Yahia-Ammar Akram, Sierra Daniel, Mérola Fabienne, Hildebrandt Niko, Le Guével Xavier
NanoBioPhotonics, Institut d'Electronique Fondamentale, Université Paris-Saclay, Université Paris-Sud , CNRS, 91400 Orsay, France.
Therapeutic Nanosystems, The Andalusian Centre for Nanomedicine and Biotechnology, BIONAND , 29590 Málaga, Spain.
ACS Nano. 2016 Feb 23;10(2):2591-9. doi: 10.1021/acsnano.5b07596. Epub 2016 Feb 5.
Nanoparticles combining enhanced cellular drug delivery with efficient fluorescence detection are important tools for the development of theranostic agents. Here, we demonstrate this concept by a simple, fast, and robust protocol of cationic polymer-mediated gold nanocluster (Au NCs) self-assembly into nanoparticles (NPs) of ca. 120 nm diameter. An extensive characterization of the monodisperse and positively charged NPs revealed pH-dependent swelling properties, strong fluorescence enhancement, and excellent colloidal and photostability in water, buffer, and culture medium. The versatility of the preparation is demonstrated by using different Au NC surface ligands and cationic polymers. Steady-state and time-resolved fluorescence measurements give insight into the aggregation-induced emission phenomenon (AIE) by tuning the Au NC interactions in the self-assembled nanoparticles using the pH-dependent swelling. In vitro studies in human monocytic cells indicate strongly enhanced uptake of the NPs compared to free Au NCs in endocytic compartments. The NPs keep their assembly structure with quite low cytotoxicity up to 500 μg Au/mL. Enhanced drug delivery is demonstrated by loading peptides or antibodies in the NPs using a one-pot synthesis. Fluorescence microscopy and flow cytometry confirmed intracellular colocalization of the biomolecules and the NP carriers with a respective 1.7-fold and 6.5-fold enhanced cellular uptake of peptides and antibodies compared to the free biomolecules.
将增强的细胞药物递送与高效荧光检测相结合的纳米颗粒是开发治疗诊断剂的重要工具。在此,我们通过一种简单、快速且稳健的方案证明了这一概念,即阳离子聚合物介导的金纳米簇(Au NCs)自组装成直径约120 nm的纳米颗粒(NPs)。对单分散且带正电的NPs进行的广泛表征揭示了其pH依赖性溶胀特性、强烈的荧光增强以及在水、缓冲液和培养基中的优异胶体稳定性和光稳定性。通过使用不同的Au NC表面配体和阳离子聚合物证明了该制备方法的通用性。稳态和时间分辨荧光测量通过利用pH依赖性溶胀调节自组装纳米颗粒中的Au NC相互作用,深入了解了聚集诱导发光现象(AIE)。在人单核细胞中的体外研究表明,与内吞区室中的游离Au NCs相比,NPs的摄取显著增强。NPs保持其组装结构,在高达500 μg Au/mL的浓度下细胞毒性相当低。通过一锅法合成将肽或抗体负载到NPs中,证明了药物递送得到增强。荧光显微镜和流式细胞术证实了生物分子与NP载体在细胞内的共定位,与游离生物分子相比,肽和抗体的细胞摄取分别增强了1.7倍和6.5倍。