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利用醋酸纤维素支架模拟自然电环境可增强成骨细胞的胶原蛋白形成。

Mimicking natural electrical environment with cellulose acetate scaffolds enhances collagen formation of osteoblasts.

机构信息

Faculty of Metals Engineering and Industrial Computer Science, AGH University of Science and Technology, Al. Mickiewicza 30, 30-059 Kraków, Poland.

Academic Centre for Materials and Nanotechnology, AGH University of Science and Technology, Poland.

出版信息

Nanoscale. 2023 Apr 13;15(15):6890-6900. doi: 10.1039/d3nr00014a.

Abstract

The medical field is continuously seeking new solutions and materials, where cellulose materials due to their high biocompatibility have great potential. Here we investigate the applicability of cellulose acetate (CA) electrospun fibers for bone tissue regeneration. For the first time we show the piezoelectric properties of electrospun CA fibers high voltage switching spectroscopy piezoresponse force microscopy (HVSS-PFM) tests, which are followed by surface potential studies using Kelvin probe force microscopy (KPFM) and zeta potential measurements. Piezoelectric coefficient for CA fibers of 6.68 ± 1.70 pmV along with high surface (718 mV) and zeta (-12.2 mV) potentials allowed us to mimic natural electrical environment favoring bone cell attachment and growth. Importantly, the synergy between increased surface potential and highly developed structure of the fibrous scaffold led to the formation of a vast 3D network of collagen produced by osteoblasts only after 7 days of culture. We clearly show the advantages of CA scaffolds as a bone replacement material, when long-lasting structural support is needed.

摘要

医疗领域一直在寻求新的解决方案和材料,而纤维素材料由于其高度的生物相容性,具有巨大的潜力。在这里,我们研究了醋酸纤维素(CA)电纺纤维在骨组织再生中的适用性。我们首次通过高压开关光谱压电力显微镜(HVSS-PFM)测试展示了电纺 CA 纤维的压电特性,随后使用 Kelvin 探针力显微镜(KPFM)和zeta 电位测量进行了表面电位研究。CA 纤维的压电系数为 6.68 ± 1.70 pmV,表面电位(718 mV)和 zeta 电位(-12.2 mV)较高,这使得我们能够模拟有利于骨细胞附着和生长的自然电环境。重要的是,表面电位的增加和纤维支架高度发达的结构之间的协同作用,仅在培养 7 天后,就导致成骨细胞产生了大量的 3D 胶原网络。我们清楚地展示了 CA 支架作为骨替代材料的优势,当需要长期持久的结构支撑时。

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