School of Chemistry, Sambalpur University , Jyoti Vihar, Burla, Odisha 768 019, India.
Langmuir. 2018 Feb 13;34(6):2344-2351. doi: 10.1021/acs.langmuir.7b03595. Epub 2018 Jan 29.
Eugenol is known for its antimicrobial effects against microorganisms responsible for infectious diseases in humans, food-borne pathogens, and oral pathogens. In spite of several reports on the antimicrobial function of eugenol by modulating the structural properties of cell membranes, there is limited information on the influence of eugenol in the lipid membrane. In this work, we explored the effect of eugenol on the organization and dynamics of large unilamellar vesicles (LUVs) of DMPC using the intrinsic fluorescence of eugenol and an extrinsic hydrophobic probe, DPH, in varying phases. The organization and dynamics of the bilayers of DMPC vesicles were monitored by utilizing varieties of steady-state and time-resolved fluorescence measurements. Our results show that eugenol stabilizes the gel phase and elevates the phase-transition temperature of DMPC in a concentration-dependent fashion. Fluorescence lifetime measurements demonstrate that higher eugenol-induced water penetration was observed in fluid-phase membranes. Time-resolved anisotropy measurements demonstrate that eugenol reduces the semiangle of DPH wobbling-in-a-cone in gel-phase membranes, whereas the semiangle remains unaffected in fluid-phase membrane. This implies that the eugenol further orders the gel-phase membrane, and this could be a plausible reason for the eugenol-dependent elevation of the phase-transition temperature of DMPC. We envisage that these results will contribute important information to understand the interaction of eugenol with biological membranes.
丁香酚具有抗微生物作用,可对抗导致人类传染病、食源性病原体和口腔病原体的微生物。尽管有几份报告介绍了丁香酚通过调节细胞膜的结构特性来发挥抗菌功能,但关于丁香酚对脂质膜的影响的信息有限。在这项工作中,我们使用丁香酚的固有荧光和外源性疏水性探针 DPH 研究了丁香酚对 DMPC 大单层囊泡 (LUV) 的组织和动力学的影响,研究中使用了不同相的 DPH。利用各种稳态和时间分辨荧光测量来监测 DMPC 囊泡双层的组织和动力学。我们的结果表明,丁香酚以浓度依赖的方式稳定凝胶相并提高 DMPC 的相变温度。荧光寿命测量表明,在流体相膜中观察到更高的丁香酚诱导的水渗透。时间分辨各向异性测量表明,在凝胶相膜中,丁香酚降低了 DPH 在圆锥体内摆动的半角,而在流体相膜中半角不受影响。这意味着丁香酚进一步有序化了凝胶相膜,这可能是丁香酚依赖性提高 DMPC 相变温度的原因。我们设想这些结果将为理解丁香酚与生物膜的相互作用提供重要信息。