Ea 比值。

结论

在实验性等容血液稀释中,无论在对照还是低氧条件下,等渗盐水羟乙基淀粉对 RV-PA 耦联均无影响,但高渗盐水羟乙基淀粉可改善 RV-PA 耦联,主要是因为 RV 收缩性增强。

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