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用于骨组织工程的磷酸钙基生物聚合物复合支架的研究

Investigation of Calcium Phosphate-Based Biopolymer Composite Scaffolds for Bone Tissue Engineering.

作者信息

Furko Monika, Horváth Zsolt E, Tolnai Istvan, Balázsi Katalin, Balázsi Csaba

机构信息

Institute of Technical Physics and Materials Science, HUN-REN Centre for Energy Research, Konkoly-Thege str. 29-33, H-1121 Budapest, Hungary.

出版信息

Int J Mol Sci. 2024 Dec 22;25(24):13716. doi: 10.3390/ijms252413716.

Abstract

We present a novel method for preparing bioactive and biomineralized calcium phosphate (mCP)-loaded biopolymer composite scaffolds with a porous structure. Two types of polymers were investigated as matrices: one natural, cellulose acetate (CA), and one synthetic, polycaprolactone (PCL). Biomineralized calcium phosphate particles were synthesized via wet chemical precipitation, followed by the addition of organic biominerals, such as magnesium gluconate and zinc gluconate, to enhance the bioactivity of the pure CP phase. We compared the morphological and chemical characteristics of the two types of composites and assessed the effect of biomineralization on the particle structure of pure CP. The precipitated CP primarily consisted of nanocrystalline apatite, and the addition of organic trace elements significantly influenced the morphology by reducing particle size. FE-SEM elemental mapping confirmed the successful incorporation of mCP particles into both CA and PCL polymer matrices. Short-term immersion tests revealed that the decomposition rate of both composites is slow, with moderate and gradual ionic dissolution observed via ICP-OES measurements. The weight loss of the PCL-based composite during immersion was minimal, decreasing by only 0.5%, while the CA-based composite initially exhibited a slight weight increase before gradually decreasing over time.

摘要

我们提出了一种制备具有多孔结构的负载生物活性和生物矿化磷酸钙(mCP)的生物聚合物复合支架的新方法。研究了两种类型的聚合物作为基质:一种是天然的醋酸纤维素(CA),另一种是合成的聚己内酯(PCL)。通过湿化学沉淀法合成生物矿化磷酸钙颗粒,随后添加有机生物矿物质,如葡萄糖酸镁和葡萄糖酸锌,以增强纯CP相的生物活性。我们比较了两种复合材料的形态和化学特性,并评估了生物矿化对纯CP颗粒结构的影响。沉淀的CP主要由纳米晶磷灰石组成,有机微量元素的添加通过减小粒径显著影响了形态。场发射扫描电子显微镜(FE-SEM)元素映射证实了mCP颗粒成功地掺入到CA和PCL聚合物基质中。短期浸泡试验表明,两种复合材料的分解速率都很慢,通过电感耦合等离子体发射光谱(ICP-OES)测量观察到适度且逐渐的离子溶解。基于PCL的复合材料在浸泡过程中的重量损失最小,仅减少了0.5%,而基于CA的复合材料最初显示出轻微的重量增加,然后随着时间的推移逐渐减少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62b1/11677478/d05be900c430/ijms-25-13716-g001a.jpg

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