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A ‘Sleeping Trojan Horse’ which transports metal ions into cells, localises in nucleoli, and has potential for bimodal fluorescence/PET imaging

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A ‘Sleeping Trojan Horse’ which transports metal ions into cells, localises in nucleoli, and has potential for bimodal fluorescence/PET imaging. / Thorp-Greenwood, Flora L. ; Fernandez-Moreira, Vanesa ; Millet, Coralie et al.
In: Chemical Communications, Vol. 47, No. 11, 2011, p. 3096-3098.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Thorp-Greenwood, FL, Fernandez-Moreira, V, Millet, C, Williams, CF, Cable, J, Court, JB, Hayes, AJ, Lloyd, D & Coogan, M 2011, 'A ‘Sleeping Trojan Horse’ which transports metal ions into cells, localises in nucleoli, and has potential for bimodal fluorescence/PET imaging', Chemical Communications, vol. 47, no. 11, pp. 3096-3098. https://doi.org/10.1039/C1CC10141B

APA

Thorp-Greenwood, F. L., Fernandez-Moreira, V., Millet, C., Williams, C. F., Cable, J., Court, J. B., Hayes, A. J., Lloyd, D., & Coogan, M. (2011). A ‘Sleeping Trojan Horse’ which transports metal ions into cells, localises in nucleoli, and has potential for bimodal fluorescence/PET imaging. Chemical Communications, 47(11), 3096-3098. https://doi.org/10.1039/C1CC10141B

Vancouver

Thorp-Greenwood FL, Fernandez-Moreira V, Millet C, Williams CF, Cable J, Court JB et al. A ‘Sleeping Trojan Horse’ which transports metal ions into cells, localises in nucleoli, and has potential for bimodal fluorescence/PET imaging. Chemical Communications. 2011;47(11):3096-3098. doi: 10.1039/C1CC10141B

Author

Thorp-Greenwood, Flora L. ; Fernandez-Moreira, Vanesa ; Millet, Coralie et al. / A ‘Sleeping Trojan Horse’ which transports metal ions into cells, localises in nucleoli, and has potential for bimodal fluorescence/PET imaging. In: Chemical Communications. 2011 ; Vol. 47, No. 11. pp. 3096-3098.

Bibtex

@article{3953af0e93284c4d91bd2a312705cdfe,
title = "A {\textquoteleft}Sleeping Trojan Horse{\textquoteright} which transports metal ions into cells, localises in nucleoli, and has potential for bimodal fluorescence/PET imaging",
abstract = "A rhenium polypyridine-based molecular vessel is membrane impermeant when empty, but, upon loading with metal ions, the cationic form is taken up by MCF-7 cells, localising in nucleoli. The luminescence of the vessel and its copper binding ability suggest potential as a bimodal fluorescence/PET imaging agent.",
author = "Thorp-Greenwood, {Flora L.} and Vanesa Fernandez-Moreira and Coralie Millet and Williams, {Catrin F.} and Joanne Cable and Court, {Jonathan B.} and Hayes, {Anthony J.} and David Lloyd and Michael Coogan",
year = "2011",
doi = "10.1039/C1CC10141B",
language = "English",
volume = "47",
pages = "3096--3098",
journal = "Chemical Communications",
issn = "1359-7345",
publisher = "Royal Society of Chemistry",
number = "11",

}

RIS

TY - JOUR

T1 - A ‘Sleeping Trojan Horse’ which transports metal ions into cells, localises in nucleoli, and has potential for bimodal fluorescence/PET imaging

AU - Thorp-Greenwood, Flora L.

AU - Fernandez-Moreira, Vanesa

AU - Millet, Coralie

AU - Williams, Catrin F.

AU - Cable, Joanne

AU - Court, Jonathan B.

AU - Hayes, Anthony J.

AU - Lloyd, David

AU - Coogan, Michael

PY - 2011

Y1 - 2011

N2 - A rhenium polypyridine-based molecular vessel is membrane impermeant when empty, but, upon loading with metal ions, the cationic form is taken up by MCF-7 cells, localising in nucleoli. The luminescence of the vessel and its copper binding ability suggest potential as a bimodal fluorescence/PET imaging agent.

AB - A rhenium polypyridine-based molecular vessel is membrane impermeant when empty, but, upon loading with metal ions, the cationic form is taken up by MCF-7 cells, localising in nucleoli. The luminescence of the vessel and its copper binding ability suggest potential as a bimodal fluorescence/PET imaging agent.

UR - http://www.scopus.com/inward/record.url?scp=79952825723&partnerID=8YFLogxK

U2 - 10.1039/C1CC10141B

DO - 10.1039/C1CC10141B

M3 - Journal article

AN - SCOPUS:79952825723

VL - 47

SP - 3096

EP - 3098

JO - Chemical Communications

JF - Chemical Communications

SN - 1359-7345

IS - 11

ER -