Bennani, F.E.; Karrouchi, K.; Doudach, L.; Scrima, M.; Rahman, N.; Rastrelli, L.; Tallei, T.E.; Rudd, C.E.; Faouzi, M.E.A.; Ansar, M.
In Silico Identification of Promising New Pyrazole Derivative-Based Small Molecules for Modulating CRMP2, C-RAF, CYP17, VEGFR, C-KIT, and HDAC—Application towards Cancer Therapeutics. Curr. Issues Mol. Biol. 2022, 44, 5312-5351.
https://doi.org/10.3390/cimb44110361
AMA Style
Bennani FE, Karrouchi K, Doudach L, Scrima M, Rahman N, Rastrelli L, Tallei TE, Rudd CE, Faouzi MEA, Ansar M.
In Silico Identification of Promising New Pyrazole Derivative-Based Small Molecules for Modulating CRMP2, C-RAF, CYP17, VEGFR, C-KIT, and HDAC—Application towards Cancer Therapeutics. Current Issues in Molecular Biology. 2022; 44(11):5312-5351.
https://doi.org/10.3390/cimb44110361
Chicago/Turabian Style
Bennani, Fatima Ezzahra, Khalid Karrouchi, Latifa Doudach, Mario Scrima, Noor Rahman, Luca Rastrelli, Trina Ekawati Tallei, Christopher E. Rudd, My El Abbes Faouzi, and M’hammed Ansar.
2022. "In Silico Identification of Promising New Pyrazole Derivative-Based Small Molecules for Modulating CRMP2, C-RAF, CYP17, VEGFR, C-KIT, and HDAC—Application towards Cancer Therapeutics" Current Issues in Molecular Biology 44, no. 11: 5312-5351.
https://doi.org/10.3390/cimb44110361
APA Style
Bennani, F. E., Karrouchi, K., Doudach, L., Scrima, M., Rahman, N., Rastrelli, L., Tallei, T. E., Rudd, C. E., Faouzi, M. E. A., & Ansar, M.
(2022). In Silico Identification of Promising New Pyrazole Derivative-Based Small Molecules for Modulating CRMP2, C-RAF, CYP17, VEGFR, C-KIT, and HDAC—Application towards Cancer Therapeutics. Current Issues in Molecular Biology, 44(11), 5312-5351.
https://doi.org/10.3390/cimb44110361