Han, Z.B.,
Wang, X.X.,
Xu, Z.H.,
Cao, Y.,
Gong, R,
Zagidullin, N.,
Sukhareva, N.,
Zhang, Y. (2021) of cardiomyocyte (CM) proliferation and cardiac
regeneration remains unclear. In this study, we aimed
concerning diseases worldwide. The heart of adult mammals can hardly
regenerate naturally after injury
Song, Wanqing,
Chen, Jianxue,
Wang, Zhen,
Kudreyko, Aleksey,
Qi, Deyu,
Zio, Enrico (2023) The capacity
regeneration phenomenon is often overlooked in terms of prediction of the remaining
CAI, B.,
MA, W.,
WANG, X.,
SUKHAREVA, N.,
HUA, B.,
ZHANG, L.,
LI, X.,
LI, S.,
LIU, S.,
YU, M.,
XU, Y.,
SONG, R.,
XU, B.,
YANG, F.,
HAN, Z.,
DING, F.,
HUANG, Q.,
YU, Y.,
ZHAO, Y.,
WANG, J.,
BAMBA, D.,
PAN, Z.,
YANG, B.,
XU, J.,
ZAGIDULLIN, N.,
LI, F.,
TIAN, Y. (2020) Neonatal mammalian heart maintains a transient
regeneration capacity after birth, whereas
and 3D collagen matrix Fibromatrix for the
regeneration of soft tissues of the oral cavity