Department of Physics, Central University of Kerala, Periye, Kasaragod, Kerala 671316, India.
Department of Biochemistry and Molecular Biology, Central University of Kerala, Periye, Kasaragod, Kerala 671316, India.
Biochim Biophys Acta Gen Subj. 2023 Jul;1867(7):130372. doi: 10.1016/j.bbagen.2023.130372. Epub 2023 Apr 29.
This study introduces the development of blue-emitting colloidal Cu NCs through a novel and easy PEGylation method using different functional groups, including -SH and -COOH. The surface functionalization controls the size, cellular toxicity, and emission properties of Cu NCs. The combination of PEG, thiol, and carboxylic groups protects the particle surface from aggregation and oxidation. Among the samples, CAGP (Surface modified Cu NCs with -SH-COOH-PEG combination) emerges as an amazing candidate with the lowest toxicity and enhanced blue emission properties. The bright blue fluorescence emission from Hela cells after treatment with CAGP demonstrated this property. It also has excellent peroxide sensing potential, with a detection limit of 1.4 μM. Because of their excellent bioimaging and peroxide sensing properties, these Cu NCs could be a promising candidate for cellular oxidative stress sensing applications with high clinical relevance.
本研究通过一种新颖且简便的 PEGylation 方法,利用不同的官能团,包括 -SH 和 -COOH,开发出了蓝色发射的胶体 Cu NCs。表面官能团控制了 Cu NCs 的尺寸、细胞毒性和发射性质。PEG、巯基和羧酸基团的结合保护了粒子表面免受聚集和氧化。在这些样品中,CAGP(带有 -SH-COOH-PEG 组合的表面修饰的 Cu NCs)表现出最低的毒性和增强的蓝色发射性质,是一种令人惊喜的候选物。用 CAGP 处理后的 Hela 细胞发出明亮的蓝色荧光,证明了这一性质。它还具有出色的过氧化物传感潜力,检测限为 1.4 μM。由于其出色的生物成像和过氧化物传感性能,这些 Cu NCs 可能成为细胞氧化应激传感应用的有前途的候选物,具有很高的临床相关性。