Department of Physical and Quantum Chemistry, Faculty of Chemistry, Wroclaw University of Science and Technology, Wybrzeze Wyspianskiego 27, 50-370 Wroclaw, Poland.
Advanced Materials Engineering and Modelling Group, Faculty of Chemistry, Wroclaw University of Science and Technology, Wybrzeze Wyspianskiego 27, 50-370 Wroclaw, Poland.
ACS Nano. 2022 Apr 26;16(4):5427-5438. doi: 10.1021/acsnano.1c09367. Epub 2022 Mar 25.
In recent years, lipid bicontinuous cubic liquid-crystalline nanoparticles known as cubosomes have been under investigation because of their favorable properties as drug nanocarriers useful for anticancer treatments. Herein, we present organic/inorganic hybrid, theranostic cubosomes stabilized in water with a shell of alternate layers of chitosan, single strand DNA (model genetic material for potential gene therapy), and folic acid-chitosan conjugate (the outmost layer), coencapsulating up-converting Er and Yb codoped NaYF nanoparticles and daunorubicin. The latter acts as a chemotherapeutic drug of photosensitizing activity, while up-converting nanoparticles serve as energy harvester and diagnostic agent. Cellular uptake and NIR-induced photodynamic therapy were evaluated against human skin melanoma (MeWo) and ovarian (SKOV-3) cancer cells. Results evidenced the preferential uptake of the theranostic cubosomes in SKOV-3 cells in comparison to uptake in MeWo cells, and this effect was enhanced by the folic acid functionalization of the cubosomes surface. Nanocarriers coloaded with the hybrid fluorophores exhibited a superior NIR-induced photodynamic activity, also confirmed by the improved mitochondrial activity and the most affecting f-actin fibers of cytoskeleton. Similar results, but with higher photocytotoxicity, were detected when folic acid-functionalized cubosomes were incubated with SKOV-3 cells. Taken on the whole, these results prove these hybrid cubosomes are good candidates for the photodynamic treatment of tumor lesions.
近年来,脂质双连续立方液晶纳米颗粒(即 cubosomes)因其作为抗癌治疗用药物纳米载体的有利性质而受到关注。在此,我们提出了一种有机/无机杂化的治疗性 cubosomes,它在水中稳定,壳层由交替层的壳聚糖、单链 DNA(潜在基因治疗的模型遗传物质)和叶酸-壳聚糖缀合物(最外层)组成,共包封上转换的 Er 和 Yb 共掺杂 NaYF 纳米颗粒和柔红霉素。后者作为光致敏活性的化疗药物,而上转换纳米颗粒作为能量收集器和诊断剂。针对人皮肤黑色素瘤(MeWo)和卵巢(SKOV-3)癌细胞,评估了细胞摄取和近红外诱导的光动力治疗。结果表明,与 MeWo 细胞相比,SKOV-3 细胞对治疗性 cubosomes 的摄取具有优先性,而 cubosomes 表面的叶酸功能化增强了这种效应。共负载杂交荧光团的纳米载体表现出优异的近红外诱导光动力活性,这也得到了改善的线粒体活性和细胞骨架中最受影响的 f-肌动蛋白纤维的证实。当用叶酸功能化的 cubosomes 孵育 SKOV-3 细胞时,检测到类似的结果,但具有更高的光细胞毒性。总的来说,这些结果证明这些杂化 cubosomes 是肿瘤病变光动力治疗的良好候选物。