材料科学
复合数
牙周炎
粪肠球菌
药物输送
生物医学工程
纳米技术
化学
牙科
复合材料
医学
生物化学
基因
大肠杆菌
作者
Biao-Yao Su,Zijian Chen,Jiacheng Lv,Zhiguo Wang,Fu-Wen Huang,Yao Liu,En Luo,Jing Wang,Jia‐Zhuang Xu,Zhong‐Ming Li
出处
期刊:ACS Biomaterials Science & Engineering
[American Chemical Society]
日期:2023-06-27
卷期号:9 (7): 4431-4441
被引量:2
标识
DOI:10.1021/acsbiomaterials.3c00452
摘要
Periodontitis is a worldwide bacterial infectious disease, resulting in the resorption of tooth-supporting structures. Biodegradable polymeric microspheres are emerging as an appealing local therapy candidate for periodontal defect regeneration but suffer from tedious procedures and low yields. Herein, we developed a facile yet scalable approach to prepare polylactide composite microspheres with outstanding drug-loading capability. It was realized by blending equimolar polylactide enantiomers at the temperature between the melting point of homocrystallites and stereocomplex (sc) crystallites, enabling the precipitation of sc crystallites in the form of microspheres. Meanwhile, epigallocatechin gallate (EGCG) and nano-hydroxyapatite were encapsulated in the microspheres in the designated amount. Such an assembly allowed the fast and sustained release of EGCG and Ca2+ ions. The resultant hybrid composite microspheres not only exhibited strong antimicrobial activity against typical oral pathogens (Porphyromonas gingivalis and Enterococcus faecalis), but also directly promoted osteogenic differentiation of periodontal ligament stem cells with good cytocompatibility. These dual-functional composite microspheres offer a desired drug delivery platform to address the practical needs for periodontitis treatment.
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