Research Center for Analytical Sciences, Department of Chemistry, College of Sciences , Northeastern University , Box 332, Shenyang 110819 , China.
ACS Appl Mater Interfaces. 2019 Jun 12;11(23):21150-21158. doi: 10.1021/acsami.9b04047. Epub 2019 May 31.
Metal nanoclusters (NCs) have been in focus received attention due to their superior optical properties, whereas their biomedical applications are limited by the relatively low quantum yield and poor cellular uptaking behaviors. In the present study, a pomegranate-type architecture with densely packed AuAg NCs is constructed, where the aminoterminated dendritic silica spheres (dNSiO) with ultralarge central-radial pore channels act as an efficient absorbent host for self-assembling of AuAg NCs. The spatial confinement of AuAg NCs within the pomegranate-type silica architecture not only avoids the time-tedious purification procedure in metal NCs fabrication but also offer significant improvement of the photoluminescence performance of AuAg NCs, i.e., the quantum yield (17.0%) is nearly doubled when compared to that of free AuAg NCs. The presence of Cu induces efficient quenching of the photoluminescence of obtained dNSiO-AuAg NCs, achieving the sensitive detection of Cu with a detection limit of 0.060 μM. Moreover, the pomegranate-type silica architecture serves itself as an excellent nanocarrier to deliver AuAg NCs into living cells, making dNSiO-AuAg NCs an efficient probe for intracellular Cu sensing and imaging.
金属纳米团簇(NCs)因其优异的光学性质而备受关注,但其生物医学应用受到量子产率相对较低和细胞摄取行为不佳的限制。在本研究中,构建了一种具有密集堆积的 AuAg NCs 的石榴型结构,其中具有超大大中径孔通道的氨基封端的树枝状二氧化硅球(dNSiO)作为自组装 AuAg NCs 的有效吸收剂宿主。石榴型硅基结构内的 AuAg NCs 的空间限制不仅避免了金属 NCs 制造中耗时的纯化过程,而且还显著提高了 AuAg NCs 的光致发光性能,即与游离的 AuAg NCs 相比,量子产率(17.0%)提高了近一倍。Cu 的存在诱导了所得 dNSiO-AuAg NCs 的光致发光的有效猝灭,从而实现了对 Cu 的灵敏检测,检测限为 0.060 μM。此外,石榴型硅基结构本身可用作将 AuAg NCs 递送到活细胞的优异纳米载体,使 dNSiO-AuAg NCs 成为用于细胞内 Cu 传感和成像的有效探针。