Romaniuk-Drapała, A.; Totoń, E.; Konieczna, N.; Machnik, M.; Barczak, W.; Kowal, D.; Kopczyński, P.; Kaczmarek, M.; Rubiś, B.
hTERT Downregulation Attenuates Resistance to DOX, Impairs FAK-Mediated Adhesion, and Leads to Autophagy Induction in Breast Cancer Cells. Cells 2021, 10, 867.
https://doi.org/10.3390/cells10040867
AMA Style
Romaniuk-Drapała A, Totoń E, Konieczna N, Machnik M, Barczak W, Kowal D, Kopczyński P, Kaczmarek M, Rubiś B.
hTERT Downregulation Attenuates Resistance to DOX, Impairs FAK-Mediated Adhesion, and Leads to Autophagy Induction in Breast Cancer Cells. Cells. 2021; 10(4):867.
https://doi.org/10.3390/cells10040867
Chicago/Turabian Style
Romaniuk-Drapała, Aleksandra, Ewa Totoń, Natalia Konieczna, Marta Machnik, Wojciech Barczak, Dagmar Kowal, Przemysław Kopczyński, Mariusz Kaczmarek, and Błażej Rubiś.
2021. "hTERT Downregulation Attenuates Resistance to DOX, Impairs FAK-Mediated Adhesion, and Leads to Autophagy Induction in Breast Cancer Cells" Cells 10, no. 4: 867.
https://doi.org/10.3390/cells10040867
APA Style
Romaniuk-Drapała, A., Totoń, E., Konieczna, N., Machnik, M., Barczak, W., Kowal, D., Kopczyński, P., Kaczmarek, M., & Rubiś, B.
(2021). hTERT Downregulation Attenuates Resistance to DOX, Impairs FAK-Mediated Adhesion, and Leads to Autophagy Induction in Breast Cancer Cells. Cells, 10(4), 867.
https://doi.org/10.3390/cells10040867