Marascio, N.; Pavia, G.; Strazzulla, A.; Dierckx, T.; Cuypers, L.; Vrancken, B.; Barreca, G.S.; Mirante, T.; Malanga, D.; Oliveira, D.M.;
et al. Detection of Natural Resistance-Associated Substitutions by Ion Semiconductor Technology in HCV1b Positive, Direct-Acting Antiviral Agents-Naïve Patients. Int. J. Mol. Sci. 2016, 17, 1416.
https://doi.org/10.3390/ijms17091416
AMA Style
Marascio N, Pavia G, Strazzulla A, Dierckx T, Cuypers L, Vrancken B, Barreca GS, Mirante T, Malanga D, Oliveira DM,
et al. Detection of Natural Resistance-Associated Substitutions by Ion Semiconductor Technology in HCV1b Positive, Direct-Acting Antiviral Agents-Naïve Patients. International Journal of Molecular Sciences. 2016; 17(9):1416.
https://doi.org/10.3390/ijms17091416
Chicago/Turabian Style
Marascio, Nadia, Grazia Pavia, Alessio Strazzulla, Tim Dierckx, Lize Cuypers, Bram Vrancken, Giorgio Settimo Barreca, Teresa Mirante, Donatella Malanga, Duarte Mendes Oliveira,
and et al. 2016. "Detection of Natural Resistance-Associated Substitutions by Ion Semiconductor Technology in HCV1b Positive, Direct-Acting Antiviral Agents-Naïve Patients" International Journal of Molecular Sciences 17, no. 9: 1416.
https://doi.org/10.3390/ijms17091416
APA Style
Marascio, N., Pavia, G., Strazzulla, A., Dierckx, T., Cuypers, L., Vrancken, B., Barreca, G. S., Mirante, T., Malanga, D., Oliveira, D. M., Vandamme, A. -M., Torti, C., Liberto, M. C., Focà, A., & The SINERGIE-UMG Study Group.
(2016). Detection of Natural Resistance-Associated Substitutions by Ion Semiconductor Technology in HCV1b Positive, Direct-Acting Antiviral Agents-Naïve Patients. International Journal of Molecular Sciences, 17(9), 1416.
https://doi.org/10.3390/ijms17091416