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This document sharing introduces the research work of the research group of Professor Zhang Han of Shenzhen University. This work explored the possibility of capturing circulating tumor cells in vivo and using the photothermal effect to kill the captured cells in situ by modifying tumor-specific antibodies and black scale nanosheets in medical catheters.
01
Background introduction
● The existing CTCs capture methods mainly include ISET, Celsee, OncoQuick, which rely on physical properties, and CellSearch, CTC-iChip, Adnatest, NanoVelcro, etc., which use immunoaffinity, and only collect 5-10mL blood samples that account for 0.1-0.2% of whole blood. Performing analysis can easily cause false negatives.
● The device for collecting/capturing CTCs in the body can come into contact with CTCs in the blood circulation of the whole body, which can increase the probability of capture and provide the opportunity to kill CTCs in situ.
● Photodynamic therapy (PDT) including three elements of light, oxygen, and photosensitizer can be used to kill CTCs. Among them, black scale nanosheets (BPNSs) have high extinction coefficient, high photothermal conversion efficiency, and high load capacity (950%). Facilitate surface functionalization, biometabolism, biocompatibility and other properties have the greatest potential for clinical transformation.
02
Graphic analysis
①
Preparation and characterization of CTCs capture element: The outer surface of the intravenous catheter is modified with anti-EpCAM antibody, and the interior is filled with BPNS to achieve the enrichment of CTCs on the surface of the catheter. Later, the captured CTCs can be recovered for downstream analysis or the photothermal effect of BPNS can be used to kill in situ.
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