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氧化锰纳米颗粒作为一种可激活的微波诱导热声探针用于深部肿瘤特异性成像。

Manganous-manganic oxide nanoparticle as an activatable microwave-induced thermoacoustic probe for deep-located tumor specific imaging .

作者信息

Zhang Shanxiang, Li Wenjing, Chen Xiaoyu, Ren Mingyang, Zhang Huimin, Xing Da, Qin Huan

机构信息

MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou 510631, China.

Guangdong Provincial Key Laboratory of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou 510631, China.

出版信息

Photoacoustics. 2022 Mar 22;26:100347. doi: 10.1016/j.pacs.2022.100347. eCollection 2022 Jun.

Abstract

Deep-located tumor specific imaging has broad clinical applications in improving the accuracy of tumor diagnosis. Microwave-induced thermoacoustic imaging (MTAI), combining the high-contrast of microwave imaging with the high-resolution of ultrasound imaging, is a potential candidate for noninvasive tumor detection. Herein, a deep-located tumor specific MTAI method by tumor microenvironment (TME) activated nanoprobe is reported. In principle, manganous-manganic oxide-based nanoprobe can be triggered by TME with overexpressed glutathione and weak acidity, causing to release manganese ions and increase conductivity. With pulsed microwaves, manganese ions move repeatedly in gigahertz alternating electric field, resulting in a transient heating and thermoelastic expansion through the Joule effect, which yields a strong thermoacoustic (TA) wave in tumor site. and experiments demonstrate that manganous-manganic oxide-based nanoprobe could high-selectively amplify the TA signal in deep-located tumor. Our proposed tumor-specific MTAI method based on TME activation provides a potential approach for deep-located tumor detection.

摘要

深部肿瘤特异性成像在提高肿瘤诊断准确性方面具有广泛的临床应用。微波诱导热声成像(MTAI)将微波成像的高对比度与超声成像的高分辨率相结合,是一种用于无创肿瘤检测的潜在方法。在此,报道了一种通过肿瘤微环境(TME)激活纳米探针的深部肿瘤特异性MTAI方法。原则上,基于氧化锰锰的纳米探针可以被TME触发,TME具有过表达的谷胱甘肽和弱酸性,导致释放锰离子并增加电导率。在脉冲微波作用下,锰离子在千兆赫交变电场中反复移动,通过焦耳效应产生瞬态加热和热弹性膨胀,从而在肿瘤部位产生强烈的热声(TA)波。实验表明,基于氧化锰锰的纳米探针可以在深部肿瘤中高选择性地放大TA信号。我们提出的基于TME激活的肿瘤特异性MTAI方法为深部肿瘤检测提供了一种潜在的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12a6/8956819/8534381f6f90/gr1.jpg

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