Tdasc-evs
Intervention1 paper4 findings
- Animals1
Outcomes
3Wound closure
upin mice1upin pigs1Very low certainty
1 study
Wound closure
upin mice1upin pigs1Very low certainty
Tdasc-evs improve wound closure in pigs.
Animalsdiabetic large animal model
SFL-3D-cultured adipose mesenchymal cell-derived extracellular vesicles promote diabetic wound healing by alleviating microvascular endothelial senescence via PI3K/AKT/mTOR/4EBP1-mediated cap-dependent translation · Burns & trauma · 22 Jun 2026
Tdasc-evs improve wound closure in mice.
Animalsdiabetic wound model
SFL-3D-cultured adipose mesenchymal cell-derived extracellular vesicles promote diabetic wound healing by alleviating microvascular endothelial senescence via PI3K/AKT/mTOR/4EBP1-mediated cap-dependent translation · Burns & trauma · 22 Jun 2026
PI3K–AKT signalling
upin human cells1Very low certainty
1 study
PI3K–AKT signalling
upin human cells1Very low certainty
Tdasc-evs activate PI3K–AKT signalling in human cells.
Cellshigh-glucose-induced HDMECs
SFL-3D-cultured adipose mesenchymal cell-derived extracellular vesicles promote diabetic wound healing by alleviating microvascular endothelial senescence via PI3K/AKT/mTOR/4EBP1-mediated cap-dependent translation · Burns & trauma · 22 Jun 2026
Senescence
downin human cells1Very low certainty
1 study
Senescence
downin human cells1Very low certainty
Tdasc-evs decrease senescence in human cells.
Cellshigh-glucose-induced
SFL-3D-cultured adipose mesenchymal cell-derived extracellular vesicles promote diabetic wound healing by alleviating microvascular endothelial senescence via PI3K/AKT/mTOR/4EBP1-mediated cap-dependent translation · Burns & trauma · 22 Jun 2026