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Activatable near-infrared emission-guided on-demand administration of photodynamic anticancer therapy with a theranostic nanoprobe

机译:可激活的近红外发射引导的按需给药与治疗性纳米探针的光动力学抗癌治疗。

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摘要

Development of theranostic probes that can be used to identify tumors and direct the on-demand drug administration to cancers is ongoing but remains challenging. Herein, we report a theranostic platform composed of a H2S-activated imaging probe and a light-sensitive drug. The designed probe affords advantages of H2S-activated NIR emission light-up and efficient 1O2 generation, enabling the selective visualization of H2S-rich cancers and the subsequent imaging-directed on-demand light exposure to the detected cancers while leaving normal tissues untouched. Such controllable administration of photodynamic anticancer therapy maximizes the therapeutic efficiency and minimizes side effects. This work should facilitate significant advances toward precise diagnosis and treatment of cancer.
机译:可用于识别肿瘤并将按需药物给药引导至癌症的治疗诊断探针的开发仍在进行中,但仍具有挑战性。在这里,我们报告由H2S激活成像探针和光敏药物组成的治疗学平台。设计的探针具有H2S激活的NIR发射光亮和有效的 1 O2生成的优点,从而能够选择性地可视化富含H2S的癌症,并随后对检测到的图像进行按需按需曝光癌,同时不影响正常组织。光动力抗癌疗法的这种可控施用最大化了治疗效率并且最小化了副作用。这项工作应有助于在精确诊断和治疗癌症方面取得重大进展。

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