Subramaniyan Siva Bala, Ameen Fuad, Singaravelu Dharshini Karnan, Elumalai Preetham, Bhat Sartaj Ahmed, Veerappan Anbazhagan
Department of Chemistry, School of Chemical and Biotechnology, SASTRA Deemed University, Thanjavur, Tamil Nadu, India.
Department of Botany and Microbiology, College of Science, King Saud University, Riyadh, Saudi Arabia.
J Appl Microbiol. 2022 Dec;133(6):3252-3264. doi: 10.1111/jam.15535. Epub 2022 Apr 11.
Polymicrobial biofilm encasing cross-kingdom micro-organisms are apparent in medicine, which imposes serious resistance to conventional antimicrobial treatment. The objective of the study was to explore Butea monosperma seed lectin (BMSL) conjugated antimicrobial lipid, 2-((N-[2-hydroxyethyl]palmitamido)methyl)-1-methylpyridin-1-ium iodide (cN16E) to inhibit mixed-species biofilm of uropathogenic Escherichia coli-Candida albicans.
Antimicrobial activity and antibiofilm of cN16E and cN16E-BMSL conjugate (BcN16E) were analysed against single- and mixed microbial cultures. The minimum inhibitory concentration (MIC) indicates that the MIC of cN16E-BMSL conjugate (BcN16E) against cohabiting UPEC-C. albicans was eightfold lower than the cN16E. BcN16E affects membrane integrity to elicit antimicrobial activity. BcN16E inhibits the dual-species biofilm even with 16 times lower MIC of cN16E. BcN16E impairs the biofilm-associated virulence factors which include extracellular polysaccharides, cell surface hydrophobicity, swimming, swarming motilities, hyphal filamentous morphology, curli formation and haemolysin activity. As a proof of concept, we demonstrated BcN16E ability to inhibit dual-species biofilm formation on a urinary catheter.
The study revealed that the BcN16E is better than cN16E in impairing biofilm-associated virulence factors and exerting antimicrobial activity.
The findings emphasize that phytolectin has the potential to enhance the anti-virulence strategies of antimicrobials against cross-kingdom biofilm-related infections.
包裹着跨界微生物的多菌种生物膜在医学领域很常见,这对传统抗菌治疗产生了严重的耐药性。本研究的目的是探索紫铆子凝集素(BMSL)偶联的抗菌脂质2-((N-[2-羟乙基]棕榈酰胺基)甲基)-1-甲基吡啶鎓碘化物(cN16E)对尿路致病性大肠杆菌-白色念珠菌混合菌种生物膜的抑制作用。
分析了cN16E和cN16E-BMSL偶联物(BcN16E)对单一和混合微生物培养物的抗菌活性和抗生物膜活性。最低抑菌浓度(MIC)表明,cN16E-BMSL偶联物(BcN16E)对同居的尿路致病性大肠杆菌-白色念珠菌的MIC比cN16E低八倍。BcN16E通过影响膜完整性来发挥抗菌活性。即使cN16E的MIC低16倍,BcN16E仍能抑制双菌种生物膜。BcN16E会损害与生物膜相关的毒力因子,包括细胞外多糖、细胞表面疏水性、游动性、群集运动性、菌丝丝状形态、卷曲菌毛形成和溶血素活性。作为概念验证,我们展示了BcN16E抑制导尿管上双菌种生物膜形成的能力。
该研究表明,BcN16E在损害与生物膜相关的毒力因子和发挥抗菌活性方面优于cN16E。
研究结果强调,植物凝集素有可能增强抗菌剂针对跨界生物膜相关感染的抗毒力策略。