功能化不对称聚乳酸/明胶复合膜引导牙周组织再生

Shuangying Gu, Baoxiang Tian, Weicong Chen, Yue Zhou
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引用次数: 1

摘要

目的:牙周炎是由慢性牙龈炎症引起的,在世界范围内影响着大量人群。尽管引导组织再生(GTR)疗法已被证明是一种有效的治疗方法,但市场上所有GTR膜对称设计的缺陷留下了很大的改进空间。因此,我们设计了一种用于治疗牙周炎的新型不对称双层PLA/明胶复合膜。方法:将甲硝唑(MNA)与PLA溶液预混,通过静电纺丝制备PLA侧。采用冷冻干燥法制备了明胶生物玻璃(BG)45S5,并与聚乳酸膜交联。使用NIH3T3细胞在体外评估膜的生物相容性。用分光光度计测定MNA的释放。通过羟基磷灰石(HA)沉积评价了膜的生物活性,并用FTIR光谱仪进行了测定。通过ICPOES测量Ca2+和的离子浓度。通过qRT-PCR测定成骨因子的表达。结果:PLA/明胶双层复合膜具有良好的生物相容性和生物活性。MNA的释放可迅速达到抗菌有效浓度。有趣的是,MNA的掺入调节了PLA支架的降解速率,以满足组织再生的要求。同时,BG粉末包埋在明胶多孔层中为牙槽骨组织的再生提供了有利的Ca2+和离子环境。结论:这种双层GTR膜更接近牙周组织的生理结构。MNA和BG的加入使其在治疗牙周炎方面更有效。此外,本研究还提供了一个仿生设计在临床应用生物材料制造中的应用实例。
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Functionalized Asymmetric Poly (Lactic Acid)/Gelatin Composite Membrane for Guided Periodontal Tissue Regeneration
Aim: Periodontitis is caused by chronic gingival inflammation and affects a large population in the world. Although guided tissue regeneration (GTR) therapy has been proven to be an effective treatment, the deficiency in the symmetrical design of all the GTR membrane in the market leaves large space for improvement. Therefore, we designed a novel asymmetrical bi-layer PLA/gelatin composite membrane for treating periodontitis. Methods: The PLA side was fabricated by electrospinning with metronidazole (MNA) pre-mixed with the PLA solution. The gelatin side containing bioglass (BG) 45S5 was fabricated with freeze-drying process and cross-linked with PLA membrane. The bio-compatibility of the membrane was evaluated in vitro using NIH3T3 cells. The releasing of MNA was measured by spectrophotometer. The bioactivity of the membrane was evaluated by hydroxyapatite (HA) deposit and determined by FTIR spectrometer. The ionic concentration of Ca2+ and was measured by ICPOES. The expression of the osteogenesis makers was determined by qRT-PCR. Results: The bi-layer PLA/gelatin composite membrane is biocompatible and bioactive. The releasing of MNA can rapidly reach the anti-bacterial effective concentration. Interestingly, the incorporation of MNA modulated the degradation rate of PLA scaffold to meet the requirement of tissue regeneration. Meanwhile, the embedding of the BG powder in the gelatin porous layer provided a favorable Ca2+ and ion environment for the regeneration of the alveolar bone tissue. Conclusions: Taken together, this bi-layer GTR membrane is closer to the physiological structure of the periodontal. The addition of MNA and BG makes it more powerful in treating periodontitis. Moreover, this research provides an example of biomimetic design in fabricating biomaterial for clinical applications.
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