Mohan, M.; Chow, C.-E.T.; Ryan, C.N.; Chan, L.S.; Dufour, J.; Aye, P.P.; Blanchard, J.; Moehs, C.P.; Sestak, K.
Dietary Gluten-Induced Gut Dysbiosis Is Accompanied by Selective Upregulation of microRNAs with Intestinal Tight Junction and Bacteria-Binding Motifs in Rhesus Macaque Model of Celiac Disease. Nutrients 2016, 8, 684.
https://doi.org/10.3390/nu8110684
AMA Style
Mohan M, Chow C-ET, Ryan CN, Chan LS, Dufour J, Aye PP, Blanchard J, Moehs CP, Sestak K.
Dietary Gluten-Induced Gut Dysbiosis Is Accompanied by Selective Upregulation of microRNAs with Intestinal Tight Junction and Bacteria-Binding Motifs in Rhesus Macaque Model of Celiac Disease. Nutrients. 2016; 8(11):684.
https://doi.org/10.3390/nu8110684
Chicago/Turabian Style
Mohan, Mahesh, Cheryl-Emiliane T. Chow, Caitlin N. Ryan, Luisa S. Chan, Jason Dufour, Pyone P. Aye, James Blanchard, Charles P. Moehs, and Karol Sestak.
2016. "Dietary Gluten-Induced Gut Dysbiosis Is Accompanied by Selective Upregulation of microRNAs with Intestinal Tight Junction and Bacteria-Binding Motifs in Rhesus Macaque Model of Celiac Disease" Nutrients 8, no. 11: 684.
https://doi.org/10.3390/nu8110684
APA Style
Mohan, M., Chow, C.-E. T., Ryan, C. N., Chan, L. S., Dufour, J., Aye, P. P., Blanchard, J., Moehs, C. P., & Sestak, K.
(2016). Dietary Gluten-Induced Gut Dysbiosis Is Accompanied by Selective Upregulation of microRNAs with Intestinal Tight Junction and Bacteria-Binding Motifs in Rhesus Macaque Model of Celiac Disease. Nutrients, 8(11), 684.
https://doi.org/10.3390/nu8110684