从酿酒酵母中提纯和鉴定的甘露聚糖对耐多药大肠杆菌的抗生物膜活性

Q3 Agricultural and Biological Sciences Novel Research in Microbiology Journal Pub Date : 2023-11-14 DOI:10.21608/nrmj.2023.330426
Naam Fadhil Abbas Al-Helli, Jehan Abdul Sattar Salman
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引用次数: 0

摘要

大肠埃希菌形成的生物膜是临床环境中的一大挑战,会导致持续感染和治疗失败。这些受基质保护的细菌群落能抵抗抗生素和免疫反应,因此给治疗此类感染带来了长期挑战。开发针对大肠杆菌生物膜的有效策略对于改善患者治疗效果和减轻医疗系统负担至关重要。本研究旨在从酿酒酵母中提取、纯化和鉴定甘露聚糖,然后评估其对从不同临床来源(如尿液、粪便、伤口和导管)分离的多重耐药大肠杆菌(MDR-E. coli)的抗生物膜活性。采用略加修改的标准化方案,甘露聚糖的粗提取率为 37.6%,随后的纯化效率达到 99.6%。对纯化后的甘露聚糖进行的表征检测包括傅立叶变换红外光谱(FT-IR)、傅立叶变换扫描电镜(FE-SEM)、碳水化合物含量估算、溶解度和熔点测试,结果表明其含有α-1,6和α-1,2连接糖、结晶性、高孔隙率(80%)、碳水化合物含量、高水溶性和248 °C的熔点。纯化的甘露聚糖具有很强的抑制生物膜形成(37.50%)和降解现有 MDR 大肠杆菌生物膜(37.43%)的能力。这些发现凸显了葡萄孢甘露聚糖作为一种有效的抗生物膜剂在临床应用中的潜力。进一步探索和优化甘露聚糖的治疗潜力对于充分发挥其抗击 MDR-E. coli 引起的生物膜相关感染的功效至关重要。
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The antibiofilm activity of purified and characterized mannan from Saccharomyces cerevisiae against multidrug-resistant Escherichia coli
Biofilm formation by Escherichia coli presents a major challenge in the clinical settings, resulting in persistent infections and treatment failures. These bacterial communities, protected by a matrix, resist antibiotics and immune responses, thus causing a prolonged challenge to treat such infections. Developing effective strategies against E. coli biofilms is crucial for improving the patient outcomes and reducing the burden on the healthcare systems. This study aimed to extract, purify, and characterize mannan from Saccharomyces cerevisiae , then its antibiofilm activity was evaluated against the multi-drug resistant E. coli (MDR-E. coli ) isolates obtained from various clinical sources ( i.e ., urine, stool, wound, and catheter). Using a standardized protocol with slight modifications, the crude mannan extraction yielded 37.6 %, and subsequent purification achieved an efficiency of 99.6 %. Characterization assays of the purified mannan included FT-IR; FE-SEM, carbohydrate content estimation, solubility, and melting point tests, which revealed the presence of α-1,6 and α-1,2 linked sugars; crystalline nature, high porosity (80 %) carbohydrate content, high solubility in water, and a melting point of 248 °C. The purified mannan exhibited a substantial ability to inhibit biofilm formation (37.50 %) and degrade the existing MDR-E. coli biofilms (37.43 %). These findings underscore the potential of S. cerevisiae mannan as an effective antibiofilm agent for the clinical applications. Further exploration and optimization of the mannan's therapeutic potential are essential to fully leverage its efficacy in combating the biofilm-associated infections caused by MDR-E. coli .
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CiteScore
1.40
自引率
0.00%
发文量
16
审稿时长
4 weeks
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