Cornea |
SF, PVA, nano-Hydroxyapatite, Dimethyl sulfoxide (DMSO), Genipin (GP) |
In vitro |
Chemical cross-linking agents |
HCFs proliferate in composite hydrogel pores |
[221] |
SF, PA, N,N′-MBAAm(cross-linker) |
In vitro |
Chemical cross-linking agents |
Promote keratinocyte migration |
[223] |
Acetone Optima, SF solution |
In vitro |
Chemical cross-linking agents |
Provide a place for HCECs to adhere and proliferate |
[225] |
SF solution, GelMA, Irgacure 2959(photoinitiator) |
In vitro |
Photocrosslinking |
SF improved the mechanical stability and adhesion of the composite hydrogel and reduced the degradation rate |
[14] |
Glycidyl methacrylate, SF solution |
In vitro |
Photocrosslinking |
Effectively inhibit bacterial growth by loading antibiotics |
[236] |
SF, flavin mononucleotide (FMN) |
In vitro |
Photocrosslinking |
Change the optical thickness of the cornea |
[241] |
Dental |
RSF, carbamide |
In vitro |
Shear force |
Support the proliferation of hDPSCs |
[263] |
SF, Riboflavin (photoinitiator) |
In vitro |
Photocrosslinking |
Support the proliferation of hDPSCs |
[264] |
SF |
In vitro |
Self-assembly |
Supporting stem cell proliferation of human deciduous teeth |
[265] |
SF, HA, Irgacure 2959(photoinitiator) |
In vitro |
Photocrosslinking |
Control the differentiation of hDPSCs and promote the formation of new tissues |
[266] |
SF, Td drug, Mel crystalline, Type A porcine skin gelatin, Irgacure 2959, methacrylic anhydride, High methoxyl Pectin, Thiogylcolic acid |
In vitro |
Electric field |
Promote hDPSCs proliferation and odontogenic differentiation |
[274] |
Tympanic Membrane |
SF scaffolds (SFS) |
In vitro |
|
Complete closure of the piercing site and early recovery of hearing |
[286] |
Polycaprolactone (PCL), SF, human umbilical cord serum (hUCS) |
In vitro |
|
Effectively heals perforated tympanic membranes and improves hearing |
[288] |