Dipartimento di Scienza dei Materiali, Università degli Studi Milano-Bicocca, via R. Cozzi 55, 20125, Milano, Italy.
Dipartimento di Patofisiologia e dei Trapianti, Università degli Studi di Milano, Fondazione IRCCS Cà Granda Ospedale Maggiore Policlinico, Centro Dino Ferrari, Via Francesco Sforza 35, 20122, Milano, Italy.
Sci Rep. 2017 Jul 20;7(1):5976. doi: 10.1038/s41598-017-05156-9.
Metal nanoclusters featuring tunable luminescence and high biocompatibility are receiving attention as fluorescent markers for cellular imaging. The recently discovered ability of gold clusters to scavenge cytotoxic reactive oxygen species (ROS) from the intracellular environment extends their applicability to biomedical theranostics and provides a novel platform for realizing multifunctional luminescent probes with engineered anti-cytotoxic activity for applications in bio-diagnostics and conceivably cellular therapy. This goal could be achieved by using clusters of strongly reactive metals such as silver, provided that strategies are found to enhance their luminescence while simultaneously enabling direct interaction between the metal atoms and the chemical surroundings. In this work, we demonstrate a synergic approach for realizing multifunctional metal clusters combining enhanced luminescence with strong and lasting ROS scavenging activity, based on the fabrication and in situ protection of Ag nanoclusters with a supramolecular mantle of thiolated-Au atoms (Ag/Au-t). Confocal imaging and viability measurements highlight the biocompatibility of Ag/Au-t and their suitability as fluorescent bio-markers. ROS concentration tests reveal the remarkable scavenging activity of Ag-based clusters. Proliferation tests of cells in artificially stressed culture conditions point out their prolonged anti-cytotoxic effect with respect to gold systems, ensuring positive cell proliferation rates even for long incubation time.
具有可调谐发光和高生物相容性的金属纳米团簇作为细胞成像的荧光标记物受到关注。最近发现金纳米团簇能够从细胞内环境中清除细胞毒性活性氧(ROS),这扩展了它们在生物医学治疗中的应用,并为实现具有工程化抗细胞毒性活性的多功能发光探针提供了一个新平台,可用于生物诊断和细胞治疗。通过使用银等反应性强的金属簇,可以实现这一目标,前提是找到增强其发光的策略,同时使金属原子与化学环境之间能够直接相互作用。在这项工作中,我们展示了一种协同方法,用于实现多功能金属团簇,将增强的发光与强而持久的 ROS 清除活性结合在一起,这是基于具有巯基化金原子的超分子外衣的 Ag 纳米团簇的制造和原位保护(Ag/Au-t)。共聚焦成像和活力测量突出了 Ag/Au-t 的生物相容性及其作为荧光生物标志物的适用性。ROS 浓度测试揭示了基于 Ag 的团簇的显著清除活性。在人为应激培养条件下的细胞增殖测试指出,它们具有相对于金系统的延长的抗细胞毒性作用,即使在长时间孵育的情况下,也能确保细胞的增殖率为正。