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Ratiometric theranostic nanoprobe for pH imaging-guided photodynamic therapy

机译:比率计theranostic nanoprobe pH值成像制导光动力治疗

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An abnormal pH microenvironment results from the development of tumors, and also affects the therapeutic efficiency of anti-tumor drugs. In this work, a Forster resonance energy transfer (FRET)-based theranostic fluorescent nanoprobe was constructed for simultaneous ratiometric pH sensing and tumor-targeted photodynamic therapy. Based on the FRET process between rhodamine B and protoporphyrin IX (PpIX), the fabricated nanoprobe exhibited excellent pH responsiveness in both solutions and live cells with the ratiometric fluorescence changes. Moreover, this ratiometric pH fluorescent nanoprobe also possessed the capability for pH-responsive singlet oxygen (O-1(2)) generation under light irradiation, guiding robust photodynamic therapy in a pH-dependent manner. Benefiting from the enhanced permeability and retention (EPR) effect, the nanoprobe could significantly inhibit tumor growth and metastasis via targeted photodynamic therapy in vivo. This work presents a novel paradigm for precise tumor theranostics by ratiometric pH fluorescence imaging-guided photodynamic therapy.
机译:pH值异常微环境的结果肿瘤的发展,也影响了抗肿瘤药物的治疗效率。这工作,福斯特共振能量转移(烦恼)的theranostic荧光nanoprobe构建了同时比率计pH值吗传感和tumor-targeted光动力治疗。基于罗丹明B和之间的烦恼的过程原卟啉IX (PpIX)捏造nanoprobe展出优秀的pH值响应在这两种解决方案和活细胞比率荧光变化。比率荧光nanoprobe pH值拥有pH-responsive的能力单线态氧(1)(2)代下光辐照、指导健壮的光动力治疗pH-dependent的方式。增强渗透性和保留(EPR)效应,nanoprobe可以显著抑制肿瘤通过有针对性的光动力生长和转移治疗体内。范式为精确的肿瘤开展pH值比率荧光成像制导光动力治疗。

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