Thadavirul Napaphat, Pavasant Prasit, Supaphol Pitt
a The Petroleum and Petrochemical College and the Center of Excellence on Petrochemical and Materials Technology (PETROMAT) , Chulalongkorn University , Bangkok 10330 , Thailand.
J Biomater Sci Polym Ed. 2014;25(17):1986-2008. doi: 10.1080/09205063.2014.966800. Epub 2014 Oct 7.
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.
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。