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- 衍生生物表面活性剂的功能与结构表征及其抗细菌粘附、群体感应和生物膜形成的生物医学潜力

Functional and Structural Characterization of -Derived Biosurfactant and Its Biomedical Potential against Bacterial Adhesion, Quorum Sensing, and Biofilm Formation.

作者信息

Adnan Mohd, Siddiqui Arif Jamal, Hamadou Walid Sabri, Ashraf Syed Amir, Hassan Md Imtaiyaz, Snoussi Mejdi, Badraoui Riadh, Jamal Arshad, Bardakci Fevzi, Awadelkareem Amir Mahgoub, Sachidanandan Manojkumar, Patel Mitesh

机构信息

Department of Biology, College of Science, University of Hail, Hail P.O. Box 2440, Saudi Arabia.

Department of Clinical Nutrition, College of Applied Medial Sciences, University of Hail, Hail P.O. Box 2440, Saudi Arabia.

出版信息

Antibiotics (Basel). 2021 Nov 9;10(11):1371. doi: 10.3390/antibiotics10111371.

Abstract

Biosurfactants are surface-active molecules of microbial origin and alternatives to synthetic surfactants with various applications. Due to their environmental-friendliness, biocompatibility, biodegradability, effectiveness to work under various environmental conditions, and non-toxic nature, they have been recently recognized as potential agents with therapeutic and commercial importance. The biosurfactant produced by various probiotic lactic acid bacteria (LAB) has enormous applications in different fields. Thus, in vitro assessment of biofilm development prevention or disruption by natural biosurfactants derived from probiotic LAB is a plausible approach that can lead to the discovery of novel antimicrobials. Primarily, this study aims to isolate, screen, and characterize the functional and biomedical potential of biosurfactant synthesized by probiotic LAB (). Characterization consists of the assessment of critical micelle concentration (CMC), reduction in surface tension, and emulsification index (% EI24). Evaluation of antibacterial, antibiofilm, anti-QS, and anti-adhesive activities of cell-bound biosurfactants were carried out against different human pathogenic bacteria (, , , and ). Moreover, bacterial cell damage, viability of cells within the biofilm, and exopolysaccharide (EPS) production were also evaluated. As a result, was found to produce 4.75 ± 0.17 g/L biosurfactant, which displayed a CMC of 2.4 ± 0.68 g/L and reduced the surface tension from 71.11 ± 1.12 mN/m to 38.18 ± 0.58 mN/m. cells bound to the crude biosurfactant were found to be effective against all tested bacterial pathogens. It exhibited an anti-adhesion ability and impeded the architecture of the biofilm matrix by affecting the viability and integrity of bacterial cells within biofilms and reducing the total EPS content. Furthermore, the crude biosurfactant derived from was structurally characterized as a lipoprotein by GC-MS analysis, which confirms the presence of lipids and proteins. Thus, our findings represent the potent anti-adhesion and antibiofilm potential of crude biosurfactant for the first time, which may be explored further as an alternative to antibiotics or chemically synthesized toxic antibiofilm agents.

摘要

生物表面活性剂是微生物来源的表面活性分子,是合成表面活性剂的替代品,具有多种应用。由于其环境友好性、生物相容性、生物降解性、在各种环境条件下的有效性以及无毒性质,它们最近被认为是具有治疗和商业重要性的潜在制剂。各种益生菌乳酸菌(LAB)产生的生物表面活性剂在不同领域有巨大的应用。因此,体外评估源自益生菌LAB的天然生物表面活性剂对生物膜形成的预防或破坏作用是一种可行的方法,可能会导致发现新型抗菌剂。主要地,本研究旨在分离、筛选和表征益生菌LAB合成的生物表面活性剂的功能和生物医学潜力()。表征包括临界胶束浓度(CMC)的评估、表面张力的降低以及乳化指数(%EI24)。针对不同的人类病原菌(、、、和),对细胞结合型生物表面活性剂的抗菌、抗生物膜、抗群体感应(QS)和抗粘附活性进行了评估。此外,还评估了细菌细胞损伤、生物膜内细胞的活力以及胞外多糖(EPS)的产生。结果发现,产生4.75±0.17 g/L的生物表面活性剂,其CMC为2.4±0.68 g/L,表面张力从71.11±1.12 mN/m降低到38.18±0.58 mN/m。发现与粗生物表面活性剂结合的细胞对所有测试的细菌病原体均有效。它表现出抗粘附能力,并通过影响生物膜内细菌细胞的活力和完整性以及降低总EPS含量来阻碍生物膜基质的结构。此外,通过气相色谱-质谱(GC-MS)分析,源自的粗生物表面活性剂在结构上被表征为脂蛋白,这证实了脂质和蛋白质的存在。因此,我们的研究结果首次表明了粗生物表面活性剂具有强大的抗粘附和抗生物膜潜力,可作为抗生素或化学合成的有毒抗生物膜剂的替代品进行进一步探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71a6/8614858/54fe0ce957ba/antibiotics-10-01371-g001.jpg

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