La, Q.T.; Ren, B.; Logan, G.J.; Cunningham, S.C.; Khandekar, N.; Nassif, N.T.; O’Brien, B.A.; Alexander, I.E.; Simpson, A.M.
Use of a Hybrid Adeno-Associated Viral Vector Transposon System to Deliver the Insulin Gene to Diabetic NOD Mice. Cells 2020, 9, 2227.
https://doi.org/10.3390/cells9102227
AMA Style
La QT, Ren B, Logan GJ, Cunningham SC, Khandekar N, Nassif NT, O’Brien BA, Alexander IE, Simpson AM.
Use of a Hybrid Adeno-Associated Viral Vector Transposon System to Deliver the Insulin Gene to Diabetic NOD Mice. Cells. 2020; 9(10):2227.
https://doi.org/10.3390/cells9102227
Chicago/Turabian Style
La, Que T., Binhai Ren, Grant J. Logan, Sharon C. Cunningham, Neeta Khandekar, Najah T. Nassif, Bronwyn A. O’Brien, Ian E. Alexander, and Ann M. Simpson.
2020. "Use of a Hybrid Adeno-Associated Viral Vector Transposon System to Deliver the Insulin Gene to Diabetic NOD Mice" Cells 9, no. 10: 2227.
https://doi.org/10.3390/cells9102227
APA Style
La, Q. T., Ren, B., Logan, G. J., Cunningham, S. C., Khandekar, N., Nassif, N. T., O’Brien, B. A., Alexander, I. E., & Simpson, A. M.
(2020). Use of a Hybrid Adeno-Associated Viral Vector Transposon System to Deliver the Insulin Gene to Diabetic NOD Mice. Cells, 9(10), 2227.
https://doi.org/10.3390/cells9102227