Institute of Life Science, Swansea University Medical School, Swansea University, Swansea, SA2 8PP, UK.
Department of Clinical and Experimental Medicine, University of Catanzaro "Magna Graecia", Viale "S. Venuta", 88100, Catanzaro, Italy.
Biomed Microdevices. 2019 Mar 29;21(2):36. doi: 10.1007/s10544-019-0385-x.
Infections of the female reproductive tract are a major cause of morbidity and mortality in humans, requiring significant investment to sustain treatment and representing a major challenge to health. The increasing prevalence of bacterial resistance, and an almost complete absence of new antibiotic therapies for the past five decades, mean there is a desperate need for novel approaches to the treatment of bacterial infections. Within the present study, we demonstrate the effective ex vivo treatment of bacterial infection of the female reproductive tract using a controlled-release, liquid crystal-based platform. Liquid crystal encapsulation of ciprofloxacin significantly enhanced its bactericidal efficacy and reduced cell toxicity. Liquid crystal structures are low-cost, simple to manufacture and provide a sustained-release profile of encapsulated ciprofloxacin. Treatment of Escherichia coli infected reproductive tract epithelial cells and whole organ cultures with liquid crystal encapsulated ciprofloxacin proved to be an effective strategy for reducing bacterial load and reproductive tract inflammatory responses to infection. These data suggest that such an approach could provide an efficacious treatment modality for enhancing the effectiveness of current antibiotic therapies.
女性生殖道感染是人类发病率和死亡率的主要原因,需要大量投资来维持治疗,这对健康构成了重大挑战。过去五十年中,细菌耐药性的不断增加,以及几乎完全没有新的抗生素治疗方法,意味着我们迫切需要新的方法来治疗细菌感染。在本研究中,我们展示了使用基于控制释放的液晶平台有效治疗女性生殖道细菌感染的方法。环丙沙星的液晶包封显著提高了其杀菌效果并降低了细胞毒性。液晶结构成本低,制造简单,并提供了封装的环丙沙星的持续释放特性。用液晶包封的环丙沙星处理感染生殖道的上皮细胞和整个器官培养物,被证明是减少细菌负荷和生殖道对感染炎症反应的有效策略。这些数据表明,这种方法可能为提高现有抗生素治疗方法的有效性提供一种有效的治疗模式。