2024
DOI: 10.1016/j.bioactmat.2023.10.009
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Genetically engineered M2-like macrophage-derived exosomes for P. gingivalis-suppressed cementum regeneration: From mechanism to therapy

Xin Huang,
Yifei Deng,
Junhong Xiao
et al.
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Cited by 3 publications
(2 citation statements)
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References 47 publications
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“…Furthermore, we have elucidated multiple molecular mechanisms underlying the inhibition of CB mineralization during periodontitis, including identifying the positive regulatory genes, CXXC5 and miR-181b-5p [110][111][112], and negative regulatory genes, CKIP-1 and miR-155-3p, of CB mineralization [113,114]. Additionally, we have reported on the enhancing effect of M2 macrophages on CB mineralization [115,116].…”
Section: Cementummentioning
confidence: 99%
“…Furthermore, we have elucidated multiple molecular mechanisms underlying the inhibition of CB mineralization during periodontitis, including identifying the positive regulatory genes, CXXC5 and miR-181b-5p [110][111][112], and negative regulatory genes, CKIP-1 and miR-155-3p, of CB mineralization [113,114]. Additionally, we have reported on the enhancing effect of M2 macrophages on CB mineralization [115,116].…”
Section: Cementummentioning
confidence: 99%
“…163 It can be seen that effective identification of cell markers related to wound healing can provide ideas for precise targeted therapy of exosomes. The extraction methods of exosomes include: density gradient centrifugation (including ultracentrifugation), 164 ultrafiltration, 165 and size exclusion chromatography, 158 etc. At present, mesenchymal stem cells used for exosome research are bone marrow-derived mesenchymal stem cells, embryonicderived mesenchymal stem cells, umbilical cord-derived mesenchymal stem cells, and adipose-derived mesenchymal stem cells, etc.…”
Section: Othersmentioning
confidence: 99%