Arshad, N.; Mir, M.I.; Perveen, F.; Javed, A.; Javaid, M.; Saeed, A.; Channar, P.A.; Farooqi, S.I.; Alkahtani, S.; Anwar, J.
Investigations on Anticancer Potentials by DNA Binding and Cytotoxicity Studies for Newly Synthesized and Characterized Imidazolidine and Thiazolidine-Based Isatin Derivatives. Molecules 2022, 27, 354.
https://doi.org/10.3390/molecules27020354
AMA Style
Arshad N, Mir MI, Perveen F, Javed A, Javaid M, Saeed A, Channar PA, Farooqi SI, Alkahtani S, Anwar J.
Investigations on Anticancer Potentials by DNA Binding and Cytotoxicity Studies for Newly Synthesized and Characterized Imidazolidine and Thiazolidine-Based Isatin Derivatives. Molecules. 2022; 27(2):354.
https://doi.org/10.3390/molecules27020354
Chicago/Turabian Style
Arshad, Nasima, Muhammad Ismail Mir, Fouzia Perveen, Aneela Javed, Memona Javaid, Aamer Saeed, Pervaiz Ali Channar, Shahid Iqbal Farooqi, Saad Alkahtani, and Jamshed Anwar.
2022. "Investigations on Anticancer Potentials by DNA Binding and Cytotoxicity Studies for Newly Synthesized and Characterized Imidazolidine and Thiazolidine-Based Isatin Derivatives" Molecules 27, no. 2: 354.
https://doi.org/10.3390/molecules27020354
APA Style
Arshad, N., Mir, M. I., Perveen, F., Javed, A., Javaid, M., Saeed, A., Channar, P. A., Farooqi, S. I., Alkahtani, S., & Anwar, J.
(2022). Investigations on Anticancer Potentials by DNA Binding and Cytotoxicity Studies for Newly Synthesized and Characterized Imidazolidine and Thiazolidine-Based Isatin Derivatives. Molecules, 27(2), 354.
https://doi.org/10.3390/molecules27020354