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通过与羟基磷灰石结合来改善双浸出聚己内酯多孔支架用于骨组织再生

Improvement of dual-leached polycaprolactone porous scaffolds by incorporating with hydroxyapatite for bone tissue regeneration.

作者信息

Thadavirul Napaphat, Pavasant Prasit, Supaphol Pitt

机构信息

a The Petroleum and Petrochemical College and the Center of Excellence on Petrochemical and Materials Technology (PETROMAT) , Chulalongkorn University , Bangkok 10330 , Thailand.

出版信息

J Biomater Sci Polym Ed. 2014;25(17):1986-2008. doi: 10.1080/09205063.2014.966800. Epub 2014 Oct 7.

Abstract

Polycaprolactone (PCL)/hydroxyapatite (HA) composite scaffolds were prepared by combining solvent casting and salt particulate leaching with a polymer leaching technique. The hydrophilicity of the dual-leached scaffold was improved by alkaline (NaOH) treatment. Well-defined interconnected pores were detected by scanning electron microscopy. The water absorption capacity of the NaOH-treated PCL/HA dual-leached scaffold increased greatly, confirming that the hydrophilicity of the scaffold was improved by NaOH treatment. The compressive modulus of the PCL/HA dual-leached scaffold was greatly increased by the addition of HA particles. An indirect evaluation of the cytotoxicity of all PCL dual-leached scaffolds with mouse fibroblastic cells (L929) and mouse calvaria-derived pre-osteoblastic cells (MC3T3-E1) indicated that the PCL dual-leached scaffolds are non-toxic to cells. The ability of the scaffolds to support mouse calvaria-derived pre-osteoblastic cell (MC3T3-E1) attachment, proliferation, differentiation, and mineralization was also evaluated. Although the viability of cells was lower on the PCL/HA dual-leached scaffold than on the tissue-culture polystyrene plates (TCPS) and on the other substrates at early time points, both the PCL and NaOH-treated PCL/HA dual-leached scaffolds supported the attachment of MC3T3-E1 at significantly higher levels than TCPS. During the proliferation period (days 1-3), all of the PCL dual-leached scaffolds were able to support the proliferation of MC3T3-E1 at higher levels than the TCPS; in addition, the cells grown on NaOH-treated PCL/HA dual-leached scaffolds proliferated more rapidly. The cells cultured on the surfaces of NaOH-treated PCL/HA dual-leached scaffolds had the highest rate of mineral deposition.

摘要

通过将溶剂浇铸和盐颗粒沥滤与聚合物沥滤技术相结合,制备了聚己内酯(PCL)/羟基磷灰石(HA)复合支架。通过碱性(NaOH)处理提高了双沥滤支架的亲水性。通过扫描电子显微镜检测到了明确的相互连通的孔隙。NaOH处理的PCL/HA双沥滤支架的吸水能力大大提高,证实了NaOH处理提高了支架的亲水性。添加HA颗粒极大地提高了PCL/HA双沥滤支架的压缩模量。对所有PCL双沥滤支架与小鼠成纤维细胞(L929)和小鼠颅骨来源的前成骨细胞(MC3T3-E1)的细胞毒性进行的间接评估表明,PCL双沥滤支架对细胞无毒。还评估了支架支持小鼠颅骨来源的前成骨细胞(MC3T3-E1)附着、增殖、分化和矿化的能力。尽管在早期时间点,PCL/HA双沥滤支架上的细胞活力低于组织培养聚苯乙烯板(TCPS)和其他底物上的细胞活力,但PCL和NaOH处理的PCL/HA双沥滤支架对MC3T3-E1的附着支持水平均明显高于TCPS。在增殖期(第1-3天),所有PCL双沥滤支架支持MC3T3-E1增殖的水平均高于TCPS;此外,在NaOH处理的PCL/HA双沥滤支架上生长的细胞增殖更快。在NaOH处理的PCL/HA双沥滤支架表面培养的细胞具有最高的矿物质沉积率。

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