TY - JOUR
T1 - Properties of Collagen/Sodium Alginate Hydrogels for Bioprinting of Skin Models
AU - Jiao, Tian
AU - Lian, Qin
AU - Lian, Weilong
AU - Wang, Yonghui
AU - Li, Dichen
AU - Reis, Rui L.
AU - Oliveira, Joaquim Miguel
N1 - Publisher Copyright:
© 2022, Jilin University.
PY - 2023/1
Y1 - 2023/1
N2 - 3D printing technology has great potential for the reconstruction of human skin. However, the reconstructed skin has some differences from natural skin, largely because the hydrogel used does not have the appropriate biological and physical properties to allow healing and regeneration. This study examines the swelling, degradability, microstructure and biological properties of Collagen/Sodium Alginate (Col/SA) hydrogels of differing compositions for the purposes of skin printing. Increasing the content of sodium alginate causes the hydrogel to exhibit stronger mechanical and swelling properties, a faster degradation ratio, smaller pore size, and less favorable biological properties. An optimal 1% collagen hydrogel was used to print bi-layer skin in which fibroblasts and keratinocytes showed improved spreading and proliferation as compared to other developed formulations. The Col/SA hydrogels presented suitable tunability and properties to be used as a bioink for bioprinting of skin aiming at finding applications as 3D models for wound healing research.
AB - 3D printing technology has great potential for the reconstruction of human skin. However, the reconstructed skin has some differences from natural skin, largely because the hydrogel used does not have the appropriate biological and physical properties to allow healing and regeneration. This study examines the swelling, degradability, microstructure and biological properties of Collagen/Sodium Alginate (Col/SA) hydrogels of differing compositions for the purposes of skin printing. Increasing the content of sodium alginate causes the hydrogel to exhibit stronger mechanical and swelling properties, a faster degradation ratio, smaller pore size, and less favorable biological properties. An optimal 1% collagen hydrogel was used to print bi-layer skin in which fibroblasts and keratinocytes showed improved spreading and proliferation as compared to other developed formulations. The Col/SA hydrogels presented suitable tunability and properties to be used as a bioink for bioprinting of skin aiming at finding applications as 3D models for wound healing research.
KW - Bioink
KW - Bionic
KW - Bioprinting
KW - Collagen/sodium alginate hydrogel
KW - Skin
KW - Wound healing
UR - https://www.scopus.com/pages/publications/85137538290
U2 - 10.1007/s42235-022-00251-8
DO - 10.1007/s42235-022-00251-8
M3 - 文章
AN - SCOPUS:85137538290
SN - 1672-6529
VL - 20
SP - 105
EP - 118
JO - Journal of Bionic Engineering
JF - Journal of Bionic Engineering
IS - 1
ER -