Qiao Yunping, Han Yanyang, Guan Rengui, Liu Shiliang, Bi Xinling, Liu Shanshan, Cui Wei, Zhang Tao, He Tao
Department of Applied Chemistry, School of Chemistry and Chemical Engineering, Yantai University, Clearspring RD 30th, Laishan, Yantai, 264005 China.
Weifang Branch Company, Shandong HI-speed Transportation Construction Group Co., Ltd., Qingzhou, 262500 China.
Front Mater Sci. 2023;17(1):230631. doi: 10.1007/s11706-023-0631-2. Epub 2023 Mar 8.
Microorganisms coexist with human beings and have formed a complex relationship with us. However, the abnormal spread of pathogens can cause infectious diseases thus demands antibacterial agents. Currently available antimicrobials, such as silver ions, antimicrobial peptides and antibiotics, have diverse concerns in chemical stability, biocompatibility, or triggering drug resistance. The "encapsulate-and-deliver" strategy can protect antimicrobials against decomposing, so to avoid large dose release induced resistance and achieve the controlled release. Considering loading capacity, engineering feasibility, and economic viability, inorganic hollow mesoporous spheres (iHMSs) represent one kind of promising and suitable candidates for real-life antimicrobial applications. Here we reviewed the recent research progress of iHMSs-based antimicrobial delivery. We summarized the synthesis of iHMSs and the drug loading method of various antimicrobials, and discussed the future applications. To prevent and mitigate the spread of an infective disease, multilateral coordination at the national level is required. Moreover, developing effective and practicable antimicrobials is the key to enhancing our capability to eliminate pathogenic microbes. We believe that our conclusion will be beneficial for researches on the antimicrobial delivery in both lab and mass production phases.
微生物与人类共存,并与我们形成了复杂的关系。然而,病原体的异常传播会导致传染病,因此需要抗菌剂。目前可用的抗菌剂,如银离子、抗菌肽和抗生素,在化学稳定性、生物相容性或引发耐药性方面存在各种问题。“封装并递送”策略可以保护抗菌剂不被分解,从而避免大剂量释放诱导的耐药性并实现控释。考虑到负载能力、工程可行性和经济可行性,无机中空介孔球(iHMSs)是实际抗菌应用中一类有前途且合适的候选材料。在此,我们综述了基于iHMSs的抗菌递送的最新研究进展。我们总结了iHMSs的合成以及各种抗菌剂的载药方法,并讨论了其未来应用。为了预防和减轻传染病的传播,需要国家层面的多边协调。此外,开发有效且实用的抗菌剂是增强我们消除致病微生物能力的关键。我们相信我们的结论将有利于实验室和大规模生产阶段的抗菌递送研究。