Mazzara, P.G.; Criscuolo, E.; Rasponi, M.; Massimino, L.; Muggeo, S.; Palma, C.; Castelli, M.; Clementi, M.; Burioni, R.; Mancini, N.;
et al. A Human Stem Cell-Derived Neurosensory–Epithelial Circuitry on a Chip to Model Herpes Simplex Virus Reactivation. Biomedicines 2022, 10, 2068.
https://doi.org/10.3390/biomedicines10092068
AMA Style
Mazzara PG, Criscuolo E, Rasponi M, Massimino L, Muggeo S, Palma C, Castelli M, Clementi M, Burioni R, Mancini N,
et al. A Human Stem Cell-Derived Neurosensory–Epithelial Circuitry on a Chip to Model Herpes Simplex Virus Reactivation. Biomedicines. 2022; 10(9):2068.
https://doi.org/10.3390/biomedicines10092068
Chicago/Turabian Style
Mazzara, Pietro Giuseppe, Elena Criscuolo, Marco Rasponi, Luca Massimino, Sharon Muggeo, Cecilia Palma, Matteo Castelli, Massimo Clementi, Roberto Burioni, Nicasio Mancini,
and et al. 2022. "A Human Stem Cell-Derived Neurosensory–Epithelial Circuitry on a Chip to Model Herpes Simplex Virus Reactivation" Biomedicines 10, no. 9: 2068.
https://doi.org/10.3390/biomedicines10092068
APA Style
Mazzara, P. G., Criscuolo, E., Rasponi, M., Massimino, L., Muggeo, S., Palma, C., Castelli, M., Clementi, M., Burioni, R., Mancini, N., Broccoli, V., & Clementi, N.
(2022). A Human Stem Cell-Derived Neurosensory–Epithelial Circuitry on a Chip to Model Herpes Simplex Virus Reactivation. Biomedicines, 10(9), 2068.
https://doi.org/10.3390/biomedicines10092068