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Gold Nanorods for Optimized Two-photon Luminescence Imaging of Cancerous Tissue

机译:用于优化癌组织的两光子发光成像的金纳米棒

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We demonstrate the use of gold nanorods as molecularly targeted contrast agents for two-photon luminescence (TPL) imaging of cancerous cells 150 urn deep inside a tissue phantom. We synthesized gold nanorods of 50 nm × 15 nm size with a longitudinal surface plasmon resonance of 760 nm. Gold nanorods were conjugated to antibodies against epidermal growth factor receptor (EGFR) and labeled to A431 human epithelial skin cancer cells in a collagen matrix tissue phantom. Using a 1.4 NA oil immersion objective lens, we found that excitation power needed for similar emission intensity in TPL imaging of labeled cells was up to 64 times less than that needed for two-photon autofluorescence (TPAF) imaging of unlabeled cells, which would correspond to a more than 4,000 times increase in emission intensity under equal excitation energy. However, the aberrations due to refractive index mismatch of the immersion oil and the sample limit imaging depth to 75 μm. Using a 0.95 NA water immersion objective lens, we observe robust two-photon emission signal from gold nanorods in the tissue phantoms from at depths of up to 150 μm. Furthermore, the increase in excitation energy required to maintain a constant emission signal intensity as imaging depth was increased was the same in both labeled and unlabeled phantom, suggesting that at the concentrations used, the addition of gold nanorods did not appreciably increase the bulk scattering coefficient of the sample. The remarkable TPL brightness of gold nanorods in comparison to TPAF signal makes them an attractive contrast agent for early detection of cutaneous melanoma.
机译:我们证明了使用金纳米棒作为分子靶向造影剂的两光子发光(TPL)成像的癌细胞150瓮在组织幽灵内部深度。我们合成50nm×15nm尺寸的金纳米棒,具有760nm的纵向表面等离子体共振。将金纳米棒与针对表皮生长因子受体(EGFR)的抗体缀合,并在胶原基质组织幽灵中标记为A431人上皮皮肤癌细胞。使用1.4 Na油浸没物镜,我们发现标记细胞TPL成像中类似发射强度所需的激励功率高达未标记细胞的双光子自发荧光(TPAF)成像所需的64倍,这将对应在相同的激励能量下发射强度增加了4000倍以上。然而,由于浸入式油的折射率不匹配导致的像差,并将样品限制成像深度至75μm。使用0.95 Na水浸物镜,我们观察来自组织幻影中的鲁棒的两光子发射信号,从组织幻像中的金纳米杆,深度高达150μm。此外,在标记和未标记的幻像中增加了保持恒定发射信号强度所需的恒定发射信号强度所需的激发能量的增加是相同的,这表明在所用的浓度下,添加金纳米棒并未明显增加散射散射系数样品。与TPAF信号相比,金纳米棒的显着TPL亮度使其成为早期检测皮肤黑素瘤的有吸引力的造影剂。

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