State Key Laboratory of Medicinal Chemical Biology, and Research Center for Analytical Sciences, College of Chemistry, Nankai University, 94 Weijin Road, Tianjin 300071, China.
Anal Chem. 2013 Feb 19;85(4):2529-35. doi: 10.1021/ac303747t. Epub 2013 Feb 4.
Transferrin (Tf)-functionalized gold nanoclusters (Tf-AuNCs)/graphene oxide (GO) nanocomposite (Tf-AuNCs/GO) was fabricated as a turn-on near-infrared (NIR) fluorescent probe for bioimaging cancer cells and small animals. A one-step approach was developed to prepare Tf-AuNCs via a biomineralization process with Tf as the template. Tf acted not only as a stabilizer and a reducer but also as a functional ligand for targeting the transferrin receptor (TfR). The prepared Tf-AuNCs gave intense NIR fluorescence that can avoid interference from biological media such as tissue autofluorescence and scattering light. The assembly of Tf-AuNCs and GO gave the Tf-AuNCs/GO nanocomposite, a turn-on NIR fluorescent probe with negligible background fluorescence due to the super fluorescence quenching property of GO. The NIR fluorescence of the Tf-AuNCs/GO nanocomposite was effectively restored in the presence of TfR, due to the specific interaction between Tf and TfR and the competition of TfR with the GO for the Tf in Tf-AuNCs/GO composite. The developed turn-on NIR fluorescence probe offered excellent water solubility, stability, and biocompatibility, and exhibited high specificity to TfR with negligible cytotoxicity. The probe was successfully applied for turn-on fluorescent bioimaging of cancer cells and small animals.
转铁蛋白(Tf)功能化金纳米簇(Tf-AuNCs)/氧化石墨烯(GO)纳米复合材料(Tf-AuNCs/GO)被制备为用于生物成像癌细胞和小动物的近红外(NIR)荧光开启探针。通过一步法在 Tf 作为模板的生物矿化过程中制备 Tf-AuNCs。Tf 不仅作为稳定剂和还原剂,而且作为靶向转铁蛋白受体(TfR)的功能配体。所制备的 Tf-AuNCs 发出强烈的近红外荧光,可避免组织自发荧光和散射光等生物介质的干扰。Tf-AuNCs 和 GO 的组装得到 Tf-AuNCs/GO 纳米复合材料,由于 GO 的超荧光猝灭特性,该复合材料具有微弱的背景荧光,是一种近红外荧光开启探针。在 TfR 的存在下,Tf-AuNCs/GO 纳米复合材料的近红外荧光被有效恢复,这是由于 Tf 与 TfR 之间的特异性相互作用以及 TfR 与 GO 之间对 Tf-AuNCs/GO 复合材料中 Tf 的竞争。所开发的近红外荧光开启探针具有出色的水溶性、稳定性和生物相容性,对 TfR 具有高特异性,且细胞毒性可忽略不计。该探针成功地应用于癌细胞和小动物的近红外荧光开启生物成像。