Department of Chemistry "Ugo Schiff" and CSGI, University of Florence, via della Lastruccia 3, Sesto Fiorentino, 50019 Florence, Italy.
J Colloid Interface Sci. 2018 Feb 1;511:145-154. doi: 10.1016/j.jcis.2017.09.094. Epub 2017 Sep 28.
Gelatin is widely investigated for the fabrication of synthetic scaffolds in bone tissue engineering. Practical limitations to its use are mainly due to the fast dissolution rate in physiological conditions and to the lack of pores with suitable dimensions for cell permeation. The aim of this work is to exploit imogolite clays as nucleation sites for the growth of calcium phosphates in gelatin-based hydrogels and to take advantage of a cryogenic treatment to obtain pores of ∼100µm.
We evaluated the effect of imogolites and a biocompatible cross-linker on the gelatin network in terms of morphology, thermal and rheological behavior. The hydrogels were cryogenically-treated and characterized to investigate the modification of the polymer network, both at the micro- and nano-scale. The samples were mineralized to investigate the effect of imogolites on the formation of calcium phosphates.
The interaction between gelatin, imogolite and cross-linker leads to the modification of the hydrogel structure at the micro-scale, while minor effects are detected at the nano-scale. The cryogenic procedure is successful in generating pores with the desired size, while the presence of imogolites in the hydrogel promotes hydroxyapatites formation. These results demonstrate that imogolites can be effectively employed as functional fillers in polymer-based scaffolds.
明胶广泛应用于骨组织工程中合成支架的制造。其实际应用的主要限制是在生理条件下快速溶解以及缺乏适合细胞渗透的合适尺寸的孔。本工作旨在利用埃洛石粘土作为明胶基水凝胶中磷酸钙生长的成核点,并利用低温处理获得约 100µm 的孔。
我们评估了埃洛石和生物相容性交联剂对明胶网络形态、热和流变性能的影响。对水凝胶进行了低温处理,并对其进行了表征,以研究聚合物网络在微观和纳米尺度上的改性。对样品进行了矿化处理,以研究埃洛石对磷酸钙形成的影响。
明胶、埃洛石和交联剂之间的相互作用导致水凝胶结构在微观尺度上发生变化,而在纳米尺度上则检测到较小的变化。低温处理成功地生成了所需尺寸的孔,而水凝胶中埃洛石的存在促进了羟基磷灰石的形成。这些结果表明,埃洛石可有效地用作聚合物基支架中的功能性填充剂。