Institute of Veterinary Medicine & Animal Sciences, Kreutzwaldi 62, 51006 Tartu, Estonia.
Institute of Forestry and Engineering, Kreutzwaldi 56/1, 51006 Tartu, Estonia.
Int J Mol Sci. 2024 May 21;25(11):5599. doi: 10.3390/ijms25115599.
Antimicrobial resistance is a menace to public health on a global scale. In this regard, nanomaterials exhibiting antimicrobial properties represent a promising solution. Both metal and metal oxide nanomaterials are suitable candidates, even though their mechanisms of action vary. Multiple antimicrobial mechanisms can occur simultaneously or independently; this includes either direct contact with the pathogens, nanomaterial uptake, oxidative stress, ion release, or any of their combinations. However, due to their specific properties and more particularly fast settling, existing methods to study the antimicrobial properties of nanoparticles have not been specifically adapted in some cases. The development of methodologies that can assess the antimicrobial properties of metallic nanomaterials accurately is necessary. A cost-effective methodology with a straightforward set-up that enables the easy and quick assessment of the antimicrobial properties of metal nanoparticles with high accuracy has been developed. The methodology is also capable of confirming whether the killing mechanism involves ionic diffusion. Finally, Aloe Vera gel showed good properties for use as a medium for the development of antimicrobial ointment.
抗微生物耐药性是一个全球性的公共卫生威胁。在这方面,具有抗微生物特性的纳米材料代表了一种有前途的解决方案。金属和金属氧化物纳米材料都是合适的候选材料,尽管它们的作用机制有所不同。多种抗微生物机制可以同时或独立发生;这包括与病原体的直接接触、纳米材料的摄取、氧化应激、离子释放或它们的任何组合。然而,由于其特定的性质,特别是快速沉降,现有的研究纳米颗粒抗微生物性质的方法在某些情况下并未得到专门调整。有必要开发能够准确评估金属纳米材料抗微生物性质的方法。已经开发出一种具有成本效益的方法,该方法具有简单的设置,可以轻松、快速、准确地评估金属纳米粒子的抗微生物性质,并且还能够确认杀菌机制是否涉及离子扩散。最后,发现芦荟凝胶具有作为开发抗菌软膏的基质的良好特性。