GUO, X.,
BAI, Y.,
ZHANG, L.,
ZHANG, B.,
DU, Z.,
CAI, B.,
ZAGIDULLIN, N.,
CARVALHO, K.3 (2018)
be a promising therapeutic strategy because of its
capacity to
differentiate into cardiac cells
CARDIOMYOCYTE DIFFERENTIATION OF MESENCHYMAL STEM CELLS FROM BONE MARROW: NEW REGULATORS AND ITS IMPLICATIONSGuo, X.,
Bai, Y.,
Zhang, L.,
Zhang, B.,
Zagidullin, N.,
Carvalho, K.,
Du, Z.,
Cai, B. (2018) be a promising therapeutic strategy because of its capacity to
differentiate into cardiac cells
Sufianov, A.,
Beilerli, A.,
Begliarzade, S.,
Ilyasova, T.,
Kudriashov, V.,
Liang, Y.,
Beylerli, O. (2023) ligament stem cells are pluripotent stem cells of mesenchymal origin, which can
differentiateYang, F.,
Yang, L.,
Li, Y.,
Yan, G.,
Feng, C.,
Liu, T.,
Gong, R.,
Yuan, Y.,
Wang, N.,
Idiiatullina, E.,
Bikkuzin, T.,
V.N. Pavlov,
Li, Y.,
Dong, C. (2017) differentiate into osteoblasts, chondrocytes and adipocytes. Dysfunction of BMSCs in response to pathological
Qian, J.,
Zhuang, F.,
Chen, Y.,
Fan, X.,
Wang, J.,
Wang, Z.,
Wang, Y.,
Xu, M.,
Samorodov, A.V.,
Pavlov, V.N.,
Liang, G. (2022) Myeloid
differential protein-2 (MD2) has been shown to play a critical role in the progression
, the tissue- and stage-specific activation of which plays a role in the management of the cell
differentiation at exploring a more efficient and robust
differentiation method. We used a modified approach to
differentiateYuan, Y.,
Yan, G.,
Gong, R.,
Zhang, L.,
Liu, T.,
Feng, C.,
Du, W.,
Wang, Y.,
Yang, F.,
Li, Y.,
Guo, S.,
Ding, F.,
Ma, W.,
Idiiatullina, E.,
V.N. Pavlov,
Han, Z.,
Cai, B.,
Yang, L. (2017) differentiation of BMSCs.
METHODS:
BMSCs were irradiated with a blue LED light at 470 nm for 1 min, 5 min, 10 min
index. Thus, the order Stochastic
Differential Equation (FSDE) which describes the fLsm can be obtained