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首页> 外文期刊>Frontiers in Chemistry >Synthesis of Polydopamine Hollow Capsules via a Polydopamine Mediated Silica Water Dissolution Process and Its Application for Enzyme Encapsulation
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Synthesis of Polydopamine Hollow Capsules via a Polydopamine Mediated Silica Water Dissolution Process and Its Application for Enzyme Encapsulation

机译:聚多巴胺介导的二氧化硅水溶解工艺合成聚多巴胺空心胶囊及其在酶包囊中的应用

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Herein, we present a systematic study on the preparation of polydopamine (PDA) hollow capsules by templating silica particles which were subsequently removed by a PDA mediated water dissolution process without using any harsh chemical treatment. It was found that the time required for silica removal varied depending on the PDA coating and dissolution conditions. Factors that could influence the core removal process including the thickness and temperature of PDA coating, silica calcination duration and the availability of water were then examined in detail. Additionally, catalase was used as a model enzyme to be encapsulated into PDA hollow capsules and its bio-functionality was found to remain active. The result also indicated that the as-synthesized PDA capsules possessed a porous structure, which allows the penetration of small molecules such as H2O2. This study offers a better insight into silica dissolution process mediated by PDA, and contributes to the development of an eco-friendly approach for the fabrication of hollow capsules that have promising applications in drug delivery systems.
机译:本文中,我们通过模板化二氧化硅颗粒制备聚多巴胺(PDA)中空胶囊的系统研究,随后通过PDA介导的水溶解过程将其去除,而无需使用任何苛刻的化学处理方法。发现去除二氧化硅所需的时间根据PDA涂层和溶解条件而变化。然后详细检查了可能影响岩心去除过程的因素,包括PDA涂层的厚度和温度,二氧化硅煅烧时间和水的可用性。此外,过氧化氢酶被用作模型酶,被封装到PDA中空胶囊中,并且发现其生物功能仍然有效。结果还表明,合成后的PDA胶囊具有多孔结构,可以穿透小分子(例如H2O2)。这项研究为由PDA介导的二氧化硅溶解过程提供了更好的见解,并有助于开发一种生态友好的方法来制造中空胶囊,该中空胶囊在药物输送系统中具有广阔的应用前景。

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