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内酰胺类药物在新型水凝胶皮肤模型上对单菌种和多菌种跨界生物膜表现出强大的抗真菌活性。

Lactams Exhibit Potent Antifungal Activity Against Monospecies and Multispecies Interkingdom Biofilms on a Novel Hydrogel Skin Model.

作者信息

Abduljalil Hafsa, Alshanta Om Alkhir, Chougule Safa, Butcher Mark, Short Bryn, McLean William, Parry Neil, O'Keeffe Joanne, Ramage Gordon

机构信息

Oral Sciences Research Group, Glasgow Dental School, School of Medicine, Dentistry and Nursing, College of Medical, Veterinary and Life Sciences, Glasgow, UK.

Safeguarding Health Through Infection Prevention (SHIP) Research Group, Research Centre for Health, School of Health and Life Sciences, Glasgow Caledonian University, Glasgow, UK.

出版信息

APMIS. 2025 Jan;133(1):e13510. doi: 10.1111/apm.13510.

Abstract

Infections of intact and damaged skin barriers and keratin are frequently associated with complex biofilm communities containing bacteria and fungi, yet there are limited options for successful management. This study intended to focus on the utility of some novel proprietary lactam molecules, quorum sensing (QS)-derived halogenated furanones, which act to block the QS pathway, against key fungal pathogens of the skin (Candida albicans, Malassezia furfur and Microsporum gypseum). Moreover, we aimed to assess how these actives performed against complex interkingdom biofilms in a clinically relevant model. Two lactam derivatives were tested against a panel of important fungal pathogens and then quantitatively assessed against simple and increasingly complex interkingdom biofilm models on polystyrene coverslips and a novel keratin hydrogel system. The lactams were shown to be effective against a wide range of fungal species in the planktonic and biofilm forms, with no ability to regrow. The fungal component of the multispecies biofilm models was significantly reduced with lactam treatment. Lactam treatment was also comparably effective compared to the non-prescription topical antifungal 'Lamisil' against C. albicans early and late biofilms. This study highlights the effectiveness of lactams as a novel antimicrobial for the management of the polymicrobial and interkingdom multispecies biofilms.

摘要

完整和受损的皮肤屏障及角质层感染常常与包含细菌和真菌的复杂生物膜群落相关联,但成功治疗的选择有限。本研究旨在聚焦于一些新型专利内酰胺分子——群体感应(QS)衍生的卤代呋喃酮的效用,这些分子可阻断QS途径,用于对抗皮肤的关键真菌病原体(白色念珠菌、糠秕马拉色菌和石膏样小孢子菌)。此外,我们旨在评估这些活性物质在临床相关模型中对复杂的跨界生物膜的作用效果。针对一系列重要的真菌病原体测试了两种内酰胺衍生物,然后在聚苯乙烯盖玻片和新型角蛋白水凝胶系统上,对简单及日益复杂的跨界生物膜模型进行了定量评估。结果表明,内酰胺对浮游和生物膜形式的多种真菌均有效,且无法再生长。内酰胺处理使多物种生物膜模型中的真菌成分显著减少。与非处方外用抗真菌药“兰美抒”相比,内酰胺处理对白色念珠菌早期和晚期生物膜同样有效。本研究突出了内酰胺作为一种新型抗菌剂用于治疗多微生物和跨界多物种生物膜的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b80/11718591/0be0b0975e33/APM-133-0-g004.jpg

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