Biocide Syntheses Bee Venom-Conjugated ZnO@αFe2O3 Nanoflowers as an Advanced Platform Targeting Multidrug-Resistant Fecal Coliform Bacteria Biofilm Isolated from Treated Wastewater

IF 2.1 Q3 MICROBIOLOGY Microbiology Research Pub Date : 2023-09-27 DOI:10.3390/microbiolres14040102
Mohamed Sharaf, Eman Jassim Mohammed, Eman M. Farahat, Amani A. Alrehaili, Abdulsalam Alkhudhayri, Ahmed Mohamed Ali, Abdullah A. Zahra, Shadi A. Zakai, Amr Elkelish, Maha AlHarbi, Mai Farag Saad
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Abstract

This study targeted developing a novel Zinc oxide with alpha hematite nanoflowers (NFs)-loaded bee venom (Bv) (Bv-ZnO@αFe2O3 NFs) as a bio-natural product from bees to combine both the advantages of combination magnetic properties and the antimicrobial and anti-biofilm properties on isolated coliform bacteria from the effluent of wastewater treatment plants. About 24 isolates of treated wastewater isolates were multidrug resistant (MDR). The phylogenetic grouping of Escherichia coli (E. coli) and Klebsiella pneumonia (K. pneumonia) showed that the largest group was Group A, followed by Group B2 and Group B1. Fourier transform infrared (FTIR), The X-ray diffraction (XRD), and scanning electron microscopy-energy dispersive X-ray analysis (SEM− EDX) validated the coating operation’s contact with Bv onto ZnO@αFe2O3 NFs. According to high-resolution transmission electron microscopy (TEM) and selected area electron diffraction (SAED), pattern analyses for prepared nanoformulations exhibited a spherical shape of αFe2O3 (~9–15 nm), and floral needle shapes with uniform distribution of size with aggregation of ZnOαFe2O3 and Bv-ZnO@αFe2O3 NFs around (~100–200 nm). The toxicity of Bv-ZnO@αFe2O3 NFs was comparable up to 125 µg mL−1, when it reached 64.79% (IC50, 107.18 µg mL−1). The antibacterial activity showed different zones of inhibition against different isolates. The biofilm inhibitory activity of NPs and NFs showed a highly significant reduction (p < 0.001) in treated biofilms with ZnO@αFe2O3 and Bv-ZnO@αFe2O3. In essence, ZnO@αFe2O3 and Bv-ZnO@αFe2O3 NFs are promising antimicrobials for inhibiting the growth and biofilm of MDR E. coli and K. pneumonia isolates, thereby, biocontrol of wastewater.
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杀菌剂合成蜜蜂毒液共轭ZnO@αFe2O3纳米花作为靶向多药耐药粪便大肠菌群生物膜的先进平台
本研究旨在开发一种新型的含α赤铁矿纳米花(NFs)负载蜂毒(Bv)的氧化锌(Bv- zno @α fe2o3 NFs)作为蜜蜂的生物天然产物,以结合其复合磁性能的优势和对废水处理废水中分离的大菌群的抗菌和抗生物膜特性。处理后的废水中有24株菌株具有多重耐药(MDR)。大肠杆菌(E. coli)和肺炎克雷伯菌(K. pneumonia)的系统发育类群为A群,其次为B2群和B1群。傅里叶变换红外(FTIR)、x射线衍射(XRD)和扫描电子显微镜-能量色散x射线分析(SEM - EDX)验证了ZnO@αFe2O3 NFs与Bv接触的涂层操作。根据高分辨率透射电镜(TEM)和选择区域电子衍射(SAED)分析,所制备的纳米配方的图案分析显示αFe2O3为球形(~9 ~ 15 nm),并且在(~100 ~ 200 nm)附近聚集了zno - αFe2O3和Bv-ZnO@αFe2O3纳米颗粒,其大小分布均匀。Bv-ZnO@αFe2O3 NFs的毒性可达125µg mL−1,达到64.79% (IC50为107.18µg mL−1)。对不同菌株的抑菌活性表现出不同的抑制区。NPs和NFs的生物膜抑制活性显著降低(p <0.001),以ZnO@αFe2O3和Bv-ZnO@αFe2O3处理的生物膜。从本质上讲,ZnO@αFe2O3和Bv-ZnO@αFe2O3 NFs是抑制耐多药大肠杆菌和肺炎克雷伯菌生长和生物膜的有前途的抗菌剂,从而实现废水的生物防治。
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来源期刊
Microbiology Research
Microbiology Research MICROBIOLOGY-
CiteScore
1.90
自引率
6.70%
发文量
62
审稿时长
10 weeks
期刊介绍: Microbiology Research is an international, online-only, open access peer-reviewed journal which publishes original research, review articles, editorials, perspectives, case reports and brief reports to benefit researchers, microbiologists, physicians, veterinarians. Microbiology Research publishes ‘Clinic’ and ‘Research’ papers divided into two different skill and proficiency levels: ‘Junior’ and ‘Professional’. The aim of this four quadrant grid is to encourage younger researchers, physicians and veterinarians to submit their results even if their studies encompass just a limited set of observations or rely on basic statistical approach, yet upholding the customary sound approach of every scientific article.
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