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源自乌贼骨的聚己内酯/硅掺杂多相磷酸钙支架

PCL/Si-Doped Multi-Phase Calcium Phosphate Scaffolds Derived from Cuttlefish Bone.

作者信息

Ressler Antonia, Bauer Leonard, Prebeg Teodora, Ledinski Maja, Hussainova Irina, Urlić Inga, Ivanković Marica, Ivanković Hrvoje

机构信息

Faculty of Chemical Engineering and Technology, University of Zagreb, Marulićev trg 19, 10000 Zagreb, Croatia.

Faculty of Science, University of Zagreb, Horvatovac 102a, 10000 Zagreb, Croatia.

出版信息

Materials (Basel). 2022 May 6;15(9):3348. doi: 10.3390/ma15093348.

Abstract

Increasing attention is focused on developing biomaterials as temporary scaffolds that provide a specific environment and microstructure for bone tissue regeneration. The aim of the present work was to synthesize silicon-doped biomimetic multi-phase composite scaffolds based on bioactive inorganic phases and biocompatible polymers (poly(ε-caprolactone), PCL) using simple and inexpensive methods. Porous multi-phase composite scaffolds from cuttlefish bone were synthesized using a hydrothermal method and were further impregnated with (3-aminopropyl)triethoxysilane 1-4 times, heat-treated (1000 °C) and coated with PCL. The effect of silicon doping and the PCL coating on the microstructure and mechanical and biological properties of the scaffolds has been investigated. Multi-phase scaffolds based on calcium phosphate (hydroxyapatite, -tricalcium phosphate, -tricalcium phosphate) and calcium silicate (wollastonite, larnite, dicalcium silicate) phases were obtained. Elemental mapping revealed homogeneously dispersed silicon throughout the scaffolds, whereas silicon doping increased bovine serum albumin protein adsorption. The highly porous structure of cuttlefish bone was preserved with a composite scaffold porosity of ~78%. A compressive strength of ~1.4 MPa makes the obtained composite scaffolds appropriate for non-load-bearing applications. Cytocompatibility assessment by an MTT assay of human mesenchymal stem cells revealed the non-cytotoxicity of the obtained scaffolds.

摘要

越来越多的注意力集中在开发生物材料作为临时支架上,这些支架可为骨组织再生提供特定的环境和微观结构。本工作的目的是使用简单且廉价的方法,基于生物活性无机相和生物相容性聚合物(聚(ε-己内酯),PCL)合成掺硅的仿生多相复合支架。利用水热法合成了来自乌贼骨的多孔多相复合支架,并进一步用(3-氨丙基)三乙氧基硅烷浸渍1至4次,进行热处理(1000℃)并涂覆PCL。研究了硅掺杂和PCL涂层对支架微观结构、力学性能和生物学性能的影响。获得了基于磷酸钙(羟基磷灰石、β-磷酸三钙、α-磷酸三钙)和硅酸钙(硅灰石、钙橄榄石、硅酸二钙)相的多相支架。元素映射显示硅在整个支架中均匀分散,而硅掺杂增加了牛血清白蛋白的蛋白质吸附。乌贼骨的高度多孔结构得以保留,复合支架孔隙率约为78%。约1.4MPa的抗压强度使得所获得的复合支架适用于非承重应用。通过对人间充质干细胞进行MTT试验的细胞相容性评估表明,所获得的支架无细胞毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e3e/9102552/6ab5954c73ed/materials-15-03348-g001.jpg

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