Center for Light-based Research and Technology COHERENCE, Department of Atomic Physics, Vinča Institute of Nuclear Sciences, National Institute of the Republic of Serbia, University of Belgrade, Belgrade, Serbia.
ALBA-CELLS Synchrotron, MIRAS Beamline, Cerdanyola Del Vallès, Barcelona, Spain.
Chem Biol Interact. 2022 Jun 1;360:109950. doi: 10.1016/j.cbi.2022.109950. Epub 2022 Apr 14.
Carbon dots (CDs) and N-carbon dots (N-CDs) loaded with Ru-complex (CDs@RuCN, N-CDs@RuCN, respectively) were investigated as media imposing biochemical changes induced by UV illumination of ovarian cancer, A2780, and osteosarcoma, CAL72, cells. Synchrotron radiation-based Fourier Transform Infrared Spectroscopy was performed, and the spectra were subjected to a Principal Component Analysis. The CDs@RuCN and N-CDs@RuCN effects on cancer cells were analyzed by the theoretical modelling of the stability of the composite systems and a protein database search. Moreover, a detailed evaluation of surface and optical properties of CDs@RuCN and N-CDs@RuCN was carried out. Results demonstrated selective action of the CDs@RuCN and N-CDs@RuCN-based photodynamic therapy, with N-CDs@RuCN being the most active in inducing changes in A2780 and CDs@RuCN in CAL72 cells. We assume that different surface charges of nanoparticles led to direct interactions of N-CDs@RuCN with a Wnt signalling pathway in A2780 and those of CDs@RuCN with PI3-K/Akt in CAL72 cells and that further biochemical changes occurred upon light illumination.
负载 Ru 配合物的碳点(CDs@RuCN,N-CDs@RuCN)被研究为介质,引起卵巢癌细胞、A2780 和骨肉瘤细胞、CAL72 经紫外线照射引起的生化变化。采用同步辐射傅里叶变换红外光谱法进行分析,并对光谱进行主成分分析。通过复合体系稳定性的理论建模和蛋白质数据库搜索分析 CDs@RuCN 和 N-CDs@RuCN 对癌细胞的影响。此外,还对 CDs@RuCN 和 N-CDs@RuCN 的表面和光学性质进行了详细评估。结果表明,CDs@RuCN 和 N-CDs@RuCN 基光动力疗法具有选择性作用,N-CDs@RuCN 在诱导 A2780 细胞变化方面最活跃,而 CDs@RuCN 在 CAL72 细胞中最活跃。我们假设纳米粒子的不同表面电荷导致 N-CDs@RuCN 与 A2780 中的 Wnt 信号通路直接相互作用,而 CDs@RuCN 与 CAL72 细胞中的 PI3-K/Akt 相互作用,并且在光照下会发生进一步的生化变化。