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角鲨素包被的非球形金纳米颗粒作为新型杀念珠菌剂

Ceragenin-Coated Non-Spherical Gold Nanoparticles as Novel Candidacidal Agents.

作者信息

Skłodowski Karol, Chmielewska Sylwia Joanna, Depciuch Joanna, Deptuła Piotr, Piktel Ewelina, Daniluk Tamara, Zakrzewska Magdalena, Czarnowski Michał, Cieśluk Mateusz, Durnaś Bonita, Parlińska-Wojtan Magdalena, Savage Paul B, Bucki Robert

机构信息

Department of Medical Microbiology and Nanobiomedical Engineering, Medical University of Bialystok, 15-222 Bialystok, Poland.

Institute of Nuclear Physics, Polish Academy of Sciences, 31-342 Krakow, Poland.

出版信息

Pharmaceutics. 2021 Nov 16;13(11):1940. doi: 10.3390/pharmaceutics13111940.

Abstract

BACKGROUND

Infections caused by spp. have become one of the major causes of morbidity and mortality in immunocompromised patients. Therefore, new effective fungicides are urgently needed, especially due to an escalating resistance crisis.

METHODS

A set of nanosystems with rod- (AuR), peanut- (AuP), and star-shaped (AuS) metal cores were synthesized. These gold nanoparticles were conjugated with ceragenins CSA-13, CSA-44, and CSA-131, and their activity was evaluated against strains ( = 21) through the assessment of MICs (minimum inhibitory concentrations)/MFCs (minimum fungicidal concentrations). Moreover, in order to determine the potential for resistance development, serial passages of cells with tested nanosystems were performed. The principal mechanism of action of Au NPs was evaluated via ROS (reactive oxygen species) generation assessment, plasma membrane permeabilization, and release of the protein content. Finally, to evaluate the potential toxicity of Au NPs, the measurement of hemoglobin release from red blood cells (RBCs) was carried out.

RESULTS

All of the tested nanosystems exerted a potent candidacidal activity, regardless of the species or susceptibility to other antifungal agents. Significantly, no resistance development after 25 passages of cells with AuR@CSA-13, AuR@CSA-44, and AuR@CSA-131 nanosystems was observed. Moreover, the fungicidal mechanism of action of the investigated nanosystems involved the generation of ROS, damage of the fungal cell membrane, and leakage of intracellular contents. Notably, no significant RBCs hemolysis at candidacidal doses of tested nanosystems was detected.

CONCLUSIONS

The results provide rationale for the development of gold nanoparticles of rod-, peanut-, and star-shaped conjugated with CSA-13, CSA-44, and CSA-131 as effective candidacidal agents.

摘要

背景

由 种引起的感染已成为免疫功能低下患者发病和死亡的主要原因之一。因此,迫切需要新的有效杀菌剂,尤其是鉴于耐药性危机不断升级。

方法

合成了一组具有棒状(AuR)、花生状(AuP)和星形(AuS)金属核的纳米系统。这些金纳米颗粒与杀菌素CSA - 13、CSA - 44和CSA - 131偶联,并通过评估最低抑菌浓度(MICs)/最低杀菌浓度(MFCs)来评价它们对 菌株( = 21)的活性。此外,为了确定耐药性产生的可能性,对测试纳米系统与 细胞进行了连续传代。通过活性氧(ROS)生成评估、质膜通透性和蛋白质含量释放来评估金纳米颗粒的主要作用机制。最后,为了评估金纳米颗粒的潜在毒性,进行了红细胞(RBCs)血红蛋白释放的测量。

结果

所有测试的纳米系统均表现出强大的杀念珠菌活性,无论其种类或对其他抗真菌剂的敏感性如何。值得注意的是,用AuR@CSA - 13、AuR@CSA - 44和AuR@CSA - 131纳米系统对 细胞进行25次传代后,未观察到耐药性产生。此外,所研究纳米系统的杀菌作用机制包括ROS的产生、真菌细胞膜的损伤和细胞内内容物的泄漏。值得注意的是,在测试纳米系统的杀念珠菌剂量下未检测到明显的红细胞溶血。

结论

这些结果为开发与CSA - 13、CSA - 44和CSA - 131偶联的棒状、花生状和星形金纳米颗粒作为有效的杀念珠菌剂提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f35/8619546/0b03cc5357ae/pharmaceutics-13-01940-g001.jpg

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