Hebert, K.L.; Savoie, J.J.; Hawes, M.L.; Nguyen, B.; Lee, M.; Moody, M.A.; Dietrich, S.R.; Cheng, T.; Barnes, V.H.; Collins-Burow, B.M.;
et al. Toward More Translational Tumor Models: Breast dECM-Based 3D Systems Capture Native Microenvironmental Cues. Bioengineering 2026, 13, 712.
https://doi.org/10.3390/bioengineering13060712
AMA Style
Hebert KL, Savoie JJ, Hawes ML, Nguyen B, Lee M, Moody MA, Dietrich SR, Cheng T, Barnes VH, Collins-Burow BM,
et al. Toward More Translational Tumor Models: Breast dECM-Based 3D Systems Capture Native Microenvironmental Cues. Bioengineering. 2026; 13(6):712.
https://doi.org/10.3390/bioengineering13060712
Chicago/Turabian Style
Hebert, Katherine L., Jonathan J. Savoie, Mackenzie L. Hawes, Britney Nguyen, Madison Lee, Marcus A. Moody, Sophie R. Dietrich, Thomas Cheng, Van H. Barnes, Bridgette M. Collins-Burow,
and et al. 2026. "Toward More Translational Tumor Models: Breast dECM-Based 3D Systems Capture Native Microenvironmental Cues" Bioengineering 13, no. 6: 712.
https://doi.org/10.3390/bioengineering13060712
APA Style
Hebert, K. L., Savoie, J. J., Hawes, M. L., Nguyen, B., Lee, M., Moody, M. A., Dietrich, S. R., Cheng, T., Barnes, V. H., Collins-Burow, B. M., Smith, A. A., Lau, F. H., Monroe, W. T., Burow, M. E., Martin, E. C., & Belgodere, J. A.
(2026). Toward More Translational Tumor Models: Breast dECM-Based 3D Systems Capture Native Microenvironmental Cues. Bioengineering, 13(6), 712.
https://doi.org/10.3390/bioengineering13060712