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Thermally-Induced Actuations of Stimuli-Responsive, Bicompartmental Nanofibers for Decoupled Drug Release

机译:热诱导的刺激响应,双室纳米纤维的解耦药物释放的致动。

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摘要

Stimuli-responsive anisotropic microstructures and nanostructures with different physicochemical properties in discrete compartments, have been developed as advanced materials for drug delivery systems, tissue engineering, regenerative medicine, and biosensing applications. Moreover, their stimuli-triggered actuations would be of great interest for the introduction of the functionality of drug delivery reservoirs and tissue engineering scaffolds. In this study, stimuli-responsive bicompartmental nanofibers (BCNFs), with completely different polymer compositions, were prepared through electrohydrodynamic co-jetting with side-by-side needle geometry. One compartment with thermo-responsiveness was composed of methacrylated poly(N-isopropylacrylamide-co-allylamine hydrochloride) (poly(NIPAM-co-AAh)), while the counter compartment was made of poly(ethylene glycol) dimethacrylates (PEGDMA). Both methacrylated poly(NIPAM-co-AAh) and PEGDMA in distinct compartments were chemically crosslinked in a solid phase by UV irradiation and swelled under aqueous conditions, because of the hydrophilicity of both poly(NIPAM-co-AAh) and PEGDMA. As the temperature increased, BCNFs maintained a clear interface between compartments and showed thermally-induced actuation at the nanoscale due to the collapsed poly(NIPAM-co-AAh) compartment under the PEGDMA compartment of identical dimensions. Different model drugs, bovine serum albumin, and dexamethasone phosphate were alternately loaded into each compartment and released at different rates depending on the temperature and molecular weight of the drugs. These BCNFs, as intelligent nanomaterials, have great potential as tissue engineering scaffolds and multi-modal drug delivery reservoirs with stimuli-triggered actuation and decoupled drug release.
机译:在离散隔室中具有不同物理化学性质的刺激响应性各向异性微观结构和纳米结构已被开发为用于药物输送系统,组织工程,再生医学和生物传感应用的先进材料。此外,它们的刺激触发的致动对于引入药物输送储库和组织工程支架的功能将引起极大的兴趣。在这项研究中,通过并排并排的针头几何形状的电动流体动力共同喷射,制备了具有完全不同的聚合物成分的刺激响应性双室纳米纤维(BCNF)。具有热响应性的一个隔室由甲基丙烯酸酯化的聚(N-异丙基丙烯酰胺-共烯丙基胺盐酸盐)(聚(NIPAM-co-AAh))组成,而对置隔室由聚(乙二醇)二甲基丙烯酸酯(PEGDMA)制成。由于聚(NIPAM-co-AAh)和PEGDMA的亲水性,在不同隔室中的甲基丙烯酸化的聚(NIPAM-co-AAh)和PEGDMA都通过UV辐射在固相中化学交联并在水性条件下溶胀。随着温度升高,由于在相同尺寸的PEGDMA隔室下塌陷的poly(NIPAM-co-AAh)隔室塌陷,BCNFs在隔室之间保持了清晰的界面,并在纳米级显示出热诱导的致动。将不同的模型药物,牛血清白蛋白和磷酸地塞米松交替装载到每个隔室中,并根据药物的温度和分子量以不同的速率释放。这些BCNFs作为智能纳米材料,具有组织工程支架和具有刺激触发的致动和解耦的药物释放的多模式药物输送储库的巨大潜力。

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