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Switchable Photoacoustic Imaging of Glutathione Using MnO2 Nanotubes for Cancer Diagnosis

机译:使用MnO2纳米管癌症诊断的谷胱甘肽可切换光声成像

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摘要

Glutathione is overexpressed in tumor cells and regulates cancer growth, metastasis, and drug resistance. Therefore, detecting glutathione levels may greatly facilitate cancer diagnosis and treatment response monitoring. Photo acoustic (PA) imaging is a noninvasive modality for high sensitivity, high-resolution, deep-tissue optical imaging. Switchable PA probes that offer signal on/off responses to tumor targets would further improve the detection sensitivity and signal-to-noise ratio of PA imaging. Here, we explore the use of MnO2 nanotubes as a switchable and biodegradable PA probe for dynamic imaging of glutathione in cancer. Glutathione reduces black MnO2 nanotubes into colorless Mn2+ ions, leading to decreased and signal off PA amplitude. In phantoms, we observed a linear response of reduced PA signals of MnO2 nanotubes to increased glutathione concentrations. Using melanoma as the disease model, we demonstrated that MnO2 nanotube-based PA imaging of glutathione successfully distinguished B16F10 melanoma cells from BEAS-2B normal cells and discriminated B16F10 tumors from healthy skin tissues. Our results showed that MnO2 nanotubes are a potent switchable and biodegradable PA probe for glutathione imaging in cancer diagnosis.
机译:谷胱甘肽在肿瘤细胞中过表达,并调节癌症生长,转移和耐药性。因此,检测谷胱甘肽水平可能极大地促进癌症诊断和治疗反应监测。照片声学(PA)成像是具有高灵敏度,高分辨率,深组织光学成像的非侵入式模式。可切换的PA探针向肿瘤目标提供信号开/关应答将进一步提高PA成像的检测灵敏度和信噪比。在这里,我们探讨MnO2纳米管作为可切换和可生物降解的PA探针,用于癌症谷胱甘肽的动态成像。谷胱甘肽将黑色mnO2纳米管还原成无色Mn2 +离子,导致降低和信号关闭PA幅度。在幽灵中,我们观察到MNO2纳米管的减少PA信号的线性响应,以增加谷胱甘肽浓度。使用黑色素瘤作为疾病模型,我们证明了基于MNO2纳米管的PA成像谷胱甘肽成功地区分了来自BEA-2B正常细胞的B16F10黑素瘤细胞,并从健康皮肤组织中区分B16F10肿瘤。我们的研究结果表明,MnO2纳米管是一种有效的可切换和可生物降解的PA探针,用于癌症诊断中的谷胱甘肽成像。

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