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Externally Controlled Nanomachines on Mesoporous Silica Nanoparticles for Biomedical Applications

机译:用于生物医学应用的介孔二氧化硅纳米颗粒上的外部控制纳米机器

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Many machines (including nanomachines) consist of a solid support with moving parts that can undergo large amplitude motion to carry out specific tasks. In this Minireview, we will describe nanomachines that are supported on mesoporous silica nanoparticles that are typically 50-100 nanometers in diameter and have an array of open, readily accessible pores with an average width of a few nanometers. For triggering a large amplitude motion of the moving parts, we will focus primarily on external stimuli such as heat or light. As for the specific task the machines are carrying out, this Minireview will focus on the controlled release of pharmaceutically active agents in biomedical applications. We will discuss examples of how nanomachines can be used for remotely controlled cargo release and how existing machines that were originally designed to respond to internal physiological stimuli could be reconfigured to respond to external stimuli instead.
机译:许多机器(包括纳米机器)由带有运动部件的固体支撑组成,这些运动部件可能会经历大幅度的运动以执行特定任务。在此Minireview中,我们将描述支撑在介孔二氧化硅纳米粒子上的纳米机械,介孔二氧化硅纳米粒子的直径通常为50-100纳米,并具有平均宽度为几纳米的开放,易于访问的孔阵列。为了触发运动部件的大幅度运动,我们将主要关注外部刺激,例如热或光。至于机器正在执行的特定任务,此Minireview将着重于生物医学应用中药物活性剂的受控释放。我们将讨论如何将纳米机器用于远程控制货物释放的示例,以及如何将原本设计为对内部生理刺激做出反应的现有机器重新配置为对外部刺激做出响应的示例。

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