Effects of calcium phosphates incorporation on structural, thermal and drug-delivery properties of collagen:chitosan scaffolds

M. Bertolo, V. Martins, A. Plepis
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引用次数: 4

Abstract

In this study, we evaluated how different procedures of calcium phosphate synthesis and its incorporation in collagen:chitosan scaffolds could affect their structural and thermal properties, aiming the obtention of homogeneous scaffolds which can act as drug delivery vehicles in bone tissue engineering. Therefore, three different scaffold preparation procedures were developed, changing the order of addition of the components: in CC-CNPM1 and CC-CNPM2, calcium phosphate synthesis was performed in situ in the chitosan gel (1%, w/w) followed by mixture with collagen (1%, w/w), with changes in the reagents used for calcium phosphate formation; in CC-CNPM3 procedure, calcium phosphate was synthesized ex situ and then incorporated into the collagen gel, in which chitosan in powder was mixed. In all procedures, 5% (in dry mass) of ciprofloxacin was incorporated. FTIR analysis confirmed the presence of calcium phosphate in all scaffolds. DSC curves showed that collagen denaturation temperature (Td) increased with calcium incorporation. SEM photomicrographs of scaffolds cross-section revealed porous scaffolds with calcium phosphate grains internally distributed in the polymeric matrix. XRD diffractograms indicated that the calcium phosphates obtained are hydroxyapatite. The pore size distribution was more homogeneous for CC-CNPM3, which also stood out for its smaller porosity and lower absorption in PBS. These results indicate that the in situ or ex situ phosphate incorporation in the scaffolds had a great influence on its structural properties, which also had consequences for ciprofloxacin release. CC-CNPM3 released a smaller amount of antibiotic (30%), but its release profile was better described by all the tested models.
磷酸钙掺入对胶原-壳聚糖支架结构、热及给药性能的影响
在本研究中,我们评估了磷酸钙合成及其掺入胶原壳聚糖支架的不同工艺对其结构和热性能的影响,旨在寻求在骨组织工程中作为药物传递载体的均质支架。因此,开发了三种不同的支架制备工艺,改变了组分的添加顺序:在CC-CNPM1和CC-CNPM2中,在壳聚糖凝胶(1%,w/w)中原位合成磷酸钙,然后与胶原混合(1%,w/w),不同的试剂用于磷酸钙的形成;在CC-CNPM3程序中,非原位合成磷酸钙,然后将其掺入胶原凝胶中,其中混合壳聚糖粉末。在所有程序中,加入5%(干质量)环丙沙星。FTIR分析证实了所有支架中磷酸钙的存在。DSC曲线显示胶原变性温度(Td)随钙掺入而升高。支架横截面的SEM显微照片显示多孔支架,磷酸钙颗粒内部分布在聚合物基质中。XRD衍射图表明所得磷酸钙为羟基磷灰石。CC-CNPM3的孔径分布更为均匀,其孔隙率更小,在PBS中的吸收率更低。这些结果表明,磷酸盐在支架中的原位或非原位掺入对支架的结构性能有很大的影响,并对环丙沙星的释放产生影响。CC-CNPM3释放量较少(30%),但其释放谱被所有测试模型更好地描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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