Phcog.Net logo

BROWSE ALL JOURNALS

    SEE ALL 6 JOURNALS
    Article

    Assessment of proarrhythmic activity of chloroquine in in vivo and ex vivo rabbit models

    Shailaja B. Khobragade1, Pankaj Gupta2, Prashant Gurav3, Girish Chaudhari3, Madhumanjiri M. Gatne1 Corresponding author

    1. 1Vyas M. Shingatgeri Department of Drug Safety Evaluation, Ranbaxy Research Laboratories, Gurgaon, Haryana.
    2. 2Department of Pharmacology, Central Research Institute for Homoeopathy, Noida.
    3. 3Department of Pharmacology and Toxicology, Bombay Veterinary College, Mumbai, Maharashtra, India Research Paper.

    CORRESPONDENCE

    Pankaj Gupta

    Department of Pharmacology, Central Research Institute for Homoeopathy, Noida.

    pankajgupta77@gmail.com

    Volume 4, Issue 2 · pp. 116–124 · PUBLISHED 2013 · DOI: 10.4103/0976-500X.110892

    View on J Pharmacol. Pharmacother. original site ↗

    ABSTRACT

    Objectives: To evaluate the prolongation of ventricular repolarization and proarrhythmic activity of antimalarial drug chloroquine in two rabbit proarrhythmia models viz., in vivo α1 adrenoceptor‑stimulated anesthetized rabbit and ex vivo isolated Langendorff rabbit heart using clofilium as standard proarrhythmic agent. Materials and Methods: In the in vivo model, three groups of rabbits, anesthetized by pentobarbitone sodium and α‑chloralose, sensitized with α1 agonist methoxamine followed by either continuous infusion of saline (control) or clofilium (3 mg/kg) or chloroquine (21 mg/kg) for 30 min. In ex vivo model, rabbit hearts were perfused with clofilium (10 µM) or chloroquine (300 µM) continuously after priming along with methoxamine, acetylcholine chloride and propranolol hydrochloride. Results: In these models, prolongation of repolarization during α1‑adrenoceptor stimulation produced early after depolarization (EAD) and Torsade de pointes (TdP). Saline infusion did not induce any abnormality in the animals. Clofilium caused expected changes in the electrocardiogram in both the models including TdP (50.0% in in vivo and 66.67% in ex vivo). Chloroquine caused decrease in heart rate and increase in the corrected QT (QTc) interval in both the models. Further, apart from different stages of arrhythmia, TdP was evident in 33.33% in ex vivo model, whereas no TdP was observed in in vivo model. Conclusions: The results indicated that proarrhythmic potential of chloroquine and clofilium was well evaluated in both the models; moreover, both the models can be used to assess the proarrhythmic potential of the new drug candidates.

    KEYWORDS

    Open in new tab

    REFERENCES

    As published

    Showing references and in-text citations exactly as published.

      Cite this article

      SELECT FORMAT

      Khobragade, S. B., Gupta, P., Gurav, P., Chaudhari, G., & Gatne, M. M. (2013). Assessment of proarrhythmic activity of chloroquine in in vivo and ex vivo rabbit models. Journal of Pharmacology and Pharmacotherapeutics, 4(2), 116–124. https://doi.org/10.4103/0976-500X.110892