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Controlled Drug Release and Hydrolysis Mechanism of Polymer-Magnetic Nanoparticle Composite

机译:聚合物-磁性纳米粒子复合材料的控释和水解机理

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Uniform and multifunctional poly(lactic acid) (PLA)-nanoparticle composite has,enormous potential for applications in biomedical :and materials science. A detailed understanding of the surface and interface chemistry of these composites is essential, to design such material with optimized function. Herein, we designed and investigated a simple PLA-magnetic nanoparticle composite system to elucidate the impact of nanoparticles on the degradation of polymer-nanoparticle composites. In order to have an in-depth understanding Of the mechanisms of hydrolysis in PLA nanoparticle composites, degradation processes were monitored by several surface: sensitive techniques, including scanning electron microscopy, contact angle goniometry, atomic force microscopy, and sum, frequency generation spectroscopy. As a second order nonlinear optical technique, SFG spectroscopy was introduced to directly probe in situ chemical nature at the PLA magnetic nanoparticle composite/aqueous interface, which allowed for the delineation of molecular mechanisms of various hydrolysis processes for degradation at the molecular level. The best PLA-NP material, with a concentration of 20% MNP in the composite, was found to enhance the drug release rate greater than 200 times while maintaining excellent controlled drug release characteristics. It was also found that during hydrolysis, various crystalline-like PLA domains on the surfaces of PLA nanoparticle composites influenced. various hydrolysis behaviors of PLA. Results from this study provide new insight into the design of nanomaterials. With controlled degradation and drug release properties, and the underlined molecular mechanisms. The methodology developed in this study to characterize the polymer-nanoparticle composites is general and widely applicable.
机译:均匀,多功能的聚乳酸(PLA)-纳米颗粒复合材料在生物医学和材料科学中具有巨大的应用潜力。要设计具有最佳功能的此类材料,必须对这些复合材料的表面和界面化学有详细的了解。在这里,我们设计和研究了一个简单的PLA磁性纳米颗粒复合材料系统,以阐明纳米颗粒对聚合物-纳米颗粒复合材料降解的影响。为了深入了解PLA纳米粒子复合材料中的水解机理,通过多种表面监测降解过程:敏感技术,包括扫描电子显微镜,接触角测角法,原子力显微镜以及总和,频率产生光谱。作为二阶非线性光学技术,引入了SFG光谱技术以直接探测PLA磁性纳米颗粒复合材料/水界面的原位化学性质,从而可以描述在分子水平上降解的各种水解过程的分子机理。发现最好的PLA-NP材料在复合物中的MNP浓度为20%,可以将药物释放速率提高200倍以上,同时保持出色的受控药物释放特性。还发现在水解过程中,PLA纳米颗粒复合材料表面的各种晶体状PLA域受到影响。 PLA的各种水解行为。这项研究的结果为纳米材料的设计提供了新的见识。具有受控的降解和药物释放特性,并强调了分子机理。在这项研究中开发的表征聚合物-纳米粒子复合材料的方法学是通用且广泛适用的。

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