Ephedrine Blocks Rat Sciatic Nerve In Vivo  and Sodium Channels In Vitro

Author:

Hung Yu-Chun1,Kau Yi-Chuan2,Zizza Anthony M.3,Edrich Thomas4,Zurakowski David5,Myers Robert R.6,Wang Ging Kuo7,Gerner Peter8

Affiliation:

1. Attending Anesthesiologist, Department of Anesthesiology, Mackay Memorial Hospital, Taipei, Taiwan.

2. Department of Anesthesiology, Chang Gung Memorial Hospital, Taoyuan, Taiwan.

3. Research Assistant.

4. Research Fellow.

5. Director of Biostatistics, Children’s Hospital and Harvard Medical School, Boston, Massachusetts.

6. Professor of Anesthesiology and Pathology, University of California, San Diego, California.

7. Associate Professor.

8. Assistant Professor, Pain Research Center, Department of Anesthesiology, Perioperative and Pain Medicine, Brigham and Women’s Hospital and Harvard Medical School, Boston, Massachusetts.

Abstract

Background The sympathomimetic drug ephedrine has been used intrathecally as the sole local anesthetic for labor and delivery. Because ephedrine may be a useful adjuvant to local anesthetics, the authors investigated the local anesthetic properties of ephedrine in a rat sciatic nerve block model and the underlying mechanism in cultured cells stably expressing Na channels. Methods After approval of the animal protocol, the sciatic nerves of anesthetized rats were exposed by lateral incision of the thighs, 0.2 ml ephedrine at 0.25, 1, 2.5, or 5% and/or bupivacaine at 0.125% was injected, and the wound was closed. Motor and sensory/nociceptive functions were evaluated by the force achieved by pushing against a balance and the reaction to pinch, respectively. The whole cell configuration of the patch clamp technique was used to record Na currents from human embryonal kidney cells stably transfected with Nav1.4 channels. Results The nociception blockade was significantly longer than the motor blockade at test doses of 2.5 and 5% of ephedrine, or when 1% ephedrine was combined with 0.125% bupivacaine (analysis of variance with repeated measures, P < 0.001, n = 8/group). In vitro, the 50% inhibitory concentrations of ephedrine at -150 and -60 mV were 1,043 +/- 70 and 473 +/- 13 mum, respectively. High-frequency stimulation revealed a use-dependent block of 18%, similar to most local anesthetics. Conclusions Because ephedrine's properties are at least partly due to Na channel blockade, detailed histopathologic investigations are justified to determine the potential of ephedrine as an adjuvant to clinically used local anesthetics.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Anesthesiology and Pain Medicine

Reference30 articles.

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1. EFFICACY AND SAFETY OF DEXMEDETOMIDINE COMBINED WITH ROPIVACAINE FOR SCIATIC NERVE BLOCK IN RATS;ACTA MEDICA MEDITERR;2019

2. Plant-Derived Alkaloids;Discovery and Development of Neuroprotective Agents from Natural Products;2018

3. Perineural dexmedetomidine effects on sciatic nerve in rat;Brazilian Journal of Anesthesiology (English Edition);2017-01

4. Ephedrine ☆;Reference Module in Biomedical Sciences;2017

5. Efeitos de dexmedetomidina perineural no nervo ciático em ratos;Brazilian Journal of Anesthesiology;2017-01

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