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Feasibility of Using Gold Nanorods for Optical Contrast in Two Photon Microscopy of Oral Carcinogenesis

机译:在口腔癌变的两个光子显微镜中使用金纳米棒进行光学对比的可行性

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Gold nanorods (GNRs) combined with two-photon microscopy were explored for potential application in imaging of oral carcinogenesis. GNRs have been shown to be effective contrast agents for two photon luminescence in that excitation laser powers required for imaging are low compared to traditional fluorophores. Imaging of cells, ex vivo tissues, and in vivo oral mucosa labeled with GNRs was performed to evaluate potential advantages of these agents in molecular imaging of epithelial carcinogenesis. Powers required to elicit a two-photon luminescence signal from GNRs were determined for cells as well as normal and malignant transformed lesions, 24 hours following injection of GNRs in a hamster model for oral cancer. The strength of the detected emission as the function of the average incident laser power was measured in tissues with and without GNRs to compare the sensitivity of GNRs against tissue autofluorescence. Finally, in vivo imaging was performed immediately following GNR injection to establish the ability to image microvasculature at low incident powers.rnThe pilot study demonstrated uptake of GNRs by cells and in tissues yielding bright fluorescence signals using significantly lower incident powers than those needed to excite tissue autofluorescence. The in vivo imaging aspect of the study demonstrated the localization of GNRs within the microvasculature of the oral cancer model. These preliminary studies demonstrated the ability of GNRs to function as photostable, high contrast imaging agents and suggest that GNRs and multi-photon imaging have great potential for applications in the field of molecular imaging and early detection of cancer.
机译:金纳米棒(GNRs)与双光子显微镜相结合,探索了在口腔癌发生成像中的潜在应用。已经显示,GNR是用于两个光子发光的有效造影剂,因为与传统的荧光团相比,成像所需的激发激光功率低。对细胞,离体组织和经GNR标记的体内口腔粘膜进行了成像,以评估这些药物在上皮癌变分子成像中的潜在优势。在口服仓鼠模型中注射GNR 24小时后,确定了细胞以及正常和恶性转化病变从GNR引发双光子发光信号所需的功率。在有和没有GNR的组织中测量检测到的发射强度作为平均入射激光功率的函数,以比较GNR对组织自发荧光的敏感性。最后,在GNR注射后立即进行体内成像,以建立在低入射功率下对微血管成像的能力.rnn初步研究表明,细胞和组织对GNR的吸收产生的荧光信号使用的入射功率明显低于激发组织所需的入射功率,从而产生明亮的荧光信号。自发荧光。该研究的体内成像方面证明了GNRs在口腔癌模型的微脉管系统中的定位。这些初步研究证明了GNRs可以用作光稳定的高对比度成像剂,并表明GNRs和多光子成像在分子成像和癌症的早期检测领域具有巨大的应用潜力。

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