Georgia Institute of Technology, United States.
Emory Univ. School of Medicine, United States.
J Biomed Opt. 2019 Aug;24(12):1-5. doi: 10.1117/1.JBO.24.12.121903.
Utility of glycol-chitosan-coated gold nanoparticles (GC-AuNPs) as a photoacoustic contrast agent for cancer cell imaging was demonstrated. Through the synergistic effect of glycol chitosan and gold nanoparticles, GC-AuNPs showed cellular uptake in breast cancer cells and resulted in strong photoacoustic signals in tissue-mimicking cell phantoms. The performance of GC-AuNPs as contrast agents was established with photoacoustic imaging and confirmed with dark-field microscopy. The cell phantoms displayed strong photoacoustic signals if cells were incubated more than 3 h with GC-AuNPs, compared with PEG-AuNPs that showed no photoacoustic signal increase. The enhanced photoacoustic signals originated from the plasmon coupling effect of GC-AuNPs after the cellular uptake in cancer cells. Importantly, photoacoustic imaging of cancer cells was achieved with GC-AuNPs—contrast agents that did not require antibodies or complex surface modification. The endocytosis of GC-AuNPs was also confirmed with dark-field microscopy. The results show that GC-AuNPs have potential as a photoacoustic contrast agent for cellular imaging including tumor tissue imaging.
证明了乙二醇壳聚糖包覆的金纳米粒子(GC-AuNPs)作为光声对比剂在癌细胞成像中的应用。通过乙二醇壳聚糖和金纳米粒子的协同作用,GC-AuNPs 在乳腺癌细胞中表现出细胞摄取,并在组织模拟细胞中产生强烈的光声信号。通过光声成象和暗场显微镜证实了 GC-AuNPs 作为对比剂的性能。与没有光声信号增加的 PEG-AuNPs 相比,如果细胞用 GC-AuNPs 孵育超过 3 小时,细胞模拟物会显示出强烈的光声信号。增强的光声信号来源于癌细胞摄取后 GC-AuNPs 的等离子体耦合效应。重要的是,GC-AuNPs 可用于癌症细胞的光声成像——这种对比剂不需要抗体或复杂的表面修饰。也通过暗场显微镜证实了 GC-AuNPs 的内吞作用。结果表明,GC-AuNPs 有可能成为细胞成像(包括肿瘤组织成像)的光声对比剂。