Konteles, V.; Papathanasiou, I.; Tzetis, M.; Goussetis, E.; Trachana, V.; Mourmoura, E.; Balis, C.; Malizos, K.; Tsezou, A.
Integration of Transcriptome and MicroRNA Profile Analysis of iMSCs Defines Their Rejuvenated State and Conveys Them into a Novel Resource for Cell Therapy in Osteoarthritis. Cells 2023, 12, 1756.
https://doi.org/10.3390/cells12131756
AMA Style
Konteles V, Papathanasiou I, Tzetis M, Goussetis E, Trachana V, Mourmoura E, Balis C, Malizos K, Tsezou A.
Integration of Transcriptome and MicroRNA Profile Analysis of iMSCs Defines Their Rejuvenated State and Conveys Them into a Novel Resource for Cell Therapy in Osteoarthritis. Cells. 2023; 12(13):1756.
https://doi.org/10.3390/cells12131756
Chicago/Turabian Style
Konteles, Vasileios, Ioanna Papathanasiou, Maria Tzetis, Evgenios Goussetis, Varvara Trachana, Evanthia Mourmoura, Charalampos Balis, Konstantinos Malizos, and Aspasia Tsezou.
2023. "Integration of Transcriptome and MicroRNA Profile Analysis of iMSCs Defines Their Rejuvenated State and Conveys Them into a Novel Resource for Cell Therapy in Osteoarthritis" Cells 12, no. 13: 1756.
https://doi.org/10.3390/cells12131756
APA Style
Konteles, V., Papathanasiou, I., Tzetis, M., Goussetis, E., Trachana, V., Mourmoura, E., Balis, C., Malizos, K., & Tsezou, A.
(2023). Integration of Transcriptome and MicroRNA Profile Analysis of iMSCs Defines Their Rejuvenated State and Conveys Them into a Novel Resource for Cell Therapy in Osteoarthritis. Cells, 12(13), 1756.
https://doi.org/10.3390/cells12131756