Cancer Cell Discrimination Using Host–Guest “Doubled” Arrays

We report a nanosensor that uses cell lysates to rapidly profile the tumorigenicity of cancer cells. This sensing platform uses host–guest interactions between cucurbit[7]­uril and the cationic headgroup of a gold nanoparticle to non-covalently modify the binding of three fluorescent proteins of a m...

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Veröffentlicht in:Journal of the American Chemical Society 2017-06, Vol.139 (23), p.8008-8012
Hauptverfasser: Le, Ngoc D. B, Yesilbag Tonga, Gulen, Mout, Rubul, Kim, Sung-Tae, Wille, Marcos E, Rana, Subinoy, Dunphy, Karen A, Jerry, D. Joseph, Yazdani, Mahdieh, Ramanathan, Rajesh, Rotello, Caren M, Rotello, Vincent M
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Sprache:eng
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Zusammenfassung:We report a nanosensor that uses cell lysates to rapidly profile the tumorigenicity of cancer cells. This sensing platform uses host–guest interactions between cucurbit[7]­uril and the cationic headgroup of a gold nanoparticle to non-covalently modify the binding of three fluorescent proteins of a multi-channel sensor in situ. This approach doubles the number of output channels to six, providing single-well identification of cell lysates with 100% accuracy. Significantly, this classification could be extended beyond the training set, determining the invasiveness of novel cell lines. The unique fingerprint of these cell lysates required minimal sample quantity (200 ng, ∼1000 cells), making the methodology compatible with microbiopsy technology.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.7b03657