College of Chemistry, Zhengzhou University, 100 Kexue Road, Zhengzhou, Henan, 450001, China; Center for Advanced Analysis & Gene Sequencing, Zhengzhou University, 100 Kexue Road, Zhengzhou, Henan, 450001, China.
College of Chemistry, Zhengzhou University, 100 Kexue Road, Zhengzhou, Henan, 450001, China.
Anal Chim Acta. 2023 Mar 15;1246:340895. doi: 10.1016/j.aca.2023.340895. Epub 2023 Jan 25.
Developing precise and effective strategies for cancer identification and imaging is attractive due to their importance for early cancer detection, prognosis, and subsequent treatment. Herein, we reported a novel bioorthogonal surface-enhanced Raman scattering (SERS) nanoprobe for accurate cancer cell imaging. A novel core-molecule-shell nanoflower (Au@4-MBN@Au) with rich electromagnetic hot spots and enhanced Raman scattering was first synthesized by optimizing the embedded concentrations of 4-mercaptobenzonitrile (4-MBN). Then, Au@4-MBN@Au was further modified with FA-PEG-SH molecules to acquire the bioorthogonal SERS nanoprobe Au@4-MBN@Au-PEG-FA. The SERS nanoprobe illustrated a robust and stable nitrile stretching vibration Raman signal (2223 cm) in the cellular silent region, ensuring high sensitivity and ultra-accuracy SERS imaging of cancer cells. Furthermore, cell imaging results demonstrated Au@4-MBN@Au-PEG-FA could recognize FR-positive HeLa cells with high selectivity due to the high affinity between folate receptor and folic acid. More notably, Au@4-MBN@Au-PEG-FA has been applied to identify FR-positive Hela cells from co-cultured cancer cells with similar morphology by SERS imaging for the first time. With improved signal-to-background ratio, high selectivity, and excellent stability, we anticipate the SERS nanoprobe Au@4-MBN@Au-PEG-FA could be applied for FR-related cancer theranostics and clinical detection in the future.
由于其在早期癌症检测、预后和随后的治疗中的重要性,开发精确和有效的癌症识别和成像策略是吸引人的。在此,我们报道了一种用于准确癌细胞成像的新型生物正交表面增强拉曼散射(SERS)纳米探针。通过优化嵌入浓度的 4-巯基苯甲腈(4-MBN),首次合成了具有丰富电磁热点和增强拉曼散射的新型核-分子-壳纳米花(Au@4-MBN@Au)。然后,Au@4-MBN@Au 进一步用 FA-PEG-SH 分子进行修饰,获得生物正交 SERS 纳米探针 Au@4-MBN@Au-PEG-FA。SERS 纳米探针在细胞沉默区域中显示出强而稳定的腈拉伸振动拉曼信号(2223 cm),确保了癌细胞的高灵敏度和超高精度 SERS 成像。此外,细胞成像结果表明,由于叶酸受体和叶酸之间的高亲和力,Au@4-MBN@Au-PEG-FA 可以高度选择性地识别 FR 阳性的 HeLa 细胞。更值得注意的是,Au@4-MBN@Au-PEG-FA 已首次应用于通过 SERS 成像从具有相似形态的共培养癌细胞中识别 FR 阳性 Hela 细胞。通过提高信号背景比、高选择性和优异的稳定性,我们预计 SERS 纳米探针 Au@4-MBN@Au-PEG-FA 未来可用于 FR 相关的癌症治疗和临床检测。