3D生物打印
脚手架
微粒
再生(生物学)
组织工程
化学
纳米技术
材料科学
生物医学工程
工程类
细胞生物学
化学工程
生物
作者
Ji Min Seok,Min Ji Kim,Jin Ho Park,Dahong Kim,Dongjin Lee,Seon Ju Yeo,Jun Hee Lee,Kangwon Lee,June‐Ho Byun,Se Heang Oh,Su A Park
标识
DOI:10.1016/j.mtbio.2023.100685
摘要
Extrusion-based bioprinting technology is widely used for tissue regeneration and reconstruction. However, the method that uses only hydrogel as the bioink base material exhibits limited biofunctional properties and needs improvement to achieve the desired tissue regeneration. In this study, we present a three-dimensionally printed bioactive microparticle-loaded scaffold for use in bone regeneration applications. The unique structure of the microparticles provided sustained release of growth factor for > 4 weeks without the use of toxic or harmful substances. Before and after printing, the optimal particle ratio in the bioink for cell viability demonstrated a survival rate of ≥ 85% over 7 days. Notably, osteogenic differentiation and mineralization-mediated by human periosteum-derived cells in scaffolds with bioactive microparticles-increased over a 2-week interval. Here, we present an alternative bioprinting strategy that uses the sustained release of bioactive microparticles to improve biofunctional properties in a manner that is acceptable for clinical bone regeneration applications.
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