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Recent Advances of Using Hybrid Nanocarriers in Remotely Controlled Therapeutic Delivery

机译:在远程控制治疗中使用混合纳米载体的最新进展

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The development of hybrid biomaterials has been attracting great attention in the design of materials for biomedicine. The nanosized level of inorganic and organic or even bioactive components can be combined into a single material by this approach, which has created entirely new advanced compositions with truly unique properties for drug delivery. The recent advances in using hybrid nanovehicles as remotely controlled therapeutic delivery carriers are summarized with respect to different nanostructures, including hybrid host-guest nanoconjugates, micelles, nanogels, core-shell nanoparticles, liposomes, mesoporous silica, and hollow nanoconstructions. In addition, the controlled release of guest molecules from these hybrid nanovehicles in response to various remote stimuli such as alternating magnetic field, near infrared, or ultrasound triggers is further summarized to introduce the different mechanisms of remotely triggered release behavior. Through proper chemical functionalization, the hybrid nanovehicle system can be further endowed with many new properties toward specific biomedical applications.
机译:混合生物材料的开发已在生物医学材料设计中引起了极大的关注。通过这种方法可以将纳米级的无机,有机或什至生物活性成分组合成单一材料,从而创造了全新的先进组合物,具有真正独特的药物递送特性。关于不同的纳米结构,包括混合宿主-客体纳米共轭物,胶束,纳米凝胶,核-壳纳米颗粒,脂质体,中孔二氧化硅和空心纳米结构,总结了使用混合纳米载体作为远程控制的治疗载体的最新进展。此外,进一步总结了响应于各种远程刺激(例如交变磁场,近红外或超声触发)而从这些杂化纳米载体中释放客体分子的受控释放,以介绍远程触发释放行为的不同机制。通过适当的化学功能化,混合纳米车辆系统可以进一步赋予针对特定生物医学应用的许多新特性。

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