Review
Copyright ©The Author(s) 2021.
World J Stem Cells. Jul 26, 2021; 13(7): 753-775
Published online Jul 26, 2021. doi: 10.4252/wjsc.v13.i7.753
Table 3 Summary of pre-clinical studies using gene-modified bone marrow mesenchymal stem cells
Ref.
Animal/model
Cell/cell number
Transfected gene
Method of delivery
Control
Timeline
Outcome measurement
Gulotta et al[72], 2010Rat/Unilateral detachment and repair of the supraspinatus tendonBMSCs/× 106MT1-MMPBMSCs were pelleted down and mixed with fibrin sealant for implantationRotator cuff repair with normal BMSCs2 and 4 wkHistology, biomechanics
Gulotta et al[76], 2011Rat/Unilateral detachment and repair of the supraspinatus tendonBMSCs/× 106ScxBMSCs were pelleted down and mixed with fibrin sealant for implantationRotator cuff repair with normal BMSCs2 and 4 wkHistology, biomechanics
Gulotta et al[77], 2011Rat/Unilateral detachment and repair of the supraspinatus tendonBMSCs/× 106BMP-13BMSCs were pelleted down and mixed with fibrin sealant for implantationRotator cuff repair with normal BMSCs2 and 4 wkHistology, biomechanics
Dong et al[78], 2012Rabbit/Unilateral ACL reconstructions using gastrocnemius tendon autograftsBMSCs/× 107BMP-2Grafts were coated with BMSCs in a fibrin glue carrierACL reconstruction without BMSCs4 and 8 wkHistology, biomechanics
Wang et al[79], 2017Rabbit/Unilateral ACL reconstructions using flexor digitorum longus tendon autograftsBMSCs/-TGF-βBMSCs were injected into the bone tunnel and graft tendon cavityACL reconstruction with normal BMSCs6 and 12 wkHistology, immunohistochemistry, biomechanics, 3D-CT
Wang et al[80], 2018Rat/Bilateral detachment and repair of the supraspinatus tendonBMSCs/1.6 × 107PDGF-BBMSCs with fibrin glue implanted into the defectsRotator cuff repair with irrelevant plasmid-transfected BMSCs4 and 8 wkHistology, immunohistochemistry, biomechanics