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具有持久电刺激的驻极体三明治膜促进骨再生。

Electreted Sandwich Membranes with Persistent Electrical Stimulation for Enhanced Bone Regeneration.

机构信息

Department of Orthopaedic Surgery, Renji Hospital, South Campus, Shanghai Jiao Tong University School of Medicine, Shanghai 201112, China.

Clinical and Translational Research Center for 3D Printing Technology, Medical 3D Printing Innovation Research Center, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200125, China.

出版信息

ACS Appl Mater Interfaces. 2022 Jul 20;14(28):31655-31666. doi: 10.1021/acsami.2c06665. Epub 2022 Jul 7.

Abstract

Physiologically relevant electrical microenvironments play an indispensable role in manipulating bone metabolism. Although implanted biomaterials that simulate the electrical properties of natural tissues using conductive or piezoelectric materials have been introduced in the field of bone regeneration, the application of electret materials to provide stable and persistent electrical stimulation has rarely been studied in biomaterial design. In this study, a silicon dioxide electret-incorporated poly(dimethylsiloxane) (SiO/PDMS) composite electroactive membrane was designed and fabricated to explore its bone regeneration efficacy. SiO electrets were homogeneously dispersed in the PDMS matrix, and sandwich-like composite membranes were fabricated using a facile layer-by-layer blade-coating method. Following the encapsulation, electret polarization was conducted to obtain the electreted composite membranes. The surface potential of the composite membrane could be adjusted to a bone-promotive biopotential by tuning the electret concentration, and the prepared membranes exhibited favorable electrical stability during an observation period of up to 42 days. biological experiments indicated that the electreted SiO/PDMS membrane promoted cellular activity and osteogenic differentiation of mesenchymal stem cells. , the electreted composite membrane remarkably facilitated bone regeneration through persistent endogenous electrical stimulation. These findings suggest that the electreted sandwich-like membranes, which maintain a stable and physiological electrical microenvironment, are promising candidates for enhancing bone regeneration.

摘要

生理相关的电微环境在操纵骨代谢中起着不可或缺的作用。尽管在骨再生领域已经引入了使用导电或压电材料模拟天然组织电特性的植入生物材料,但在生物材料设计中,很少研究驻极体材料提供稳定和持续电刺激的应用。在这项研究中,设计并制备了一种二氧化硅驻极体掺杂聚二甲基硅氧烷(SiO/PDMS)复合电活性膜,以探索其骨再生效果。SiO 驻极体均匀分散在 PDMS 基质中,并使用简单的层层刮刀涂布法制备了三明治状复合膜。封装后,进行驻极体极化以获得驻极体复合膜。通过调整驻极体浓度,可以将复合膜的表面电势调整为促进骨形成的生物电势,并且制备的膜在长达 42 天的观察期内表现出良好的电稳定性。生物学实验表明,驻极体 SiO/PDMS 膜促进了间充质干细胞的细胞活性和成骨分化。因此,驻极体复合膜通过持续的内源性电刺激显著促进了骨再生。这些发现表明,保持稳定和生理电微环境的驻极体三明治状膜是增强骨再生的有前途的候选材料。

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