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In Vivo Enrichment and Elimination of Circulating Tumor Cells by Using a Black Phosphorus and Antibody Functionalized Intravenous Catheter

机译:通过使用黑色磷和抗体官能化静脉内导管在体内富集和消除循环肿瘤细胞

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摘要

The circulating tumor cell (CTC) count is closely related to cancer recurrence and metastasis. The technology that can in vivo destroy CTCs may bring great benefits to patients, which is an urgent clinical demand. Here, a minimally invasive therapeutic intravenous catheter for in vivo enriching and photothermal killing of CTCs is developed. The surface of catheter is modified with anti‐EpCAM antibody and the interior is filled with black phosphorus nanosheets (BPNSs). CTCs in the peripheral blood are captured by the catheter continually with the aid of circulation. The captured CTCs are used for downstream analyses or in vivo eliminated by the near‐infrared (NIR) photothermal effect of BPNSs. A capture efficiency of 2.1% is obtained during the 5 min of treatment, and 100% of the captured CTCs are killed by following NIR light irradiation in both an in vitro closed‐loop circulation system and an in vivo rabbit model. This cost‐effective modality for lowering the CTCs burden can be a good supplement to traditional therapies, which holds great promise as an effective clinical intervention for cancer patients.
机译:循环肿瘤细胞(CTC)计数与癌症复发和转移密切相关。体内破坏CTC的技术可能对患者带来很大的益处,这是一种紧急的临床需求。这里,开发了用于CTC的体内富集和光热杀伤的微创治疗静脉内导管。用抗EPCAM抗体改性导管表面,内部填充有黑色磷纳米片(BPNS)。借助循环,导管由导管捕获外周血中的CTC。被捕获的CTC用于下游分析或通过BPNS的近红外(NIR)光热效应消除的下游分析。在治疗的5分钟内获得2.1%的捕获效率,并且在体外闭环循环系统和体内兔模型中,通过在体外闭环循环系统和中的NIR光照射后杀死100%的捕获CTC。降低CTCS负担的这种经济高效的方式可以是传统疗法的良好补充,这对癌症患者的有效临床干预具有良好的希望。

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