Biofabrication of SDF-1 Functionalized 3D-Printed Cell-Free Scaffolds for Bone Tissue Regeneration.
Animals
Biocompatible Materials
/ chemistry
Bone Morphogenetic Protein 7
/ pharmacology
Bone Regeneration
/ drug effects
Chemokine CXCL12
/ pharmacology
Collagen Type I
/ chemistry
Femur
/ cytology
Materials Testing
Osteogenesis
/ drug effects
Polyesters
/ chemistry
Porosity
Printing, Three-Dimensional
Rats
Rats, Wistar
Tissue Scaffolds
/ chemistry
Wound Healing
/ drug effects
X-Ray Microtomography
3D printed cell-free scaffold
bone tissue regeneration
collagen type I
in vivo model of critical size defects
polylactide
stromal-derived factor 1
Journal
International journal of molecular sciences
ISSN: 1422-0067
Titre abrégé: Int J Mol Sci
Pays: Switzerland
ID NLM: 101092791
Informations de publication
Date de publication:
21 Mar 2020
21 Mar 2020
Historique:
received:
25
02
2020
revised:
19
03
2020
accepted:
20
03
2020
entrez:
5
4
2020
pubmed:
5
4
2020
medline:
14
1
2021
Statut:
epublish
Résumé
Large segmental bone defects occurring after trauma, bone tumors, infections or revision surgeries are a challenge for surgeons. The aim of our study was to develop a new biomaterial utilizing simple and cheap 3D-printing techniques. A porous polylactide (PLA) cylinder was printed and functionalized with stromal-derived factor 1 (SDF-1) or bone morphogenetic protein 7 (BMP-7) immobilized in collagen type I. Biomechanical testing proved biomechanical stability and the scaffolds were implanted into a 6 mm critical size defect in rat femur. Bone growth was observed via x-ray and after 8 weeks, bone regeneration was analyzed with µCT and histological staining methods. Development of non-unions was detected in the control group with no implant. Implantation of PLA cylinder alone resulted in a slight but not significant osteoconductive effect, which was more pronounced in the group where the PLA cylinder was loaded with collagen type I. Addition of SDF-1 resulted in an osteoinductive effect, with stronger new bone formation. BMP-7 treatment showed the most distinct effect on bone regeneration. However, histological analyses revealed that newly formed bone in the BMP-7 group displayed a holey structure. Our results confirm the osteoinductive character of this 3D-biofabricated cell-free new biomaterial and raise new options for its application in bone tissue regeneration.
Identifiants
pubmed: 32245268
pii: ijms21062175
doi: 10.3390/ijms21062175
pmc: PMC7139557
pii:
doi:
Substances chimiques
Biocompatible Materials
0
Bone Morphogenetic Protein 7
0
CXCL12 protein, human
0
Chemokine CXCL12
0
Collagen Type I
0
Polyesters
0
poly(lactide)
459TN2L5F5
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Subventions
Organisme : Biomatics
ID : Biomatics
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