Review
Copyright ©The Author(s) 2020.
World J Stem Cells. Dec 26, 2020; 12(12): 1455-1473
Published online Dec 26, 2020. doi: 10.4252/wjsc.v12.i12.1455
Table 1 Summary of effect of metformin on stem cells and suggested mechanisms
Role of metformin
Stem cell type(s)
Suggested mechanism(s)
Ref.
Promoting osteogenic differentiationBMPC; ADSC; UC-MSC; iPSC-MSCLBK1/AMPK activation[20-23]
BMSCAMPK activation-Runx2 (serine 118)[26]
MC3T3-E1AMPK/Gfi1/OPN axis; SIRT-6/NF-κB[12,24]
hBMSCTwist1 inhibition; GSK3β/β-catenin/Wnt signaling pathway[19,25]
PDLSCAKT/Nrf2[27]
ADSC; PDLSC; hDPSCNone[8,11,32,33]
Promoting neuronal differentiationNPCaPKC/CBP[35]
hBMSCAMPK activation[36]
NPCAMPK/aPKC/CBP signaling pathway[37]
hiPSC-NSCNone[17]
Promoting myogenic differentiationSatellite cellRPS6-mTOR[14]
C2C12ERK; AMPK (AMPKα1)/HDAC5[40,41]
Muscle progenitor cellAMPK[39]
Inhibiting adipogenic differentiationMC3T3-E1AMPK/Gfi1/OPN axis[24]
MSCAMPK/mTOR/p70S6K[44]
ADSC; PDLSC; BMSC; BMPCNone[13,27,42,43,46]
Inhibiting chondrogenic differentiationATDC-5AMPK[47]
Gastric PC differentiationGastric EPCAMPK[50]
Regulating stem cell aging and rejuvenating regenerationHMSCNrf2/GPx7[59]
ISCAKT/TOR/Atg6-related pathway; AKT/mTOR pathway[62-64]
Satellite cellmTOR /p70S6[14]
OPCAMPK activation[68]
Inhibiting CSCsCSCHedgehog, Wnt, and TGF-β pathways[72]
Glioblastoma CSCC1CL1[74]
Colorectal cancer CSCMIF/CD74 axis[77]
Breast CSCMiR708/CD47 axis[81]
CSCNone[73,76,82]
Improving EPC functions and angiogenesisEPCAMPK/eNOS/NO signaling pathway; AMPK/mTOR/autophagy pathway; AMPK/mTOR/p70S6K pathway[89,90]
AntioxidantADSC, C2C12ROS&NO reduction/SOD activation[13,40,99]
PDLSCAKT-Nrf2 signaling pathway[27]
HMSCNrf2/GPX7[59]
hNSCAMPK activation[98,100,102]
Anti-inflammatoryhNSCAMPK/(IKK/NF-κB)[15]
rabbit AFSCHMGB1[104]
Immunomodulatory potentialADSCsAMPK/mTOR/STAT-1 signaling pathway[107]