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Light-Induced Temperature Transitions in Biodegradable Polymer and Nanorod Composites

机译:光降解生物可降解聚合物和纳米棒复合材料中的温度转变

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摘要

Shape-memory materials (including polymers, metals, and ceramics) are those that are processed into a temporary shape and respond to some external stimuli (e.g., temperature) to undergo a transition back to a permanent shape.[1,2] Shape memory polymers are finding use in a range of applications from aerospace to fabrics, to biomedical devices and microsystem components.[3–5] For many applications, it would be beneficial to initiate heating with an external trigger (e.g., transdermal light exposure). In this work, we formulated composites of gold nanorods (<1% by volume) and biodegradable networks, where exposure to IR light induced heating and consequently, shape transitions. The heating is repeatable and tunable based on nanorod concentration and light intensity and the nanorods did not alter the cytotoxicity or in vivo tissue response to the networks.
机译:形状记忆材料(包括聚合物,金属和陶瓷)是被加工成临时形状并响应某些外部刺激(例如温度)而转变回永久形状的材料。[1,2]形状记忆聚合物在航空航天,织物,生物医学设备和微系统组件等各种应用中都有发现。[3-5]在许多应用中,使用外部触发器(例如,透皮光暴露)来启动加热将是有益的。在这项工作中,我们配制了金纳米棒(<1%(体积))和可生物降解的网络的复合材料,这些材料在暴露于红外光的情况下会感应加热并因此发生形状转变。基于纳米棒的浓度和光强度,加热是可重复的和可调的,并且纳米棒没有改变细胞毒性或体内组织对网络的反应。

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