Nishiyama Ryo, Furuya Kei, McCann Phillip, Kacenauskaite Laura, Laursen Bo W, Flood Amar H, Hiramatsu Kotaro, Goda Keisuke
Department of Chemistry, The University of Tokyo, Tokyo 113-0033, Japan.
Nano-Science Center and Department of Chemistry, University of Copenhagen, DK-2100 Copenhagen, Denmark.
Anal Chem. 2023 Aug 29;95(34):12835-12841. doi: 10.1021/acs.analchem.3c01958. Epub 2023 Aug 17.
Raman probes have received growing attention for their potential use in super-multiplex biological imaging and flow cytometry applications that cannot be achieved using fluorescent probes. However, obtaining strong Raman scattering signals from small Raman probes has posed a challenge that holds back their practical implementation. Here, we present new types of Raman-active nanoparticles (Rdots) that incorporate ionophore macrocycles, known as cyanostars, to act as ion-driven and structure-directing spacers to address this problem. These macrocycle-enhanced Rdots (MERdots) exhibit sharper and higher electronic absorption peaks than Rdots. When combined with resonant broadband time-domain Raman spectroscopy, these MERdots show a ∼3-fold increase in Raman intensity compared to conventional Rdots under the same particle concentration. Additionally, the detection limit on the concentration of MERdots is improved by a factor of 2.5 compared to that of Rdots and a factor of 430 compared to that of Raman dye molecules in solution. The compact size of MERdots (26 nm in diameter) and their increased Raman signal intensity, along with the broadband capabilities of time-domain resonant Raman spectroscopy, make them promising candidates for a wide range of biological applications.
拉曼探针因其在超多重生物成像和流式细胞术应用中的潜在用途而受到越来越多的关注,而这些应用是使用荧光探针无法实现的。然而,从小型拉曼探针获得强拉曼散射信号带来了一个挑战,阻碍了它们的实际应用。在这里,我们展示了新型的拉曼活性纳米颗粒(Rdots),其包含称为氰星的离子载体大环,作为离子驱动和结构导向间隔物来解决这个问题。这些大环增强的Rdots(MERdots)比Rdots表现出更尖锐和更高的电子吸收峰。当与共振宽带时域拉曼光谱结合时,在相同颗粒浓度下,这些MERdots的拉曼强度比传统Rdots提高了约3倍。此外,与Rdots相比,MERdots浓度的检测限提高了2.5倍,与溶液中的拉曼染料分子相比提高了430倍。MERdots的紧凑尺寸(直径26nm)及其增加的拉曼信号强度,以及时域共振拉曼光谱的宽带能力,使其成为广泛生物应用的有希望的候选者。