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骆驼肽对骨科植入物上形成的[细菌名称1]和[细菌名称2]生物膜的影响。 (注:原文中“and”后面应该还有具体的细菌名称,但未完整给出)

Effect of Camel Peptide on the Biofilm of and Formed on Orthopedic Implants.

作者信息

Nowicka Joanna, Janczura Adriana, Pajączkowska Magdalena, Chodaczek Grzegorz, Szymczyk-Ziółkowska Patrycja, Walczuk Urszula, Gościniak Grażyna

机构信息

Department of Microbiology, Faculty of Medicine, Medical University, 50-368 Wrocław, Poland.

Bioimaging Laboratory, Łukasiewicz Research Network-PORT Polish Center for Technology Development, 54-066 Wrocław, Poland.

出版信息

Antibiotics (Basel). 2023 Nov 28;12(12):1671. doi: 10.3390/antibiotics12121671.

Abstract

The increasing bacterial drug resistance and the associated challenges in the treatment of infections warrant the search for alternative therapeutic methods. Hope is placed in antimicrobial peptides, which have a broad spectrum of action and are effective against strains which are resistant to conventional antibiotics. Antimicrobial peptides are also tested for their efficacy in the treatment of infections associated with the formation of biofilm. The aim of the present study was to examine the effect of Camel peptide on and adhesion to and formation of biofilm on steel cortical bone screws and also on the process of reducing mature biofilm in orthopedic implants. The tests were performed on steel implants for osteosynthesis. The MIC value and MBEC values of the peptide were determined using the microdilution method in microtiter plates. The effect of the peptide on adhesion and biofilm formation, as well as on the activity on the preformed biofilm, was evaluated using quantitative methods and confocal microscopy. The presented research results indicate that the peptide exhibits very good antimicrobial properties against the analyzed strains. Concentrations above MIC reduced biofilm in the range of 90-99%.

摘要

细菌耐药性的不断增加以及感染治疗中相关的挑战促使人们寻找替代治疗方法。人们将希望寄托于抗菌肽,抗菌肽具有广泛的作用谱,对耐传统抗生素的菌株有效。抗菌肽还被测试其在治疗与生物膜形成相关感染方面的疗效。本研究的目的是研究骆驼肽对钢质皮质骨螺钉上生物膜的黏附、形成以及对骨科植入物上成熟生物膜减少过程的影响。测试在用于骨接合的钢质植入物上进行。使用微量滴定板中的微量稀释法测定该肽的最低抑菌浓度(MIC)值和最低生物被膜消除浓度(MBEC)值。使用定量方法和共聚焦显微镜评估该肽对黏附、生物膜形成以及对预先形成的生物膜的活性的影响。所呈现的研究结果表明,该肽对所分析的菌株表现出非常好的抗菌特性。高于MIC的浓度可使生物膜减少90%至99%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/107e/10740474/32961e668c82/antibiotics-12-01671-g001.jpg

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