4.6 Article

Extracellular vesicles delivering nuclear factor I/C for hard tissue engineering: Treatment of apical periodontitis and dentin regeneration

期刊

JOURNAL OF TISSUE ENGINEERING
卷 13, 期 -, 页码 -

出版社

SAGE PUBLICATIONS INC
DOI: 10.1177/20417314221084095

关键词

Extracellular vesicles; dentin regeneration; nuclear factor I/C; delivering transcription factor; apical periodontitis; stem cell from apical papilla

资金

  1. National Natural Science Foundation of China [81870737, 81771098, 81972545]
  2. Natural Science Foundation of Guangdong Province [2021A1515011779]
  3. Science and Technology Planning Project of Guangzhou City [202102020147]
  4. Guangdong Financial Fund for High-Caliber Hospital Construction [174-2018-XMZC-0001-03-0125/D-02]

向作者/读者索取更多资源

This study reveals the impact of apical periodontitis on tooth root development and the underlying mechanism of impaired odontoblastic differentiation of stem cells from apical papilla. The study also develops a novel strategy for dentin regeneration using a nuclear factor I/C-encapsulated extracellular vesicle.
Apical periodontitis (AP) causes arrest of tooth root development, which is associated with impaired odontoblastic differentiation of stem cells from apical papilla (SCAPs), but the underlying mechanism remains unclear. Here, we investigated roles of extracellular vesicle (EV) in AP and odontoblastic differentiation of SCAPs, moreover, a novel nuclear factor I/C (NFIC)-encapsulated EV was developed to promote dentin regeneration. We detected a higher expression of EV marker CD63 in inflamed apical papilla, and found that EVs from LPS-stimulated dental pulp cells suppressed odontoblastic differentiation of SCAPs through downregulating NFIC. Furthermore, we successfully constructed the NFIC-encapsulated EV by overexpressing NFIC in HEK293FT cells, which could upregulate cellular NFIC level in SCAPs, promoting the proliferation and migration of SCAPs, as well as dentinogenesis both in vitro and in vivo. Collectively, based on pathological roles of EV in AP, our study provides a novel strategy for dentin regeneration by exploiting EV to deliver NFIC.

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