Amin Ismail, Abdelkhalek Adel, El-Demerdash Azza S, Pet Ioan, Ahmadi Mirela, Abd El-Aziz Norhan K
Microbiology and Parasitology Department, Faculty of Veterinary Medicine, Badr University in Cairo (BUC), Badr City 11829, Egypt.
Food Safety, Hygiene and Technology Department, Faculty of Veterinary Medicine, Badr University in Cairo (BUC), Badr City 11829, Egypt.
Antibiotics (Basel). 2025 Jun 3;14(6):575. doi: 10.3390/antibiotics14060575.
is a normal inhabitant of the intestinal tract of poultry, and it has the potential to induce cholangiohepatitis and necrotic enteritis (NE). The poultry industry suffers significant financial losses because of NE, and treatment becomes more challenging due to resistant strains. The antimicrobial and antibiofilm activities of cellulose nanocrystals/zinc oxide nanocomposite (CNCs/ZnO) were assesses against pan drug-resistant (PDR) isolated from chickens and turkeys using phenotypic and molecular assays. The overall prevalence rate of was 44.8% (43.75% in chickens and 58.33% in turkeys). Interestingly, the antimicrobial susceptibility testing of isolates revealed the alarming PDR (29.9%), extensively drug-resistant (XDR, 54.5%), and multidrug-resistant (MDR, 15.6%) isolates, with multiple antimicrobial resistance (MAR) indices ranging from 0.84 to 1. All PDR isolates could synthesize biofilms; among them, 21.7% were strong biofilm producers. The antimicrobial potentials of CNCs/ZnO against PDR isolates were evaluated by the agar well diffusion and broth microdilution techniques, and the results showed strong antimicrobial activity of the green nanocomposite with inhibition zones' diameters of 20-40 mm and MIC value of 0.125 µg/mL. Moreover, the nanocomposite exhibited a great antibiofilm effect against the pre-existent biofilms of PDR isolates in a dose-dependent manner [MBIC50 up to 83.43 ± 1.98 for the CNCs/ZnO MBC concentration (0.25 μg/mL)]. The transcript levels of quorum sensing gene and type IV pili gene responsible for biofilm formation were determined by the quantitative real time-PCR technique, pre- and post-treatment with the CNCs/ZnO nanocomposite. The expression of both genes downregulated (0.099 ± 0.012-0.454 ± 0.031 and 0.104 ± 0.006-0.403 ± 0.035, respectively) when compared to the non-treated isolates. To the best of our knowledge, this is the first report of CNCs/ZnO nanocomposite's antimicrobial and antibiofilm activities against PDR isolated from chickens and turkeys.
是家禽肠道的正常栖居菌,它有可能引发胆管肝炎和坏死性肠炎(NE)。由于坏死性肠炎,家禽业遭受了巨大的经济损失,而耐药菌株的出现使得治疗变得更具挑战性。使用表型和分子检测方法,评估了纤维素纳米晶体/氧化锌纳米复合材料(CNCs/ZnO)对从鸡和火鸡中分离出的泛耐药(PDR)菌的抗菌和抗生物膜活性。该菌的总体流行率为44.8%(鸡中为43.75%,火鸡中为58.33%)。有趣的是,对该菌分离株的药敏试验显示出令人担忧的泛耐药(29.9%)、广泛耐药(XDR,54.5%)和多重耐药(MDR,15.6%)分离株,多重抗菌耐药(MAR)指数范围为0.84至1。所有PDR菌分离株都能合成生物膜;其中,21.7%是强生物膜产生菌。通过琼脂孔扩散法和肉汤微量稀释法评估了CNCs/ZnO对PDR菌分离株的抗菌潜力,结果显示这种绿色纳米复合材料具有很强的抗菌活性,抑菌圈直径为20 - 40毫米,最低抑菌浓度(MIC)值为0.125微克/毫升。此外,该纳米复合材料对PDR菌分离株预先形成的生物膜呈现出剂量依赖性的强大抗生物膜效果[对于CNCs/ZnO的最低杀菌浓度(MBC)为0.25微克/毫升时,最低生物膜抑制浓度(MBIC50)高达83.43 ± 1.98]。通过定量实时聚合酶链反应技术,在使用CNCs/ZnO纳米复合材料处理前后,测定了负责生物膜形成的群体感应基因和IV型菌毛基因的转录水平。与未处理的分离株相比,这两个基因的表达均下调(分别为0.099 ± 0.012 - 0.454 ± 0.031和0.104 ± 0.006 - 0.403 ± 0.035)。据我们所知,这是关于CNCs/ZnO纳米复合材料对从鸡和火鸡中分离出的PDR菌的抗菌和抗生物膜活性的首次报道。