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Trypanosoma brucei cathepsin-L increases arrhythmogenic sarcoplasmic reticulum-mediated calcium release in rat cardiomyocytes

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Trypanosoma brucei cathepsin-L increases arrhythmogenic sarcoplasmic reticulum-mediated calcium release in rat cardiomyocytes. / Elliott, Elspeth B.; McCarroll, Douglas ; Hasumi, Hisashi; Welsh, Claire E.; Panissidi, Amanda A.; Jones, Nathaniel G.; Rossor, Charlotte L.; Tait, Andy; Smith, Godfrey L.; Mottram, Jeremy C.; Morrison, Liam J.; Loughrey, Christopher M.

In: Cardiovascular Research, Vol. 100, No. 2, 2013, p. 325-335.

Research output: Contribution to journalArticle

Harvard

Elliott, EB, McCarroll, D, Hasumi, H, Welsh, CE, Panissidi, AA, Jones, NG, Rossor, CL, Tait, A, Smith, GL, Mottram, JC, Morrison, LJ & Loughrey, CM 2013, 'Trypanosoma brucei cathepsin-L increases arrhythmogenic sarcoplasmic reticulum-mediated calcium release in rat cardiomyocytes', Cardiovascular Research, vol. 100, no. 2, pp. 325-335. https://doi.org/10.1093/cvr/cvt187

APA

Elliott, E. B., McCarroll, D., Hasumi, H., Welsh, C. E., Panissidi, A. A., Jones, N. G., Rossor, C. L., Tait, A., Smith, G. L., Mottram, J. C., Morrison, L. J., & Loughrey, C. M. (2013). Trypanosoma brucei cathepsin-L increases arrhythmogenic sarcoplasmic reticulum-mediated calcium release in rat cardiomyocytes. Cardiovascular Research, 100(2), 325-335. https://doi.org/10.1093/cvr/cvt187

Vancouver

Elliott EB, McCarroll D, Hasumi H, Welsh CE, Panissidi AA, Jones NG et al. Trypanosoma brucei cathepsin-L increases arrhythmogenic sarcoplasmic reticulum-mediated calcium release in rat cardiomyocytes. Cardiovascular Research. 2013;100(2):325-335. https://doi.org/10.1093/cvr/cvt187

Author

Elliott, Elspeth B. ; McCarroll, Douglas ; Hasumi, Hisashi ; Welsh, Claire E. ; Panissidi, Amanda A. ; Jones, Nathaniel G. ; Rossor, Charlotte L. ; Tait, Andy ; Smith, Godfrey L. ; Mottram, Jeremy C. ; Morrison, Liam J. ; Loughrey, Christopher M. / Trypanosoma brucei cathepsin-L increases arrhythmogenic sarcoplasmic reticulum-mediated calcium release in rat cardiomyocytes. In: Cardiovascular Research. 2013 ; Vol. 100, No. 2. pp. 325-335.