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固定在3D打印聚己内酯支架上的羧甲基角叉菜胶用于吸附适用于骨再生的磷酸钙/磷酸锶。

Carboxymethyl carrageenan immobilized on 3D-printed polycaprolactone scaffold for the adsorption of calcium phosphate/strontium phosphate adapted to bone regeneration.

作者信息

Ataie Maryam, Nourmohammadi Jhamak, Seyedjafari Ehsan

机构信息

Department of Life Science Engineering, Faculty of New Sciences and Technologies, University of Tehran, Tehran, Iran.

Department of Life Science Engineering, Faculty of New Sciences and Technologies, University of Tehran, Tehran, Iran.

出版信息

Int J Biol Macromol. 2022 May 1;206:861-874. doi: 10.1016/j.ijbiomac.2022.03.096. Epub 2022 Mar 18.

Abstract

Three dimensional (3D) substrates based on natural and synthetic polymers enhance the osteogenic and mechanical properties of the bone tissue engineering scaffolds. Here, a novel bioactive composite scaffolds from polycaprolactone /kappa-carrageenan were developed for bone regeneration applications. 3D PCL scaffolds were fabricated by 3D printing method followed by coating with carboxymethyl kappa-carrageenan. This organic film was used to create calcium and strontium phosphate layers via a modified alternate soaking process in CaCl /SrCl and NaHPO solutions in which calcium ions were replaced by strontium, with different amounts of strontium in the solutions. Various characterization techniques were executed to analyze the effects of strontium ion on the scaffold properties. The morphological results demonstrated the highly porous with interconnected pores and uniform pore sizes scaffolds. It was indicated that the highest crystallinity and compressive strength were obtained when 100% CaCl was replaced by SrCl in the solution (P-C-Sr). Incorporation of Sr onto the structure increased the degradation rate of the scaffolds. Mesenchymal stem cells (MSCs) culture on the scaffolds showed that Sr effectively improved attachment and viability of the MSCs and accelerated osteogenic differentiation as revealed by Alkaline phosphatase activity, calcium content and Real Time-Reverse transcription polymerase chain reaction assays.

摘要

基于天然和合成聚合物的三维(3D)基质可增强骨组织工程支架的成骨性能和力学性能。在此,开发了一种新型的聚己内酯/κ-卡拉胶生物活性复合支架用于骨再生应用。通过3D打印方法制备3D聚己内酯支架,随后用羧甲基κ-卡拉胶进行涂层。该有机膜通过在氯化钙/氯化锶和磷酸氢钠溶液中进行改良的交替浸泡工艺来形成磷酸钙和磷酸锶层,其中溶液中的钙离子被锶取代,溶液中锶的含量不同。采用各种表征技术分析锶离子对支架性能的影响。形态学结果表明支架具有高度多孔性、相互连通的孔隙和均匀的孔径。结果表明,当溶液中100%的氯化钙被氯化锶取代时(P-C-Sr),可获得最高的结晶度和抗压强度。锶掺入支架结构中增加了支架的降解速率。在支架上培养间充质干细胞(MSCs)表明,锶有效地改善了MSCs的附着和活力,并通过碱性磷酸酶活性、钙含量和实时逆转录聚合酶链反应分析显示加速了成骨分化。

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