Faculty of Engineering, Department of Bioengineering, Adana Alparslan Türkeş Science and Technology University, Adana, Türkiye.
Faculty of Engineering, Department of Bioengineering, Adana Alparslan Türkeş Science and Technology University, Adana, Türkiye.
J Mech Behav Biomed Mater. 2023 Oct;146:106088. doi: 10.1016/j.jmbbm.2023.106088. Epub 2023 Aug 21.
In this study, gelation behavior and cytocompatibility of 2.5D chitosan hydrogels were investigated in the presence of TiO, CeO and TiO-CeO composite nanoparticles. Chemical co-precipitation method was used for nanoparticle synthesis and they were heat treated at 600 °C and 700 °C. Gelation of the chitosan solutions was carried out at 37 °C in the presence of glycerol phosphate and genipin as crosslinkers. The gelation time of chitosan was decreased by all of the nanoparticles whereas its elastic modulus was increased by nanoparticles addition. Chitosan solutions containing CeO or TiO-CeO nanoparticles showed faster gel formation compared to chitosan solutions containing only TiO nanoparticles. CeO@700 °C nanoparticles decreased the gelation time by 46% and increased elastic modulus by 14%. Average pore diameter of the hydrogel decreased from 127 ± 62 μm to 77 ± 33 μm, water uptake decreased 21% and thermal stability increased in the presence of CeO@700 °C nanoparticles compared to chitosan hydrogel. Cell viability results indicated that chitosan hydrogels with or without nanoparticles created 2.5D environment supporting cellular proliferation approximately 1.5 times more than TCPS due to their high porous surfaces. Immunofluorescence images were also supported cell viability results. Therefore, CeO or TiO-CeO composite nanoparticles incorporated 2.5D chitosan hydrogels may be alternative tissue engineering materials with their fast gelation, ease of use, low cost, light transparency, and cytocompatibility.
在这项研究中,研究了 TiO 2 、CeO 和 TiO-CeO 复合纳米粒子存在下的 2.5D 壳聚糖水凝胶的胶凝行为和细胞相容性。采用化学共沉淀法合成纳米粒子,并在 600 和 700 下进行热处理。壳聚糖溶液在甘油磷酸和京尼平作为交联剂的存在下在 37 下凝胶化。所有纳米粒子都降低了壳聚糖的凝胶时间,而纳米粒子的加入增加了其弹性模量。含有 CeO 或 TiO-CeO 纳米粒子的壳聚糖溶液比仅含有 TiO 纳米粒子的壳聚糖溶液形成更快的凝胶。CeO@700 纳米粒子使凝胶时间缩短了 46%,弹性模量增加了 14%。与壳聚糖水凝胶相比,CeO@700 纳米粒子存在时水凝胶的平均孔径从 127±62μm 减小到 77±33μm,水摄取量减少了 21%,热稳定性增加。细胞活力结果表明,含有或不含有纳米粒子的壳聚糖水凝胶由于其高多孔表面,为细胞增殖提供了 2.5D 环境,其支持细胞增殖的能力约是 TCPS 的 1.5 倍。免疫荧光图像也支持细胞活力结果。因此,掺入 CeO 或 TiO-CeO 复合纳米粒子的 2.5D 壳聚糖水凝胶可能是具有快速胶凝、易于使用、低成本、透光性和细胞相容性的替代组织工程材料。