Makowiecka, A.; Mazurkiewicz, E.; Mrówczyńska, E.; Malek, N.; Battistella, A.; Lazzarino, M.; Nowak, D.; Mazur, A.J.
Changes in Biomechanical Properties of A375 Cells Due to the Silencing of TMSB4X Expression Are Not Directly Correlated with Alterations in Their Stemness Features. Cells 2021, 10, 769.
https://doi.org/10.3390/cells10040769
AMA Style
Makowiecka A, Mazurkiewicz E, Mrówczyńska E, Malek N, Battistella A, Lazzarino M, Nowak D, Mazur AJ.
Changes in Biomechanical Properties of A375 Cells Due to the Silencing of TMSB4X Expression Are Not Directly Correlated with Alterations in Their Stemness Features. Cells. 2021; 10(4):769.
https://doi.org/10.3390/cells10040769
Chicago/Turabian Style
Makowiecka, Aleksandra, Ewa Mazurkiewicz, Ewa Mrówczyńska, Natalia Malek, Alice Battistella, Marco Lazzarino, Dorota Nowak, and Antonina Joanna Mazur.
2021. "Changes in Biomechanical Properties of A375 Cells Due to the Silencing of TMSB4X Expression Are Not Directly Correlated with Alterations in Their Stemness Features" Cells 10, no. 4: 769.
https://doi.org/10.3390/cells10040769
APA Style
Makowiecka, A., Mazurkiewicz, E., Mrówczyńska, E., Malek, N., Battistella, A., Lazzarino, M., Nowak, D., & Mazur, A. J.
(2021). Changes in Biomechanical Properties of A375 Cells Due to the Silencing of TMSB4X Expression Are Not Directly Correlated with Alterations in Their Stemness Features. Cells, 10(4), 769.
https://doi.org/10.3390/cells10040769