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Three-dimensional Printed Scaffolds with Gelatin and Platelets Enhance In vitro Preosteoblast Growth Behavior and the Sustained-release Effect of Growth Factors

摘要Background:Three-dimensional (3D) printing technology holds great promise for treating diseases or injuries that affect human bones with enhanced performance over traditional techniques.Different patterns of design can lead to various mechanical properties and biocompatibility to various degrees.However,there is still a long way to go before we can fully take advantage of 3D printing technologies.Methods:This study tailored 3D printed scaffolds with gelatin and platelets to maximize bone regeneration.The scaffolds were designed with special internal porous structures that can allow bone tissue and large molecules to infiltrate better into the scaffolds.They were then treated with gelatin and platelets via thermo-crosslinking and freeze-drying,respectively.Vascular endothelial growth factor (VEGF) and transforming growth factor (TGF)-β1 were measured at different time points after the scaffolds had been made.Cell proliferation and cytotoxicity were determined via cell counting kit-8 (CCK-8) assay.Results:There was a massive boost in the level of VEGF and TGF-β1 released by the scaffolds with gelatin and platelets compared to that of scaffolds with only gelatin.After 21 days of culture,the CCK-8 cell counts of the control group and treated group were significantly higher than that of the blank group (P < 0.05).The cytotoxicity test also indicated the safety of the scaffolds.Conclusions:Our experiments confirmed that the 3D printed scaffolds we had designed could provide a sustained-release effect for growth factors and improve the proliferation of preosteoblasts with little cytotoxicity in vitro.They may hold promise as bone graft substitute materials in the future.

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作者单位 Department of Orthopaedic Surgery, Peking Union Medical College Hospital, Beijing 100730, China [1] Department of Clinical Medicine, Peking Union Medical College, Chinese Academy of Medical Sciences, Beijing 100730, China [2]
栏目名称 Original Articles
DOI 10.4103/0366-6999.192770
发布时间 2016-11-30
基金项目
This research was supported by a grant from the Youth Foundation of Chinese Academy of Medical Sciences
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中华医学杂志(英文版)

中华医学杂志(英文版)

2016年129卷21期

2576-2581页

SCIMEDLINEISTICCSCDCABP

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