Weawsiangsang Sattaporn, Rattanachak Nontaporn, Ross Sukunya, Ross Gareth M, Baldock Robert A, Jongjitvimol Touchkanin, Jongjitwimol Jirapas
Biomedical Sciences Program, Faculty of Allied Health Sciences, Naresuan University, Phitsanulok 65000, Thailand.
Biology Program, Faculty of Science and Technology, Pibulsongkram Rajabhat University, Phitsanulok 65000, Thailand.
Antibiotics (Basel). 2024 Jan 5;13(1):56. doi: 10.3390/antibiotics13010056.
is one of the most common bacteria causing contact lens-related microbial keratitis (CLMK). Previous studies report that disinfecting solutions were ineffective in preventing biofilm formation. Solutions containing novel natural agents may be an excellent alternative for reducing the risk of CLMK. Here, we investigate the disinfecting properties of hydroquinine in combination with multipurpose solutions (MPSs) to prevent adhesion and biofilm formation. We examined the antibacterial, anti-adhesion, and anti-biofilm properties of hydroquinine-formulated MPSs compared to MPSs alone. Using RT-qPCR, hydroquinine directly affected the expression levels of adhesion-related genes, namely, , , , , and , resulting in reduced adhesion and anti-biofilm formation. Using ISO 14729 stand-alone testing, hydroquinine met the criteria (>99.9% killing at disinfection time) against both reference and clinical strains. Using the crystal violet retention assay and FE-SEM, MPSs combined with hydroquinine were effective in inhibiting adhesion and destroying preexisting biofilms. This report is the first to highlight the potential utility of hydroquinine-containing formulations as a disinfecting solution for contact lenses, specifically for inhibiting adhesion and destroying biofilm. These findings may aid in the development of novel disinfectants aimed at combating , thereby potentially reducing the incidence of CLMK.
是引起与隐形眼镜相关的微生物性角膜炎(CLMK)最常见的细菌之一。先前的研究报告称,消毒溶液在预防生物膜形成方面无效。含有新型天然成分的溶液可能是降低CLMK风险的极佳替代品。在此,我们研究了氢化奎宁与多功能护理液(MPS)联合使用的消毒特性,以防止细菌黏附和生物膜形成。我们比较了含氢化奎宁的MPS与单独的MPS的抗菌、抗黏附及抗生物膜特性。通过RT-qPCR,氢化奎宁直接影响了黏附相关基因(即 、 、 、 及 )的表达水平,从而减少了细菌黏附和生物膜形成。使用ISO 14729独立测试,氢化奎宁对参考菌株和临床菌株均符合标准(消毒时杀灭率>99.9%)。使用结晶紫保留试验和场发射扫描电子显微镜,含氢化奎宁的MPS在抑制细菌黏附和破坏已形成的生物膜方面有效。本报告首次强调了含氢化奎宁制剂作为隐形眼镜消毒溶液的潜在效用,特别是在抑制黏附和破坏生物膜方面。这些发现可能有助于开发旨在对抗 的新型消毒剂,从而有可能降低CLMK的发病率。