Biocompatible nucleus-targeted graphene quantum dots for selective killing of cancer cells via DNA damage

Qi et al. develop nucleus targeting graphene quantum dots (GQDs) by modifying amine-functionalised GQDs with nucleus targeting TAT peptides. The resulting functionalised GQDs exhibit good biocompatibility, nucleus uptake, and cancer cell targeting. They can suppress growth of cancer cells by selecti...

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Autores principales: Lei Qi, Tonghe Pan, Liling Ou, Zhiqiang Ye, Chunlei Yu, Bijun Bao, Zixia Wu, Dayong Cao, Liming Dai
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/b0a7ad99f02648159a7db7a588304692
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spelling oai:doaj.org-article:b0a7ad99f02648159a7db7a5883046922021-12-02T10:54:14ZBiocompatible nucleus-targeted graphene quantum dots for selective killing of cancer cells via DNA damage10.1038/s42003-021-01713-12399-3642https://doaj.org/article/b0a7ad99f02648159a7db7a5883046922021-02-01T00:00:00Zhttps://doi.org/10.1038/s42003-021-01713-1https://doaj.org/toc/2399-3642Qi et al. develop nucleus targeting graphene quantum dots (GQDs) by modifying amine-functionalised GQDs with nucleus targeting TAT peptides. The resulting functionalised GQDs exhibit good biocompatibility, nucleus uptake, and cancer cell targeting. They can suppress growth of cancer cells by selectively inducing DNA damage.Lei QiTonghe PanLiling OuZhiqiang YeChunlei YuBijun BaoZixia WuDayong CaoLiming DaiNature PortfolioarticleBiology (General)QH301-705.5ENCommunications Biology, Vol 4, Iss 1, Pp 1-12 (2021)
institution DOAJ
collection DOAJ
language EN
topic Biology (General)
QH301-705.5
spellingShingle Biology (General)
QH301-705.5
Lei Qi
Tonghe Pan
Liling Ou
Zhiqiang Ye
Chunlei Yu
Bijun Bao
Zixia Wu
Dayong Cao
Liming Dai
Biocompatible nucleus-targeted graphene quantum dots for selective killing of cancer cells via DNA damage
description Qi et al. develop nucleus targeting graphene quantum dots (GQDs) by modifying amine-functionalised GQDs with nucleus targeting TAT peptides. The resulting functionalised GQDs exhibit good biocompatibility, nucleus uptake, and cancer cell targeting. They can suppress growth of cancer cells by selectively inducing DNA damage.
format article
author Lei Qi
Tonghe Pan
Liling Ou
Zhiqiang Ye
Chunlei Yu
Bijun Bao
Zixia Wu
Dayong Cao
Liming Dai
author_facet Lei Qi
Tonghe Pan
Liling Ou
Zhiqiang Ye
Chunlei Yu
Bijun Bao
Zixia Wu
Dayong Cao
Liming Dai
author_sort Lei Qi
title Biocompatible nucleus-targeted graphene quantum dots for selective killing of cancer cells via DNA damage
title_short Biocompatible nucleus-targeted graphene quantum dots for selective killing of cancer cells via DNA damage
title_full Biocompatible nucleus-targeted graphene quantum dots for selective killing of cancer cells via DNA damage
title_fullStr Biocompatible nucleus-targeted graphene quantum dots for selective killing of cancer cells via DNA damage
title_full_unstemmed Biocompatible nucleus-targeted graphene quantum dots for selective killing of cancer cells via DNA damage
title_sort biocompatible nucleus-targeted graphene quantum dots for selective killing of cancer cells via dna damage
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/b0a7ad99f02648159a7db7a588304692
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AT tonghepan biocompatiblenucleustargetedgraphenequantumdotsforselectivekillingofcancercellsviadnadamage
AT lilingou biocompatiblenucleustargetedgraphenequantumdotsforselectivekillingofcancercellsviadnadamage
AT zhiqiangye biocompatiblenucleustargetedgraphenequantumdotsforselectivekillingofcancercellsviadnadamage
AT chunleiyu biocompatiblenucleustargetedgraphenequantumdotsforselectivekillingofcancercellsviadnadamage
AT bijunbao biocompatiblenucleustargetedgraphenequantumdotsforselectivekillingofcancercellsviadnadamage
AT zixiawu biocompatiblenucleustargetedgraphenequantumdotsforselectivekillingofcancercellsviadnadamage
AT dayongcao biocompatiblenucleustargetedgraphenequantumdotsforselectivekillingofcancercellsviadnadamage
AT limingdai biocompatiblenucleustargetedgraphenequantumdotsforselectivekillingofcancercellsviadnadamage
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