Bonferoni Maria Cristina, Sandri Giuseppina, Rossi Silvia, Usai Donatella, Liakos Ioannis, Garzoni Alice, Fiamma Maura, Zanetti Stefania, Athanassiou Athanassia, Caramella Carla, Ferrari Franca
Department of Drug Sciences, University of Pavia, Vle Taramelli 12, 27100 Pavia, Italy; Center for Health Technology (CHT), University of Pavia, Via A. Ferrata 1, 27100 Pavia, Italy.
Department of Drug Sciences, University of Pavia, Vle Taramelli 12, 27100 Pavia, Italy; Center for Health Technology (CHT), University of Pavia, Via A. Ferrata 1, 27100 Pavia, Italy.
Colloids Surf B Biointerfaces. 2017 Apr 1;152:385-392. doi: 10.1016/j.colsurfb.2017.01.043. Epub 2017 Jan 24.
Amphiphilic chitosans have been recently proposed to improve delivery of poorly soluble drugs. In the present paper a derivative obtained by ionic interaction between chitosan and oleic acid was for the first time studied to physically stabilize o/w nanoemulsions of an antimicrobial essential oil, Cymbopogon citratus (Lemongrass), in a low energy and mild conditions emulsification process. The novel combination of spontaneous emulsification process with chitosan oleate amphiphilic properties resulted in a stable dispersion of a few hundred nanometer droplets. Positive zeta potential confirmed the presence of a chitosan shell around the oil droplets, which is responsible for the nanoemulsion physical stabilization and for the maintenance of chitosan bioactive properties, such as mucoadhesion. Cytotoxicity test was performed on four different cell lines (HEp-2, Caco-2, WKD and McCoy cells) showing biocompatibility of the system. The maintenance and in some cases even a clear improvement in the essential oil antimicrobial activity towards nine bacterial and ten fungal strains, all of clinical relevance was verified for Lemongrass nanoemulsion.
两亲性壳聚糖最近被提议用于改善难溶性药物的递送。在本文中,首次研究了壳聚糖与油酸通过离子相互作用得到的衍生物,以便在低能量和温和条件的乳化过程中对抗菌精油柠檬草(香茅)的水包油纳米乳液进行物理稳定。自发乳化过程与壳聚糖油酸酯两亲性的新颖结合导致了几百纳米液滴的稳定分散。正的ζ电位证实了油滴周围存在壳聚糖壳,这负责纳米乳液的物理稳定以及壳聚糖生物活性特性(如粘膜粘附)的维持。对四种不同细胞系(HEp - 2、Caco - 2、WKD和McCoy细胞)进行了细胞毒性测试,结果表明该系统具有生物相容性。对于柠檬草纳米乳液,验证了其对九种细菌和十种真菌菌株(均具有临床相关性)的抗菌活性得以维持,在某些情况下甚至有明显提高。