TY - JOUR
T1 - Engineered pre-dentin with well-aligned hierarchical mineralized collagen fibril bundles promote bio-root regeneration
AU - Hu, Lei
AU - Cheng, Dongmei
AU - Yuan, Xin
AU - Gao, Zhenhua
AU - Yi, Qiao
AU - Zhao, Bin
AU - Wei, Fulan
AU - Xu, Junji
AU - Fan, Zhipeng
AU - Liu, Yi
AU - Wang, Xiumei
AU - Cui, Fuzhai
AU - Zhang, Chunmei
AU - Wang, Jinsong
AU - Wang, Songlin
N1 - Publisher Copyright:
© The Author(s) 2024.
PY - 2024/1/1
Y1 - 2024/1/1
N2 - Stem cell-mediated bio-root regeneration is an alternative tooth replacement strategy; however, physiologically functional bio-root regeneration with distinctive dentin structure remains challenging. In this study, the distinct arrangements of collagen fibril bundles were identified that account for hierarchical structural differences between dentin, cementum, and alveolar bone. Thus, an “engineered pre-dentin” was fabricated, which was a dentin hierarchical structure mimicking collagen (MC) scaffold, with well-aligned hierarchical mineralized collagen fibril bundles. The results revealed that it has a stronger effect on promoting biological root regeneration in nude mice and miniature pigs with dental pulp stem cell (DPSC) and periodontal ligament stem cell (PDLSC) sheets compared to hydroxyapatite tricalcium phosphate (HA/TCP). The success rate in the MC group was also higher than that in the HA/TCP group (67% and 33%, respectively). In conclusion, the hierarchical dentin-mimicking scaffold can enhance the regeneration of bio-roots, which provides a promising strategy for tooth regeneration.
AB - Stem cell-mediated bio-root regeneration is an alternative tooth replacement strategy; however, physiologically functional bio-root regeneration with distinctive dentin structure remains challenging. In this study, the distinct arrangements of collagen fibril bundles were identified that account for hierarchical structural differences between dentin, cementum, and alveolar bone. Thus, an “engineered pre-dentin” was fabricated, which was a dentin hierarchical structure mimicking collagen (MC) scaffold, with well-aligned hierarchical mineralized collagen fibril bundles. The results revealed that it has a stronger effect on promoting biological root regeneration in nude mice and miniature pigs with dental pulp stem cell (DPSC) and periodontal ligament stem cell (PDLSC) sheets compared to hydroxyapatite tricalcium phosphate (HA/TCP). The success rate in the MC group was also higher than that in the HA/TCP group (67% and 33%, respectively). In conclusion, the hierarchical dentin-mimicking scaffold can enhance the regeneration of bio-roots, which provides a promising strategy for tooth regeneration.
KW - Bio-root
KW - dentin mimicked scaffold
KW - hierarchical structure
KW - tissue regeneration
UR - https://www.scopus.com/pages/publications/85206084066
U2 - 10.1177/20417314241280961
DO - 10.1177/20417314241280961
M3 - 文章
AN - SCOPUS:85206084066
SN - 2041-7314
VL - 15
JO - Journal of Tissue Engineering
JF - Journal of Tissue Engineering
ER -