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Thermoresponsive and Biodegradable Dextran Based Microgels: Synthesis and Structural Investigation

机译:热响应性和可生物降解的葡聚糖微凝块:合成与结构调查

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Nanostructured objects, often ranging from hundreds of nanometers to few microns, support a number of functions directly linked to their structural features. They are, or they will be, protagonists in biomedical applications where miniaturized activities are required. These include the interface with living systems as tissues and cells, where targeted release of drug molecules occurs, or molecular imaging methods monitoring the drug traf?cking in speci?c cell districts. The potentials of such devices, far to be fully understood, will be assessed only when a close correlation of their functions with their structure will be established.In this contribution we present a dextran based microdevice responsive to temperature and biodegradable. Both thermoresponsivity and biodegradability are of relevance for the potential use as drug carrier and controlled release device. The temperature behaviour, overall structure and internal architectures have been addressed with different methods.
机译:纳米结构对象,通常从数百纳米到几微米,支持多种功能与其结构特征直接相关。它们是,或者他们将是,需要在需要小型化活动的生物医学应用中的主角。这些包括与活生生物的界面作为组织和细胞,其中靶向释放药物分子发生,或监测药物TRAF的分子成像方法?在特定的细胞区中CKING。该装置的电位才能才能完全理解,只有将建立它们的结构的功能紧密相关。在这种贡献中,我们响应于温度和可生物降解的基于葡聚糖的微生物。热反应性和生物降解性均具有与药物载体和控释装置的潜在用途相关性。用不同的方法解决了温度行为,整体结构和内部架构。

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