Three-Dimensional Printed Multiphase Scaffolds for Regeneration of Periodontium Complex

牙骨质 牙周纤维 牙槽 牙本质 化学 生物医学工程 再生(生物学) 牙周组织 祖细胞 成牙骨质细胞 细胞生物学 干细胞 材料科学 牙科 生物 医学 复合材料
作者
Chang H. Lee,Jeffrey T. Hajibandeh,Takahiro Suzuki,Andrew Fan,Peng Shang,Jeremy J. Mao
出处
期刊:Tissue Engineering Part A [Mary Ann Liebert, Inc.]
卷期号:20 (7-8): 1342-1351 被引量:207
标识
DOI:10.1089/ten.tea.2013.0386
摘要

Tooth-supporting periodontium forms a complex with multiple tissues, including cementum, periodontal ligament (PDL), and alveolar bone. In this study, we developed multiphase region-specific microscaffolds with spatiotemporal delivery of bioactive cues for integrated periodontium regeneration. Polycarprolactione-hydroxylapatite (90:10 wt%) scaffolds were fabricated using three-dimensional printing seamlessly in three phases: 100-μm microchannels in Phase A designed for cementum/dentin interface, 600-μm microchannels in Phase B designed for the PDL, and 300-μm microchannels in Phase C designed for alveolar bone. Recombinant human amelogenin, connective tissue growth factor, and bone morphogenetic protein-2 were spatially delivered and time-released in Phases A, B, and C, respectively. Upon 4-week in vitro incubation separately with dental pulp stem/progenitor cells (DPSCs), PDL stem/progenitor cells (PDLSCs), or alveolar bone stem/progenitor cells (ABSCs), distinctive tissue phenotypes were formed with collagen I-rich fibers especially by PDLSCs and mineralized tissues by DPSCs, PDLSCs, and ABSCs. DPSC-seeded multiphase scaffolds upon in vivo implantation yielded aligned PDL-like collagen fibers that inserted into bone sialoprotein-positive bone-like tissue and putative cementum matrix protein 1-positive/dentin sialophosphoprotein-positive dentin/cementum tissues. These findings illustrate a strategy for the regeneration of multiphase periodontal tissues by spatiotemporal delivery of multiple proteins. A single stem/progenitor cell population appears to differentiate into putative dentin/cementum, PDL, and alveolar bone complex by scaffold's biophysical properties and spatially released bioactive cues.

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