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用于抗菌应用的胶体颗粒制剂。

Colloid particle formulations for antimicrobial applications.

机构信息

School of Mathematics and Physical Sciences (Chemistry), University of Hull, Hull HU6 7RX, UK.

School of Mathematics and Physical Sciences (Chemistry), University of Hull, Hull HU6 7RX, UK.

出版信息

Adv Colloid Interface Sci. 2017 Nov;249:134-148. doi: 10.1016/j.cis.2017.05.012. Epub 2017 May 12.

DOI:10.1016/j.cis.2017.05.012
PMID:28528626
Abstract

Colloidal particles are being extensively studied in various antimicrobial applications due to their small size to volume ratio and ability to exhibit a wide spectrum of antibacterial, antifungal, antialgal and antiviral action. The present review focuses on various nanoparticles (NPs) of inorganic, organic and hybrid materials, and discusses some of the methods for their preparation as well as mechanisms of their antimicrobial action. We consider the antimicrobial applications of metal oxide nanoparticles (ZnO, MgO, CuO, CuO, AlO, TiO, CeO and YO), metal nanoparticles (NPs), such as copper, silver and gold, metal hydroxide NPs such as Mg(OH) as well as hybrid NPs made from biodegradable materials, such as chitosan, lignin and dextran, loaded with other antimicrobial agents. Recent developments for targeted delivery of antimicrobials by using colloid antibodies for microbial cell shape and surface recognition are also discussed. We also consider recent advances in the functionalization of nanoparticles and their potential antimicrobial applications as a viable alternative of conventional antibiotics and antiseptic agents which can help to tackle antimicrobial resistance. The review also covers the recently developed environmentally benign NPs (EbNPs) as a "safer-by-design" green chemistry solution of the post use fate of antimicrobial nanomaterials.

摘要

胶体颗粒由于其小尺寸与体积比以及能够表现出广谱抗菌、抗真菌、抗藻类和抗病毒作用,因此在各种抗菌应用中得到了广泛研究。本综述重点介绍了各种无机、有机和混合材料的纳米颗粒 (NPs),并讨论了它们的一些制备方法以及抗菌作用的机制。我们考虑了金属氧化物纳米颗粒 (ZnO、MgO、CuO、CuO、AlO、TiO、CeO 和 YO)、金属纳米颗粒 (如铜、银和金)、金属氢氧化物纳米颗粒 (如 Mg(OH)) 以及由可生物降解材料制成的混合纳米颗粒,如壳聚糖、木质素和右旋糖,负载其他抗菌剂。还讨论了使用胶体抗体对微生物细胞形状和表面进行识别的靶向递药的最新进展。我们还考虑了纳米颗粒的功能化及其作为传统抗生素和防腐剂的可行替代品的潜在抗菌应用,以帮助解决抗菌药物耐药性问题。该综述还涵盖了最近开发的环境友好型纳米颗粒 (EbNPs),作为抗菌纳米材料使用后归宿的“更安全设计”绿色化学解决方案。

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