Giarra Simona, Zappavigna Silvia, Campani Virginia, Abate Marianna, Cossu Alessia Maria, Leonetti Carlo, Porru Manuela, Mayol Laura, Caraglia Michele, De Rosa Giuseppe
Department of Pharmacy, University of Naples Federico II, D. Montesano 49, 80131 Naples, Italy.
Department of Biochemistry, Biophysics and General Pathology, Second University of Naples, L. De Crecchio 7, 80138 Naples, Italy.
Pharmaceutics. 2018 Oct 9;10(4):180. doi: 10.3390/pharmaceutics10040180.
This study aimed to develop nanovectors co-encapsulating doxorubicin (Doxo) and zoledronic acid (Zol) for a combined therapy against Doxo-resistant tumors. Chitosan (CHI)-based polyelectrolyte complexes (PECs) prepared by ionotropic gelation technique were proposed. The influence of some experimental parameters was evaluated in order to optimize the PECs in terms of size and polydispersity index (PI). PEC stability was studied by monitoring size and zeta potential over time. In vitro studies were carried out on wild-type and Doxo-resistant cell lines, to assess both the synergism between Doxo and Zol, as well as the restoring of Doxo sensitivity. Polymer concentration, incubation time, and use of a surfactant were found to be crucial to achieving small size and monodisperse PECs. Doxo and Zol, only when encapsulated in PECs, showed a synergistic antiproliferative effect in all the tested cell lines. Importantly, the incubation of Doxo-resistant cell lines with Doxo/Zol co-encapsulating PECs resulted in the restoration of Doxo sensitivity.
本研究旨在开发共包封阿霉素(Doxo)和唑来膦酸(Zol)的纳米载体,用于联合治疗阿霉素耐药肿瘤。提出了通过离子凝胶技术制备的基于壳聚糖(CHI)的聚电解质复合物(PEC)。评估了一些实验参数的影响,以便在尺寸和多分散指数(PI)方面优化PEC。通过随时间监测尺寸和zeta电位来研究PEC的稳定性。对野生型和阿霉素耐药细胞系进行了体外研究,以评估Doxo和Zol之间的协同作用以及Doxo敏感性的恢复。发现聚合物浓度、孵育时间和表面活性剂的使用对于获得小尺寸和单分散的PEC至关重要。仅当Doxo和Zol包封在PEC中时,在所有测试细胞系中均显示出协同抗增殖作用。重要的是,用共包封Doxo/Zol的PEC孵育阿霉素耐药细胞系可导致Doxo敏感性的恢复。