Peach, M.L.; Beedie, S.L.; Chau, C.H.; Collins, M.K.; Markolovic, S.; Luo, W.; Tweedie, D.; Steinebach, C.; Greig, N.H.; Gütschow, M.;
et al. Antiangiogenic Activity and in Silico Cereblon Binding Analysis of Novel Thalidomide Analogs. Molecules 2020, 25, 5683.
https://doi.org/10.3390/molecules25235683
AMA Style
Peach ML, Beedie SL, Chau CH, Collins MK, Markolovic S, Luo W, Tweedie D, Steinebach C, Greig NH, Gütschow M,
et al. Antiangiogenic Activity and in Silico Cereblon Binding Analysis of Novel Thalidomide Analogs. Molecules. 2020; 25(23):5683.
https://doi.org/10.3390/molecules25235683
Chicago/Turabian Style
Peach, Megan L., Shaunna L. Beedie, Cindy H. Chau, Matthew K. Collins, Suzana Markolovic, Weiming Luo, David Tweedie, Christian Steinebach, Nigel H. Greig, Michael Gütschow,
and et al. 2020. "Antiangiogenic Activity and in Silico Cereblon Binding Analysis of Novel Thalidomide Analogs" Molecules 25, no. 23: 5683.
https://doi.org/10.3390/molecules25235683
APA Style
Peach, M. L., Beedie, S. L., Chau, C. H., Collins, M. K., Markolovic, S., Luo, W., Tweedie, D., Steinebach, C., Greig, N. H., Gütschow, M., Vargesson, N., Nicklaus, M. C., & Figg, W. D.
(2020). Antiangiogenic Activity and in Silico Cereblon Binding Analysis of Novel Thalidomide Analogs. Molecules, 25(23), 5683.
https://doi.org/10.3390/molecules25235683