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极性敏感的双发射荧光碳点作为活细胞中脂滴的高特异性靶向探针。

Polarity-sensitive dual emissive fluorescent carbon dots as highly specific targeting probes for lipid droplets in live cells.

作者信息

Neerkattil Aminakutty, Bijeesh M M, Ghosh K K, Padmanabhan Parasuraman, Gulyás Balázs, Murukeshan V M, Bhattacharyya Jayeeta

机构信息

Department of Physics, Indian Institute of Technology Madras Chennai Tamil Nadu India

Centre for Optical and Laser Engineering (COLE), School of Mechanical and Aerospace Engineering, Nanyang Technological University Singapore

出版信息

Nanoscale Adv. 2025 Mar 18;7(9):2686-2694. doi: 10.1039/d5na00061k. eCollection 2025 Apr 29.

Abstract

Polarity-sensitive fluorescent nanoparticles with intrinsic dual emission are invaluable tools for investigating microenvironmental polarity. Ratiometric fluorescent sensors, with their built-in self-calibration characteristics, offer higher sensitivity and more obvious visual detection in qualitative and quantitative analysis. In this context, we report the synthesis of polarity-sensitive, dual-emitting carbon dots a solvothermal method and demonstrate their application in ratiometric polarity sensing. These carbon dots exhibit characteristic solvatochromic effects with emissions in both the blue and red spectral regions. Notably, we observed a remarkable 30-fold enhancement in the red-to-blue emission intensity ratio as the solvent polarity shifted from 0.245 to 0.318. The dual-emitting carbon dots demonstrate the highly sensitive and inherently reliable (self-calibration) polarity dependence of the emission spectra, facilitating their application in ratiometric polarity sensing. These dual-emitting carbon dots exhibited a strong affinity for lipid droplets in live cells, demonstrating their potential as highly specific targeting probes for imaging lipid droplets in live cells, without the need for additional targeting ligands. The characteristics of excellent biocompatibility, photostability, and good cellular imaging capabilities make these dual-emitting carbon dots highly promising for biomedical and sensing applications.

摘要

具有固有双发射的极性敏感荧光纳米颗粒是研究微环境极性的宝贵工具。比率荧光传感器具有内置的自校准特性,在定性和定量分析中提供更高的灵敏度和更明显的视觉检测。在此背景下,我们报道了通过溶剂热法合成极性敏感、双发射碳点,并展示了它们在比率极性传感中的应用。这些碳点表现出特征性的溶剂化显色效应,在蓝色和红色光谱区域均有发射。值得注意的是,随着溶剂极性从0.245变为0.318,我们观察到红到蓝发射强度比显著增强了30倍。双发射碳点证明了发射光谱对极性具有高度敏感且内在可靠(自校准)的依赖性,便于它们在比率极性传感中的应用。这些双发射碳点对活细胞中的脂滴表现出强烈的亲和力,表明它们有潜力作为高特异性靶向探针用于活细胞中脂滴的成像,而无需额外的靶向配体。优异的生物相容性、光稳定性和良好的细胞成像能力等特性使这些双发射碳点在生物医学和传感应用中极具前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c70/12039527/46c7bd816f66/d5na00061k-f1.jpg

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