Jarockyte Greta, Poderys Vilius, Barzda Virginijus, Karabanovas Vitalijus, Rotomskis Ricardas
Biomedical Physics Laboratory, National Cancer Institute, LT-08406 Vilnius, Lithuania.
Life Science Center, Vilnius University, LT-10257 Vilnius, Lithuania.
Cancers (Basel). 2022 Apr 8;14(8):1887. doi: 10.3390/cancers14081887.
Personalized cancer theranostics has a potential to increase efficiency of early cancer diagnostics and treatment, and to reduce negative side-effects. Protein-stabilized gold nanoclusters may serve as theranostic agents. To make gold nanoclusters personalized and highly biocompatible, the clusters were stabilized with human plasma proteins. Optical properties of synthesized nanoclusters were investigated spectroscopically, and possible biomedical application was evaluated using standard cell biology methods. The spectroscopic investigations of human plasma proteins stabilized gold nanoclusters revealed that a wide photoluminescence band in the optical tissue window is suitable for cancer diagnostics. High-capacity generation of singlet oxygen and other reactive oxygen species was also observed. Furthermore, the cluster accumulation in cancer cells and the photodynamic effect were evaluated. The results demonstrate that plasma proteins stabilized gold nanoclusters that accumulate in breast cancer cells and are non-toxic in the dark, while appear phototoxic under irradiation with visible light. The results positively confirm the utility of plasma protein stabilized gold nanoclusters for the use in cancer diagnostics and treatment.
个性化癌症诊疗有提高早期癌症诊断和治疗效率以及减少负面副作用的潜力。蛋白质稳定的金纳米簇可用作诊疗剂。为使金纳米簇具有个性化且高度生物相容,用人类血浆蛋白对这些纳米簇进行了稳定化处理。通过光谱学方法研究了合成纳米簇的光学性质,并使用标准细胞生物学方法评估了其可能的生物医学应用。对人类血浆蛋白稳定的金纳米簇的光谱学研究表明,光学组织窗口中的宽光致发光带适用于癌症诊断。还观察到单线态氧和其他活性氧的高容量生成。此外,评估了纳米簇在癌细胞中的积累和光动力效应。结果表明,血浆蛋白稳定的金纳米簇在乳腺癌细胞中积累,在黑暗中无毒,但在可见光照射下表现出光毒性。这些结果肯定了血浆蛋白稳定的金纳米簇在癌症诊断和治疗中的应用价值。