Human mesenchymal
stem cells (MSCs) are primary multipotent
cells capable of differentiating
to regulate
cell proliferation,
cell growth, metabolism, metastasis and
cell stemness. Epithelial
Mukhametov, U.,
Lyulin, S.,
Borzunov, D.,
Sufianova, G.,
Shumadalova, A.,
Zhang, D.,
Gareev, I. (2022) , and differentiation of mesenchymal
stem cells (MSCs) into chondroblasts and osteoblasts. It is known that malfunction
Parfenova, L.V.,
Galimshina, Z.R.,
Gil'fanova, G.U.,
Alibaeva, E.I.,
Danilko, K.V.,
Pashkova, T.M.,
Kartashova, O.L.,
Farrakhov, R.G.,
Mukaeva, V.R.,
Parfenov, E.V.,
Nagumothu, R.,
Valiev, R.Z. (2022) the viability of fibroblasts (by 20–40%), osteoblast-like
cells MG-63 (by 30–60%), and mesenchymal
stem cellsYanchao, L.,
Sibin, Z.,
Gareev, I.,
Huan, X.,
Junfei, Z.,
Chunyang, L.,
Beylerli, O.,
Sufianov, A.,
Chao, Y.,
Yuyan, G.,
Xun, X.,
Ahmad, A. (2022) : This study used human induced pluripotent
stem cell (hiPSC)-derived monolayer brain
cell dataset and human
Ivanova, E.,
Asadullina, D.,
Rakhimov, R.,
Izmailov, A.,
Izmailov, Al.,
Gilyazova, G.,
Galimov, Sh.,
Pavlov, V.,
Khusnutdinova, E.,
Gilyazova, I. (2022) Here we report the results of the pilot project of exosomal miRNA expression levels in clear
cell