纳米复合材料(棒曲霉素与没食子酸共轭的氧化锌涂层)抗自由生活阿米巴病原体的潜力

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Ruqaiyyah Siddiqui, Bushra Khatoon, Muhammad Kawish, Sreedevi Sajeev, Shaheen Faizi, Muhammad Raza Shah, Ahmad M. Alharbi, Naveed Ahmed Khan
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引用次数: 0

摘要

自由生活阿米巴感染呈上升趋势,但预后仍然不佳。目前的疗法效果不佳,因此需要针对奈格勒阿米巴、巴拉穆氏阿米巴和棘阿米巴的新型有效药物。在这项研究中,我们确定了一种基于黄酮类化合物拍立得负载没食子酸功能化氧化锌纳米粒子(PA-GA-ZnO)的纳米制剂对阿卡他米巴、巴拉穆氏菌和奈格勒氏滋养体的作用。利用傅立叶变换红外光谱、药物夹带效率、多分散指数、尺寸和表面形态等分析工具对纳米制剂进行了表征。利用阿米巴杀灭试验、细胞致病性试验和纳米制剂对人体细胞的细胞毒性研究了纳米制剂的抗阿米巴效应。研究结果表明,纳米制剂(PA-GA-ZnO)具有显著的抗阿米巴特性,并增强了单独使用拍立得对所有三种食脑阿米巴的作用。在单独测试时,拍立得纳米制剂对人体细胞的毒性影响极小。总之,本文评估的纳米制剂对棘阿米巴、巴拉穆氏阿米巴和奈格勒氏阿米巴都有疗效。不过,除了进行动物实验以确定其在临床应用中的潜在价值外,还需要在今后的研究中了解拍立得纳米制剂对自由生活的阿米巴病原体的分子机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The potential of nanocomposites (patuletin-conjugated with gallic acid-coated zinc oxide) against free-living amoebae pathogens

The potential of nanocomposites (patuletin-conjugated with gallic acid-coated zinc oxide) against free-living amoebae pathogens

Free-living amoebae infections are on the rise while the prognosis remains poor. Current therapies are ineffective, and there is a need for novel effective drugs which can target Naegleria, Balamuthia, and Acanthamoeba species. In this study, we determined the effects of a nano-formulation based on flavonoid patuletin-loaded gallic acid functionalized zinc oxide nanoparticles (PA-GA-ZnO) against Acanthamoeba, Balamuthia, and Naegleria trophozoites. Characterization of the nano-formulation was accomplished utilizing analytical tools, namely Fourier-transform infrared spectroscopy, drug entrapment efficiency, polydispersity index, dimensions, and surface morphologies. Anti-amoebic effects were investigated using amoebicidal assay, cytopathogenicity assay, and cytotoxicity of the nano-formulation on human cells. The findings revealed that nano-formulation (PA-GA-ZnO) displayed significant anti-amoebic properties and augmented effects of patuletin alone against all three brain-eating amoebae. When tested alone, patuletin nano-formulations showed minimal toxicity effects against human cells. In summary, the nano-formulations evaluated herein depicts efficacy versus Acanthamoeba, Balamuthia, and Naegleria. Nonetheless, future studies are needed to comprehend the molecular mechanisms of patuletin nano-formulations versus free-living amoebae pathogens, in addition to animal studies to determine their potential value for clinical applications.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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