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首页> 外文期刊>Journal of Applied Polymer Science >Integrated PLGA-Ag nanocomposite systems to control the degradation rate and antibacterial properties
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Integrated PLGA-Ag nanocomposite systems to control the degradation rate and antibacterial properties

机译:集成的PLGA-Ag纳米复合材料系统可控制降解速率和抗菌性能

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Biodegradable polymer based nanocomposite materials have attracted much attention since they can be used for biomedical and pharmaceutical applications. In order to have highly integrated PLGA nanocomposite materials, silver colloidal nanoparticles were prepared in chloroform starting from silver nitrate and using polyvinylpyrrolidone as reduction and capping agent. TEM and AFM imaging give information on the size distribution of the silver nucleus (7.0 nm) and the capping shell (8.2-10.7 nm). PLGA-Ag nanocomposites were prepared upon addition of 1 or 3% wt of silver nanoparticles to the PLGA/chloroform suspension. The effect of silver loading on polymer degradation was studied following the mass loss and the morphology of nanocomposite films at different degradation stages. The concentrations of Ag~+, which is released during nanocomposite degradation, were monitored and analyzed through the diffusion model, to have insight on the degradation kinetics. The release rate, and likely the degradation rate, was reduced at higher silver loading. Bacterial growth tests indicated that the cell growth is inhibited in the presence of PLGA-Ag nanocomposites and the efficiency is correlated to Ag~+ release. Thus, controlling the nanoparticle loading, a tunable degradation and antibacterial action can be designed.
机译:由于基于生物可降解聚合物的纳米复合材料可用于生物医学和制药应用,因此备受关注。为了获得高度集成的PLGA纳米复合材料,从硝酸银开始,以聚乙烯吡咯烷酮为还原剂和封端剂,在氯仿中制备了银胶体纳米颗粒。 TEM和AFM成像可提供银核(7.0 nm)和封盖壳(8.2-10.7 nm)大小分布的信息。通过向PLGA /氯仿悬浮液中添加1或3%wt的银纳米颗粒来制备PLGA-Ag纳米复合材料。在不同降解阶段,研究了纳米复合薄膜的质量损失和形貌,研究了载银量对聚合物降解的影响。通过扩散模型监测和分析了纳米复合材料降解过程中释放的Ag〜+的浓度,以了解降解动力学。在较高的银负载量下,释放速率以及可能的降解速率降低了。细菌生长试验表明,在PLGA-Ag纳米复合材料存在下,细胞的生长受到抑制,其效率与Ag〜+的释放有关。因此,可以设计控制纳米颗粒负载,可调节的降解和抗菌作用。

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