Thermo-responsive imprinted hydrogel with switchable sialic acid recognition for selective cancer cell isolation from blood

In this work, a sialic acid (SA)-imprinted thermo-responsive hydrogel layer was prepared for selective capture and release of cancer cells. The SA-imprinting process was performed at 37 °C using thermo-responsive functional monomer, thus generating switchable SA-recognition sites with potent SA bind...

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Veröffentlicht in:Bioactive materials 2021-05, Vol.6 (5), p.1308-1317
Hauptverfasser: Ma, Yue, Yin, Yimei, Ni, Li, Miao, Haohan, Wang, Yingjia, Pan, Cheng, Tian, Xiaohua, Pan, Jianming, You, Tianyan, Li, Bin, Pan, Guoqing
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Sprache:eng
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Zusammenfassung:In this work, a sialic acid (SA)-imprinted thermo-responsive hydrogel layer was prepared for selective capture and release of cancer cells. The SA-imprinting process was performed at 37 °C using thermo-responsive functional monomer, thus generating switchable SA-recognition sites with potent SA binding at 37 °C and weak binding at a lower temperature (e.g., 25 °C). Since SA is often overexpressed at the glycan terminals of cell membrane proteins or lipids, the SA-imprinted hydrogel layer could be used for selective cancer cell recognition. Our results confirmed that the hydrogel layer could efficiently capture cancer cells from not only the culture medium but also the real blood samples. In addition, the captured cells could be non-invasively released by lowing the temperature. Considering the non-invasive processing mode, considerable capture efficiency, good cell selectivity, as well as the more stable and durable SA-imprinted sites compared to natural antibodies or receptors, this thermo-responsive hydrogel layer could be used as a promising and general platform for cell-based cancer diagnosis. [Display omitted] •Thermo-responsive sialic acid (SA)-imprinted hydrogel layer was prepared.•The hydrogel layer could efficiently and selective capture cancer cells at 37 °C.•The captured cancer cells could be released at a lower temperature (e.g., 25 °C).•The hydrogel layer could be used for capture and release cancer cells from blood.
ISSN:2452-199X
2452-199X
DOI:10.1016/j.bioactmat.2020.10.008