Department of Pharmaceutical Technology, Medical University of Białystok, Mickiewicza 2c, 15-222 Białystok, Poland.
Military Institute of Hygiene and Epidemiology, Kozielska 4, 01-163 Warsaw, Poland.
Int J Mol Sci. 2018 Jan 28;19(2):387. doi: 10.3390/ijms19020387.
Mucoadhesive gelling systems with tannic acid modified silver nanoparticles were developed for effective treatment of herpes virus infections. To increase nanoparticle residence time after local application, semi solid formulations designed from generally regarded as safe (GRAS) excipients were investigated for their rheological and mechanical properties followed with ex vivo mucoadhesive behavior to the porcine vaginal mucosa. Particular effort was made to evaluate the activity of nanoparticle-based hydrogels toward herpes simplex virus (HSV) type 1 and 2 infection in vitro in immortal human keratinocyte cell line and in vivo using murine model of HSV-2 genital infection. The effect of infectivity was determined by real time quantitative polymerase chain reaction, plaque assay, inactivation, attachment, penetration and cell-to-cell assessments. All analyzed nanoparticle-based hydrogels exhibited pseudoplastic and thixotropic properties. Viscosity and mechanical measurements of hydrogels were found to correlate with the mucoadhesive properties. The results confirmed the ability of nanoparticle-based hydrogels to affect viral attachment, impede penetration and cell-to-cell transmission, although profound differences in the activity evoked by tested preparations toward HSV-1 and HSV-2 were noted. In addition, these findings demonstrated the in vivo potential of tannic acid modified silver nanoparticle-based hydrogels for vaginal treatment of HSV-2 genital infection.
具有单宁酸修饰的银纳米粒子的粘膜黏附凝胶系统被开发用于有效治疗疱疹病毒感染。为了增加局部应用后纳米颗粒的停留时间,研究了由通常认为安全(GRAS)赋形剂设计的半固体配方,以评估其流变学和机械性能以及对猪阴道黏膜的体外粘膜黏附行为。特别努力评估了基于纳米粒子的水凝胶对体外感染单纯疱疹病毒(HSV)1 型和 2 型的活性在永生化人角质形成细胞系中和使用 HSV-2 生殖器感染的小鼠模型的体内。通过实时定量聚合酶链反应、噬斑测定、失活、附着、渗透和细胞间评估来确定感染的效果。所有分析的基于纳米粒子的水凝胶表现出假塑性和触变性。水凝胶的粘度和机械测量结果与粘膜黏附性能相关。结果证实了基于纳米粒子的水凝胶能够影响病毒附着,阻止渗透和细胞间传播的能力,尽管对 HSV-1 和 HSV-2 测试制剂的活性存在显著差异。此外,这些发现证明了基于单宁酸修饰的银纳米粒子的水凝胶在阴道治疗 HSV-2 生殖器感染方面的体内潜力。