Lewandowska Hanna, Kalinowska Monika
Centre for Radiation Research and Technology, Institute of Nuclear Chemistry and Technology, 16 Dorodna St., 03195 Warsaw, Poland.
Department of Chemistry, Biology and Biotechnology, Faculty of Civil Engineering and Environmental Sciences, Bialystok University of Technology, Wiejska 45E Street, 15351 Bialystok, Poland.
Materials (Basel). 2020 Nov 12;13(22):5106. doi: 10.3390/ma13225106.
Low-density lipoprotein (LDL) preparations of the chosen polyphenols (PPs) were prepared for the first time in the literature. The solubility of the PPs in the lipidic core of the LDL increased with the increase of their lipophilicity. The anti-/pro-oxidative properties and toxicity of LDL-entrapped PPs toward A 2780 human ovarian cancer cells were examined. The obtained preparations were found to be stable in PBS, and characterized by low toxicity. A binding affinity study revealed that the uptake of PP-loaded LDL particles is non-receptor-specific under experimental conditions. The antioxidative potential of the obtained PPs-doped LDL preparations was shown to be higher than for the PPs themselves, probably due to facilitating transport of LDL preparations into the cellular milieu, where they can interact with the cellular systems and change the redox status of the cell. The PPs-loaded LDL displayed the highest protective effect against Fenton-type reaction induced oxidative DNA damage.
首次在文献中制备了所选多酚(PPs)的低密度脂蛋白(LDL)制剂。PPs在LDL脂质核心中的溶解度随其亲脂性的增加而增加。研究了LDL包裹的PPs对A 2780人卵巢癌细胞的抗/促氧化特性及毒性。发现所得制剂在磷酸盐缓冲盐溶液(PBS)中稳定,且毒性较低。结合亲和力研究表明,在实验条件下,负载PP的LDL颗粒的摄取是非受体特异性的。所得PPs掺杂的LDL制剂的抗氧化潜力高于PPs本身,这可能是由于促进了LDL制剂向细胞环境的转运,在那里它们可以与细胞系统相互作用并改变细胞的氧化还原状态。负载PPs的LDL对芬顿型反应诱导的氧化性DNA损伤显示出最高的保护作用。