Lipid Emulsions Enhance the Norepinephrine-Mediated Reversal of Local Anesthetic-Induced Vasodilation at Toxic Doses.

Autor: Soo Hee Lee, Hui-Jin Sung, Seong-Ho Ok, Jongsun Yu, Mun-Jeoung Choi, Jin Soo Lim, Ju-Tae Sohn
Zdroj: Yonsei Medical Journal; Nov2013, Vol. 54 Issue 6, p1524-1532, 9p
Abstrakt: Purpose: Intravenous lipid emulsions have been used to treat the systemic toxicity of local anesthetics. The goal of this in vitro study was to examine the effects of lipid emulsions on the norepinephrine-mediated reversal of vasodilation induced by high doses of levobupivacaine, ropivacaine, and mepivacaine in isolated endothelium-de-nuded rat aorta, and to determine whether such effects are associated with the lipid solubility of local anesthetics. Materials and Methods: The effects of lipid emulsions (0.30, 0.49, 1.40, and 2.61%) on norepinephrine concentration-responses in high-dose local anesthetic (6><10-4 M levobupivacaine, 2><10-3 M ropivacaine, and 7><10-3 M mepivacaine)-induced vasodilation of isolated aorta precontracted with 60 mM KCl were assessed. The effects of lipid emulsions on local anesthetic- and diltiazem-in-duced vasodilation in isolated aorta precontracted with phenylephrine were also assessed. Results: Lipid emulsions (0.30%) enhanced norepinephrine-induced contraction in levobupivacaine-induced vasodilation, whereas 1.40 and 2.61% lipid emulsions enhanced norepinephrine-induced contraction in both ropivacaine- and mepivacaine-induced vasodilation, respectively. Lipid emulsions (0.20, 0.49 and 1.40%) inhibited vasodilation induced by levobupivacaine and ropivacaine, whereas 1.40 and 2.61% lip-id emulsions slightly attenuated mepivacaine (3 x 10-3 M)-induced vasodilation. In addition, lipid emulsions attenuated diltiazem-induced vasodilation. Lipid emulsions enhanced norepinephrine-induced contraction in endothelium-denuded aorta without pretreatment with local anesthetics. Conclusion: Taken together, these results suggest that lipid emulsions enhance the norepinephrine-mediated reversal of local anesthetic-induced vasodilation at toxic anesthetic doses and inhibit local anesthetic-induced vasodilation in a manner correlated with the lipid solubility of a particular local anesthetic. [ABSTRACT FROM AUTHOR]
Databáze: Supplemental Index