Potential dental pulp revascularization and odonto-/osteogenic capacity of a novel transplant combined with dental pulp stem cells and platelet-rich fibrin

被引:0
|
作者
Yong-Jin Chen
Yin-Hua Zhao
Ya-Juan Zhao
Nan-Xia Liu
Xin Lv
Qiang Li
Fa-Ming Chen
Min Zhang
机构
[1] The Fourth Military Medical University,State Key Laboratory of Military Stomatology, Department of General Dentistry and Emergency, School of Stomatology
[2] The Fourth Military Medical University,State Key Laboratory of Military Stomatology, Department of Periodontology & Oral Medicine, School of Stomatology
来源
Cell and Tissue Research | 2015年 / 361卷
关键词
Pulp revascularization; Dental pulp stem cells; Platelet-rich fibrin; Cell sheets; Regenerative dentistry;
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中图分类号
学科分类号
摘要
Our aim is to investigate the cytobiological effects of autologous platelet-rich fibrin (PRF) on dental pulp stem cells (DPSCs) and to explore the ectopic and orthotopic possibilities of dental pulp revascularization and pulp-dentin complex regeneration along the root canal cavities of the tooth by using a novel tissue-engineered transplant composed of cell-sheet fragments of DPSCs and PRF granules. Canine DPSCs were isolated and characterized by assaying their colony-forming ability and by determining their cell surface markers and osteogenic/adipogenic differentiation potential. The biological effects of autologous PRF on DPSCs, including cell proliferation, alkaline phosphatase (ALP) activity and odonto-/osteogenic gene expression, were then investigated and quantified. A novel transplant consisting of cell-sheet fragments of DPSCs and PRF granules was adopted to regenerate pulp-dentin-like tissues in the root canal, both subcutaneously in nude mice and in the roots of canines. PRF promoted the proliferation of DPSCs in a dose- and time-dependent manner and induced the differentiation of DPSCs to odonto-/osteoblastic fates by increasing the expression of the Alp, Dspp, Dmp1 and Bsp genes. Transplantation of the DPSC/PRF construct led both to a favorable regeneration of homogeneous and compact pulp-like tissues with abundantly distributed blood capillaries and to the deposition of regenerated dentin along the intracanal walls at 8 weeks post-operation. Thus, the application of DPSC/PRF tissue constructs might serve as a potential therapy in regenerative endodontics for pulp revitalization or revascularization.
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页码:439 / 455
页数:16
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