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负载不同益生菌菌株可溶性因子的壳聚糖支架对多重耐药菌的抗菌活性

Antimicrobial Activity of Chitosan Scaffold Loaded with Soluble Factors of Different Probiotic Strains Against Multidrug Resistant .

作者信息

Soleymani Firooze, Rahimi Hamid Reza, Farsiani Hadi, Jalili Amin

机构信息

Department of Medical Biotechnology and Nanotechnology, Faculty of Medicine, Mashhad University of Medical Sciences, Mashhad, Iran.

Department of Medical Genetics and Molecular Medicine, Faculty of Medicine, Mashhad University of Medical Sciences, Mashhad, Iran.

出版信息

Iran J Biotechnol. 2024 Jan 1;22(1):e3612. doi: 10.30498/ijb.2024.381455.3612. eCollection 2024 Jan.

Abstract

BACKGROUND

Bacterial infection remains the most frequent complication of burn injury, which can lead to sepsis, even if antibiotics are used topically and systemically. () is the main causative agent in many cases. The emergence of antibiotic-resistant strains in recent years has increased the need to find novel alternative therapies, such as probiotics. Therefore, this study aimed to examine the antimicrobial properties of probiotic cell-free supernatant (CFS), along with the potential use of a chitosan scaffold both as an antimicrobial agent and as a carrier for the delivery of these complexes.

OBJECTIVE

Evaluation of the antimicrobial properties of cell-free soluble factors of probiotic bacteria both alone and in combination with chitosan scaffolds.

MATERIALS AND METHODS

Nine isolates of previously identified by standard diagnostic tests were investigated. The antimicrobial effects of probiotics in the form of Pedilact® oral drop which contained three probiotic strains, Kidilact® sachet, which contained seven probiotic strains, and strains of () and () isolated from yogurt were studied by an agar well diffusion assay and by using CFS harvested at various growth stages, without pH neutralization. Chitosan with different concentrations of glutaraldehyde (GA) as a crosslinking agent was fabricated to produce a suitable scaffold for loading cell-free supernatants of probiotic strains. The scaffolds were then characterized using scanning electron microscopy. The antimicrobial properties of the CFS, chitosan, and chitosan scaffolds loaded with CFS were analyzed against MDR .

RESULTS

In the agar well diffusion assay, CFS obtained from probiotic strains effectively inhibited the growth of a clinical strain of . This effect was observed when CFS was assessed without pH neutralization. Kidilact® was the most promising synbiotic formulation based on its inhibitory activity. The chitosan scaffold was successfully fabricated, as shown by SEM, and its structure was not affected by acidic CFS. The fabricated scaffolds were able to deliver CFS and, interestingly, antibacterial activity against when CFS was loaded on the chitosan scaffold was enhanced significantly.

CONCLUSION

The results of this study showed chitosan scaffold loaded with cell-free probiotics metabolites can be considered to be a promising antimicrobial dressing in wound healing applications.

摘要

背景

细菌感染仍然是烧伤最常见的并发症,即使局部和全身使用抗生素,也可能导致败血症。在许多情况下,()是主要病原体。近年来抗生素耐药菌株的出现增加了寻找新型替代疗法的需求,如益生菌。因此,本研究旨在检测益生菌无细胞上清液(CFS)的抗菌特性,以及壳聚糖支架作为抗菌剂和这些复合物递送载体的潜在用途。

目的

评估益生菌无细胞可溶性因子单独及与壳聚糖支架联合使用时的抗菌特性。

材料与方法

对先前通过标准诊断试验鉴定的9株分离株进行研究。通过琼脂孔扩散试验,并使用在不同生长阶段收获的未经pH中和的CFS,研究了含有三种益生菌菌株的Pedilact®口服液、含有七种益生菌菌株的Kidilact®小袋以及从酸奶中分离的()和()菌株形式的益生菌的抗菌效果。制备了以不同浓度戊二醛(GA)作为交联剂的壳聚糖,以生产用于负载益生菌菌株无细胞上清液的合适支架。然后使用扫描电子显微镜对支架进行表征。分析了CFS、壳聚糖以及负载CFS的壳聚糖支架对多重耐药()的抗菌特性。

结果

在琼脂孔扩散试验中,从益生菌菌株获得的CFS有效抑制了临床()菌株的生长。在未进行pH中和评估CFS时观察到了这种效果。基于其抑制活性,Kidilact®是最有前景的合生元制剂。如扫描电子显微镜所示,壳聚糖支架成功制备,其结构不受酸性CFS的影响。制备的支架能够递送CFS,有趣的是,当CFS负载在壳聚糖支架上时,对()的抗菌活性显著增强。

结论

本研究结果表明,负载无细胞益生菌代谢产物的壳聚糖支架可被认为是伤口愈合应用中有前景的抗菌敷料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2957/11139447/36cfbe8cf43d/IJB-22-e3612-g001.jpg

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