靶向纳米棒多重光声成像在癌症分子诊断中的应用

Carolyn L. Bayer, Yun-Sheng Chen, Seungsoo Kim, S. Mallidi, K. Sokolov, S. Emelianov
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引用次数: 4

摘要

由于肿瘤本身的异质性和患者之间治疗反应的差异,癌性肿瘤的诊断和治疗仍然是一个挑战。一种分子成像技术可以提供几厘米深度的高分辨率,可以提供关于异质癌组织组成的重要信息,以帮助癌症的诊断和治疗监测。光声成像可以在临床相关的组织深度上实现高分辨率,结合靶向造影剂,其特性可以调整以获得不同的光声信号,提供了一种与现有分子成像方法相比无创,非电离和成本具有竞争力的分子成像技术。本文介绍的研究描述了利用可调谐金纳米棒结合光声和超声成像,这些纳米棒针对独特的细胞类型或分子过程,然后通过在跨越纳米颗粒光学吸收光谱的激光波长下获取光声图像来区分。使用由各种癌细胞组成的组织模型获得的结果,过表达不同的受体,表明光声成像能够识别组织内的多种分子靶点或细胞类型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular diagnosis of cancer using multiplex photoacoustic imaging with targeted nanorods
The diagnosis and treatment of cancerous tumors remains a challenge due to the inherent heterogeneity of the tumors and variation in treatment response between patients. A molecular imaging technique which provides high resolution at a depth of several centimeters could provide important information about the composition of heterogeneous cancerous tissues to aid in the diagnosis and monitoring of the treatment of cancer. Photoacoustic imaging, which can achieve high resolution at a clinically relevant tissue depth, combined with targeted contrast agents whose properties can be tuned to achieve distinct photoacoustic signals, provides a molecular imaging technique which is non-invasive, non-ionizing, and cost-competitive in comparison to existing molecular imaging methods. The research presented here describes combined photoacoustic and ultrasound imaging using tunable gold nanorods which have been targeted to unique cell types or molecular processes, and then distinguished by acquiring photoacoustic images at laser wavelengths spanning the optical absorption spectra of the nanoparticles. The results obtained using tissue models consisting of various cancer cells, overexpressing different receptors, indicate that photoacoustic imaging is capable of identifying multiple molecular targets or cell types within a tissue.
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