双波长光声显微镜同时成像lacz标记肿瘤和体内微血管形态。

IF 2.3 3区 医学 Q2 OPTICS
Li Li, Hao F Zhang, Roger J Zemp, Konstantin Maslov, Lihong Wang
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引用次数: 46

摘要

光声分子成像与报告基因技术相结合,为癌症研究提供了一种有价值的工具。注射X-gal(一种用于检测lacZ编码酶β-半乳糖苷酶的比色法)后,可以使用光声成像技术对lacZ报告基因的表达进行成像。采用双波长光声显微镜对lacz标记的9L胶质瘤及其周围微血管的详细形态进行了无创成像,分辨率约为10 μm。发现肿瘤供血血管,估计肿瘤中lacZ的表达水平。随着新的吸收增强报告基因系统的未来发展,我们预计这一策略可以更好地理解肿瘤代谢在癌症的发生、进展和转移以及对治疗的反应中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simultaneous imaging of a lacZ-marked tumor and microvasculature morphology in vivo by dual-wavelength photoacoustic microscopy.

Photoacoustic molecular imaging, combined with the reporter-gene technique, can provide a valuable tool for cancer research. The expression of the lacZ reporter gene can be imaged using photoacoustic imaging following the injection of X-gal, a colorimetric assay for the lacZ-encoded enzyme β-galactosidase. Dual-wavelength photoacoustic microscopy was used to non-invasively image the detailed morphology of a lacZ-marked 9L gliosarcoma and its surrounding microvasculature simultaneously in vivo, with a superior resolution on the order of 10 μm. Tumor-feeding vessels were found, and the expression level of lacZ in tumor was estimated. With future development of new absorption-enhancing reporter-gene systems, we anticipate this strategy can lead to a better understanding of the role of tumor metabolism in cancer initiation, progression, and metastasis, and in its response to therapy.

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来源期刊
Journal of Innovative Optical Health Sciences
Journal of Innovative Optical Health Sciences OPTICS-RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
CiteScore
4.50
自引率
20.00%
发文量
69
审稿时长
>12 weeks
期刊介绍: JIOHS serves as an international forum for the publication of the latest developments in all areas of photonics in biology and medicine. JIOHS will consider for publication original papers in all disciplines of photonics in biology and medicine, including but not limited to: -Photonic therapeutics and diagnostics- Optical clinical technologies and systems- Tissue optics- Laser-tissue interaction and tissue engineering- Biomedical spectroscopy- Advanced microscopy and imaging- Nanobiophotonics and optical molecular imaging- Multimodal and hybrid biomedical imaging- Micro/nanofabrication- Medical microsystems- Optical coherence tomography- Photodynamic therapy. JIOHS provides a vehicle to help professionals, graduates, engineers, academics and researchers working in the field of intelligent photonics in biology and medicine to disseminate information on the state-of-the-art technique.
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