4.8 Article

Combination of aligned PLGA/Gelatin electrospun sheets, native dental pulp extracellular matrix and treated dentin matrix as substrates for tooth root regeneration

期刊

BIOMATERIALS
卷 52, 期 -, 页码 56-70

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2015.02.011

关键词

Electrospun sheet; Extracellular matrix; Decellularization; Tooth root; Regeneration

资金

  1. National Basic Research Program (China) [2010CB944800]
  2. Nature Science Foundation of China (China) [31470947, 81271095, 81271119]
  3. International Cooperation Program of China (China) [2013DFG32770, 2011DFA51970]
  4. Trans-Century Training Pro-gramme Foundation for the Talents of Humanities and Social Science by the State Eduation Commission (China) [NCET-13-0385]
  5. Doctoral Foundation of Ministry of Education of China [20110181120067, 20110181110089, 20120181120013]
  6. Key Technology R&D Program of Sichuan Province [2010FZ0055, 2012SZ0013, 12ZC0493, 13ZC0971, 2013GZX0158, 2013SZ0015, 13ZC0979]
  7. Basic Research Program of Sichuan Province [2011JY0125, 12JC0212, 2012JY0077, 2013JY0019]

向作者/读者索取更多资源

In tissue engineering, scaffold materials provide effective structural support to promote the repair of damaged tissues or organs through simulating the extracellular matrix (ECM) microenvironments for stem cells. This study hypothesized that simulating the ECM microenvironments of periodontium and dental pulp/dentin complexes would contribute to the regeneration of tooth root. Here, aligned PLGA/Gelatin electrospun sheet (APES), treated dentin matrix (TDM) and native dental pulp extracellular matrix (DPEM) were fabricated and combined into APES/TDM and DPEM/TDM for periodontium and dental pulp regeneration, respectively. This study firstly examined the physicochemical properties and biocompatibilities of both APES and DPEM in vitro, and further investigated the degradation of APES and revascularization of DPEM in vivo. Then, the potency of APES/TDM and DPEM/TDM in odontogenic induction was evaluated via co-culture with dental stem cells. Finally, we verified the periodontium and dental pulp/dentin complex regeneration in the jaw of miniature swine. Results showed that APES possessed aligned fiber orientation which guided cell proliferation while DPEM preserved the intrinsic fiber structure and ECM proteins. Importantly, both APES/TDM and DPEM/TDM facilitated the odontogenic differentiation of dental stem cells in vitro. Seeded with stem cells, the sandwich composites (APES/TDM/DPEM) generated tooth root-like tissues after being transplanted in porcine jaws for 12w. In dental pulp/dentin complex-like tissues, columnar odontoblasts-like layer arranged along the interface between newly-formed predentin matrix and dental pulp-like tissues in which blood vessels could be found; in periodontium complex-like tissues, cellular cementum and periodontal ligament (PDL)-like tissues were generated on the TDM surface. Thus, above results suggest that APES and DPEM exhibiting appropriate physicochemical properties and well biocompatibilities, in accompany with TDM, could make up an ECM microenvironment for tooth root regeneration, which also offers a strategy for complex tissue or organ regeneration. (C) 2015 Elsevier Ltd. All rights reserved.

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