益生菌唾液乳杆菌、纳米锌颗粒和纳米锌复合材料对尼罗罗非鱼(Oreochromis niloticus)、水和人体中白色念珠菌的抗真菌和抗生物膜作用

N. El-Gazzar, R. A. Elez, Amira S. A. Attia, Abdel-wahab A. Abdel-Warith, Manal M. Darwish, Elsayed Mohammad Younis, Rehab A. Eltahlawi, Kawthar Ibraheem Mohamed, Simon J Davies, Ibrahim Elsohaby
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引用次数: 0

摘要

白色念珠菌(C. albicans)可形成生物膜;这是一种关键的毒力因子,可有效抵御商用抗真菌药物的侵袭,并引发公共卫生问题。开发新的抗真菌疗法,尤其是针对生物膜的疗法势在必行。因此,本研究调查了唾液乳杆菌(L. salivarius)、纳米锌颗粒(ZnNPs)和纳米复合材料(ZnNCs)对来自埃及沙尔基亚省尼罗罗非鱼、洗鱼水和人类鱼贩的白僵菌分离物的抗真菌和抗生物膜作用。将唾液酸益生菌与 ZnNPs 固定在一起,合成 ZnNCs。研究评估了 ZnNPs、唾液酸酵母菌和 ZnNCs 与两性霉素(AMB)相比的抗真菌和抗生物膜活性。38 份样本中检测到念珠菌属,其中包括白念珠菌(42.1%)、光滑念珠菌(26.3%)、克鲁塞念珠菌(21.1%)和副丝状念珠菌(10.5%)。共有 62.5%的分离菌株对至少一种抗真菌剂产生抗药性,其中对硝司他丁(62.5%)的抗药性最高。然而,75%的分离株对 AMB 非常敏感。所有白僵菌分离物都具有形成生物膜的能力,其中 4 个(25%)分离物具有很强的生物膜形成能力。白僵菌分离物中至少发现了一种毒力相关基因(RAS1、HWP1、ALS3 或 SAP4)。益生菌 L. salivarius、ZnNPs 和 ZnNCs 对白僵菌具有抗生物膜和抗真菌作用,其中 ZnNCs 的抑制活性明显更高。ZnNCs 的最低抑制浓度(MIC)为 10 µg/mL,可完全减少白僵菌生物膜基因的表达。此外,用 ZnNCs 处理的白僵菌生物膜的扫描电子显微镜图像显示出不对称的皱褶表面、细胞变形和细胞数量减少。这项研究发现了在罗非鱼、水和人类中具有强大生物膜形成能力的毒性、抗性白僵菌分离物,它们对公共卫生和食品安全构成了重大风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antifungal and antibiofilm effects of probiotic Lactobacillus salivarius, zinc nanoparticles, and zinc nanocomposites against Candida albicans from Nile tilapia (Oreochromis niloticus), water and humans
Candida albicans (C. albicans) can form biofilms; a critical virulence factor that provides effective protection from commercial antifungals and contributes to public health issues. The development of new antifungal therapies, particularly those targeting biofilms, is imperative. Thus, this study was conducted to investigate the antifungal and antibiofilm effects of Lactobacillus salivarius (L. salivarius), zinc nanoparticles (ZnNPs) and nanocomposites (ZnNCs) on C. albicans isolates from Nile tilapia, fish wash water and human fish sellers in Sharkia Governorate, Egypt.A cross-sectional study collected 300 samples from tilapia, fish wash water, and fish sellers (100 each). Probiotic L. salivarius was immobilized with ZnNPs to synthesize ZnNCs. The study assessed the antifungal and antibiofilm activities of ZnNPs, L. salivarius, and ZnNCs compared to amphotericin (AMB).Candida spp. were detected in 38 samples, which included C. albicans (42.1%), C. glabrata (26.3%), C. krusei (21.1%), and C. parapsilosis (10.5%). A total of 62.5% of the isolates were resistant to at least one antifungal agent, with the highest resistance to nystatin (62.5%). However, 75% of the isolates were highly susceptible to AMB. All C. albicans isolates exhibited biofilm-forming capabilities, with 4 (25%) isolates showing strong biofilm formation. At least one virulence-associated gene (RAS1, HWP1, ALS3, or SAP4) was identified among the C. albicans isolates. Probiotics L. salivarius, ZnNPs, and ZnNCs displayed antibiofilm and antifungal effects against C. albicans, with ZnNCs showing significantly higher inhibitory activity. ZnNCs, with a minimum inhibitory concentration (MIC) of 10 µg/mL, completely reduced C. albicans biofilm gene expression. Additionally, scanning electron microscopy images of C. albicans biofilms treated with ZnNCs revealed asymmetric, wrinkled surfaces, cell deformations, and reduced cell numbers.This study identified virulent, resistant C. albicans isolates with strong biofilm-forming abilities in tilapia, water, and humans, that pose significant risks to public health and food safety.
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