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首页> 外文期刊>Nanoscale >MET-targeted NIR II luminescence diagnosis and up-conversion guided photodynamic therapy for triple-negative breast cancer based on a lanthanide nanoprobe
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MET-targeted NIR II luminescence diagnosis and up-conversion guided photodynamic therapy for triple-negative breast cancer based on a lanthanide nanoprobe

机译:MET-targeted NIR II发光诊断和上变频引导光动力治疗三阴性乳腺癌的基础上镧系元素nanoprobe

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In this research, degradable peptide-modified upconversion nanoparticles (ZUPEA) were designed for the NIR II imaging and upconversion luminescence (UCL) guided photodynamic therapy (PDT) of triple-negative breast cancer (TNBC). Ultra-small rare-earth nanoparticles (RENPs) and the polymer mPEG-PLGA are polymerized into nano-microspheres via a double emulsion synthesis method, and a photosensitizer molecule (ZnPc) is added during the polymerization process to generate ZUPEA. Under 980 nm excitation, this strategy enhanced the red emission at 650 nm, showing an energy transfer efficiency of 38.3%, and the designed RENPs have better NIR II imaging abilities with a core@shell structure. These ZUPEA nanoparticles have good photodynamic therapeutic effects in vitro, and they can be degraded into small nanoparticles with a size of less than 6 nm. The cMBP-peptide-modified luminescent probe can recognize MDA-MB-231 TNBC cells in vivo when intravenously injected due to the positive targeted imaging effects of the cMBP peptide toward MET and negative targeted imaging effects relating to enhanced permeability and retention (EPR ). This specially designed ZUPEA probe with integrated diagnosis and treatment functionality provides new ideas and prospects for the use of rare-earth nanoparticles in the clinical treatment of tumors.
机译:在这个研究中,降解peptide-modified上转换纳米粒子(ZUPEA)设计对近红外光谱成像和上转换发光(UCL)引导光动力治疗(PDT)三阴乳腺癌(TNBC)。稀土纳米粒子(RENPs)和超小聚合物mPEG-PLGA聚合成nano-microspheres通过双乳液合成方法,光敏剂分子(ZnPc)在聚合过程中添加生成ZUPEA。策略增强红色发射在650海里,显示38.3%的能量传递效率,和二设计RENPs有更好的近红外光谱成像core@shell结构的能力。ZUPEA纳米颗粒具有良好的光动力治疗效果在体外,它们可以退化成小尺寸的纳米粒子不到6海里。发光探针mda - mb - 231 TNBC可以识别当静脉注射由于细胞体内cMBP的积极目标成像的影响肽对认识和消极目标成像增强的渗透和影响保留(EPR)。调查与综合诊断和治疗功能提供了新的思路和前景稀土纳米粒子的使用肿瘤的临床治疗。

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