School of Science and Technology, Department of Chemistry and Forensics, Nottingham Trent University, Clifton Lane, Nottingham NG11 8NS, UK.
Fraunhofer Institute for Cell Therapy and Immunology, Branch Bioanalytics and Bioprocesses, Am Muhlenberg 13, Potsdam, Golm 14476, Germany.
J Control Release. 2020 Dec 10;328:470-489. doi: 10.1016/j.jconrel.2020.08.061. Epub 2020 Sep 5.
CaCO crystals have been known for a long time as naturally derived and simply fabricated nano(micro)-sized materials able to effectively host and release various molecules. This review summarises the use of CaCO crystals as versatile carriers to host, protect and release antimicrobials, offering a strong tool to tackle antimicrobial resistance, a serious global health problem. The main methods for the synthesis of CaCO crystals with different properties, as well as the approaches for the loading and release of antimicrobials are presented. Finally, prospects to utilize the crystals in order to improve the therapeutic outcome and combat antimicrobial resistance are highlighted. Ultimately, this review intends to provide an in-depth overview of the application of CaCO crystals for the smart and controlled delivery of antimicrobial agents and aims at identifying the advantages and drawbacks as well as guiding future works, research directions and industrial applications.
碳酸钙晶体作为天然衍生的、简单制备的纳米(微)尺寸材料,长期以来一直被认为能够有效地容纳和释放各种分子。本综述总结了碳酸钙晶体作为多功能载体来容纳、保护和释放抗菌药物的用途,为应对严重的全球健康问题——抗菌药物耐药性提供了一个强有力的工具。介绍了具有不同性质的碳酸钙晶体的主要合成方法,以及抗菌药物的负载和释放方法。最后,强调了利用晶体来提高治疗效果和对抗抗菌药物耐药性的前景。总之,本综述旨在深入了解碳酸钙晶体在智能和控制释放抗菌药物方面的应用,并旨在确定其优缺点,指导未来的工作、研究方向和工业应用。