The Effect of Aspect Ratio of Gold Nanorods on Cell Imaging with Two-Photon Excitation

被引:0
作者
Xi Wu
Jing Wang
Ji-Yao Chen
机构
[1] Fudan University,State Key Laboratory of Surface Physics and Department of Physics, and the Key Laboratory of Micro/Nano Photonics Structure (Ministry of Education)
[2] Fudan University,Department of Physics
来源
Plasmonics | 2013年 / 8卷
关键词
Gold nanoparticles; Two-photon excitation absorption cross section; Two-photon photoluminescence; Cell imaging; Surface plasmon resonance;
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中图分类号
学科分类号
摘要
To make the gold nanorod (AuNR) a better photoluminescence (PL) probe for cell imaging under two-photon excitation (TPE), the effect of the aspect ratio of AuNRs was studied. The AuNRs with the aspect ratios of 2.7, 3.2, 4.1, and 4.5 and correlated longitudinal surface plasmon resonance (LSPR) bands of 710, 760, 820, and 870 nm were compared. The approach of two-photon excited PL was used to measure the two-photon absorption cross section (TPACS) of these AuNRs in aqueous solutions. Under TPE of an 800-nm femtosecond laser, the TPACS of AuNRs with an aspect ratio of 3.2 was found to be the highest (about 3 × 109 GM), and that of AuNRs (aspect ratio of 2.7) was only 1.5 × 109 GM. The probe function of these two AuNRs was further compared in cell imaging studies using the human liver cancer cell (QGY) as the cell model. Both TPE PL image and confocal reflectance image of AuNR-loaded cells were acquired comparatively in measurements. The brightness and contrast of confocal reflectance images for these two AuNRs in cells are similar. In contrast, the PL images of cellular AuNRs (2.7) under TPE of 800 nm are weak but that of cellular AuNRs (3.2) is much better. These results show that when the LSPR band of AuNRs is coincided with the excitation wavelength, the TPACS of these AuNRs will be enhanced ensuring a good quality of cell imaging under TPE. The LSPR band is correlated to the aspect ratio of AuNRs. Therefore, in cell imaging studies with TPE, the aspect ratio effect of AuNRs should be taken into consideration.
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页码:685 / 691
页数:6
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共 125 条
[1]  
So PTC(1998)Two-photo deep tissue ex vivo imaging of mouse dermal and subcutaneous structures Opt Express 3 339-350
[2]  
Kim H(2010)Measuring the two-photon absorption cross sections of thiol-capped CdTe quantum dots in living cells Appl Phys Lett 97 173703-3266
[3]  
Kochevar IE(2009)Two-photon absorption and design of two-photon dyes Chem Int Ed 48 3244-N315
[4]  
Zheng S(2004)The use of gold nanoparticles to enhance radiotherapy in mice Phys Med Biol 49 N309-132
[5]  
Chen JY(2007)Hyperthermic effects of gold nanorods on tumor cells Nanomedicine 2 125-945
[6]  
Wang PN(2007)Two-photon luminescence imaging of cancer cells using molecularly targeted gold nanorods Nano Lett 7 941-159
[7]  
Yang WL(2008)Assessing the effect of surface chemistry on gold nanorod uptack, toxicity, and gene expression in mammalian cells Small 4 153-724
[8]  
Zhou LW(2012)Gold nanoparticle uptake by tumour cells of B16 mouse melanoma Plasmonics 7 717-93
[9]  
Pawlicki M(2009)Preparation of gold nanoparticles and their applications in anisotropic nanoparticle synthesis and bioimaging Plasmonics 4 79-4217
[10]  
Collins HA(1999)Size and temperature dependence of the plasmon absorption of colloidal gold nanoparticles J Phys Chem B 103 4212-16356