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首页> 外文期刊>Pure and Applied Chemistry >Application of calcium carbonate nanocarriers for controlled release of phytodrugs against Xylella fastidiosa pathogen
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Application of calcium carbonate nanocarriers for controlled release of phytodrugs against Xylella fastidiosa pathogen

机译:碳酸钙纳米载体在肺炎氏菌对木质皮肤病的控制释放中的应用

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Calcium carbonate-based hollow or porous particles are one of the preferred carriers for fabrication of drug delivery systems. We have developed an eco-friendly method to produce calcium carbonate nanocrystals, which have shown biocompatibility and optimal capacity to across cell membrane in human cell lines providing new tools in cancer therapy. The success of drug delivery systems has paved the way for the development of systems for controlled release of agrochemicals. In this work, we exploited calcium carbonate nanocrystals as carriers for targeted release of phytodrugs investigating a potential control strategy for the pathogen Xylella fastidiosa. This pathogen is the causal agent of the Olive Quick Decline Syndrome that is an unprecedented emergency in Italy and potentially in the rest of Europe. We studied nanocrystals interactions with bacteria cells and the application in planta to verify olive plants uptake. Ultrastructural analysis by electron microscopy shown an alteration of bacteria wall following nanocrystals interaction. Nanocrystals were adsorbed from roots and they translocated in plants tissues. Calcium carbonate carriers were able to encapsulate efficiently two types of antimicrobial substances and the potential efficacy was tested in experiment under greenhouse conditions.
机译:碳酸钙的中空或多孔颗粒是用于制备药物递送系统的优选载体之一。我们开发了一种生态友好的方法来生产碳酸钙纳米晶体,其在人细胞系中显示出跨越细胞膜的生物相容性和最佳能力,在癌症治疗中提供新的工具。药物送货系统的成功为农用化学品控制释放的系统铺平了道路。在这项工作中,我们将碳酸钙纳米晶体作为靶向释放的植物释放的载体研究,用于研究病原体木菌菌的潜在控制策略。该病原体是橄榄快速下降综合征的因果因子,这是意大利前所未有的紧急情况,潜在于欧洲其他地区。我们研究了纳米晶体与细菌细胞的相互作用以及在Planta中的应用来验证橄榄植物摄取。通过电子显微镜进行超微结构分析显示纳米晶体相互作用后细菌壁的改变。纳米晶体吸附着根部,它们在植物组织中易于转移。碳酸钙载体能够有效地包封两种类型的抗微生物物质,并且在温室条件下试验测试潜在的功效。

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