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Autophagy in SDF-1α-mediated DPSC migration and pulp regeneration

Authors :
Shuai Nie
Yufeng Zhang
Shu-juan Jian
Jingwen Yang
Lu Zhang
Chunyan Wan
Guang-tai Song
Zheyi Sun
Zhi Chen
Source :
Biomaterials. 44:11-23
Publication Year :
2015
Publisher :
Elsevier BV, 2015.

Abstract

Critical morphological requirements for pulp regeneration are tissues replete with vascularisation, neuron formation, and dentin deposition. Autophagy was recently shown to be related to angiogenesis, neural differentiation, and osteogenesis. The present study aimed to investigate the involvement of autophagy in stromal cell-derived factor-1α (SDF-1α)-mediated dental pulp stem cell (DPSC) migration and pulp regeneration, and identify its presence during pulp revascularisation of pulpectomised dog teeth with complete apical closure. In vitro studies showed that SDF-1α enhanced DPSCs migration and optimised focal adhesion formation and stress fibre assembly, which were accompanied by autophagy. Moreover, autophagy inhibitors significantly suppressed, whereas autophagy activator substantially augmented SDF-1α-stimulated DPSCs migration. Furthermore, after ectopic transplantation of tooth fragment/silk fibroin scaffold with DPSCs into nude mice, pulp-like tissues with vascularity, well-organised fibrous matrix formation, and new dentin deposition along the dentinal wall were generated in SDF-1α-loaded samples accompanied by autophagy. More importantly, in a pulp revascularisation model in situ, SDF-1α-loaded silk fibroin scaffolds improved the de novo ingrowth of pulp-like tissues in pulpectomised mature dog teeth, which correlated with the punctuated LC3 and Atg5 expressions, indicating autophagy. Our findings provide novel insights into the pulp regeneration mechanism, and SDF-1α shows promise for future clinical application in pulp revascularisation.

Details

ISSN :
01429612
Volume :
44
Database :
OpenAIRE
Journal :
Biomaterials
Accession number :
edsair.doi.dedup.....41c6f4e35e9754c7a26824318cfbea2c
Full Text :
https://doi.org/10.1016/j.biomaterials.2014.12.006