Drug Discovery Lab, Institute of Advanced Study in Science and Technology , Guwahati 781035, Assam, India.
ACS Appl Mater Interfaces. 2018 Jan 31;10(4):3282-3294. doi: 10.1021/acsami.7b15165. Epub 2018 Jan 17.
Transferrin (Tf)-templated luminescent blue copper nanoclusters (Tf-Cu NCs) are synthesized. They are further formulated into spherical Tf-Cu NC-doxorubicin nanoparticles (Tf-Cu NC-Dox NPs) based on electrostatic interaction with doxorubicin (Dox). The as-synthesized Tf-Cu NC-Dox NPs are explored for bioimaging and targeted drug delivery to delineate high therapeutic efficacy. Förster resonance energy transfer (FRET) within the Tf-Cu NC-Dox NPs exhibited striking red luminescence, wherein the blue luminescence of Tf-Cu NCs (donor) is quenched due to absorption by Dox (acceptor). Interestingly, blue luminescence of Tf-Cu NCs is restored in the cytoplasm of cancer cells upon internalization of the NPs through overexpressed transferrin receptor (TfR) present on the cell surface. Finally, gradual release of Dox from the NPs leads to the generation of its red luminescence inside the nucleus. The biocompatible Tf-Cu NC-Dox NPs displayed superior targeting efficiency on TfR overexpressed cells (HeLa and MCF-7) as compared to the cells expressing less TfR (HEK-293 and 3T3-L1). Combination index (CI) revealed synergistic activity of Tf-Cu NCs and Dox in Tf-Cu NC-Dox NPs. In vivo assessment of the NPs on TfR positive Daltons lymphoma ascites (DLA) bearing mice revealed significant inhibition of tumor growth rendering prolonged survival of the mice.
转铁蛋白(Tf)模板发光蓝色铜纳米簇(Tf-Cu NCs)被合成。它们进一步通过与阿霉素(Dox)的静电相互作用被构建成球形 Tf-Cu NC-阿霉素纳米颗粒(Tf-Cu NC-Dox NPs)。所合成的 Tf-Cu NC-Dox NPs 被用于生物成像和靶向药物递送,以描绘出高治疗效果。Tf-Cu NC-Dox NPs 内的Förster 共振能量转移(FRET)表现出显著的红色发光,其中 Tf-Cu NCs(供体)的蓝色发光由于 Dox(受体)的吸收而被猝灭。有趣的是,当 NPs 通过细胞表面上过度表达的转铁蛋白受体(TfR)内化时,Tf-Cu NCs 的蓝色发光在癌细胞的细胞质中得以恢复。最终,Dox 从 NPs 中的逐渐释放导致其在核内产生红色发光。与表达较少 TfR 的细胞(HEK-293 和 3T3-L1)相比,生物相容性的 Tf-Cu NC-Dox NPs 在 TfR 过表达的细胞(HeLa 和 MCF-7)上显示出对 TfR 的优越靶向效率。组合指数(CI)揭示了 Tf-Cu NCs 和 Dox 在 Tf-Cu NC-Dox NPs 中的协同活性。对 TfR 阳性 Dalton 淋巴瘤腹水(DLA)荷瘤小鼠的 NPs 的体内评估显示出对肿瘤生长的显著抑制作用,从而延长了小鼠的存活时间。