Pharmacophore hybridisation and nanoscale assembly to discover self-delivering lysosomotropic new-chemical entities for cancer therapy
Integration of the unique advantages of the fields of drug discovery and drug delivery is invaluable for the advancement of drug development. Here, the authors generate single-drug nanoparticles by hybridising lysomotropic detergents and the bisaminoquinoline-based autophagy inhibitor, and show thei...
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Nature Portfolio
2020
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oai:doaj.org-article:c1bb3fa64a58463a9a7b7509b2e89b612021-12-02T18:50:53ZPharmacophore hybridisation and nanoscale assembly to discover self-delivering lysosomotropic new-chemical entities for cancer therapy10.1038/s41467-020-18399-42041-1723https://doaj.org/article/c1bb3fa64a58463a9a7b7509b2e89b612020-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18399-4https://doaj.org/toc/2041-1723Integration of the unique advantages of the fields of drug discovery and drug delivery is invaluable for the advancement of drug development. Here, the authors generate single-drug nanoparticles by hybridising lysomotropic detergents and the bisaminoquinoline-based autophagy inhibitor, and show their therapeutic potential as autophagy-inhibition based combination therapy.Zhao MaJin LiKai LinMythili RamachandranDalin ZhangMegan ShowalterCristabelle De SouzaAaron LindstromLucas N. SolanoBei JiaShiro UrayamaYuyou DuanOliver FiehnTzu-yin LinMinyong LiYuanpei LiNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020) |
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Science Q |
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Science Q Zhao Ma Jin Li Kai Lin Mythili Ramachandran Dalin Zhang Megan Showalter Cristabelle De Souza Aaron Lindstrom Lucas N. Solano Bei Jia Shiro Urayama Yuyou Duan Oliver Fiehn Tzu-yin Lin Minyong Li Yuanpei Li Pharmacophore hybridisation and nanoscale assembly to discover self-delivering lysosomotropic new-chemical entities for cancer therapy |
description |
Integration of the unique advantages of the fields of drug discovery and drug delivery is invaluable for the advancement of drug development. Here, the authors generate single-drug nanoparticles by hybridising lysomotropic detergents and the bisaminoquinoline-based autophagy inhibitor, and show their therapeutic potential as autophagy-inhibition based combination therapy. |
format |
article |
author |
Zhao Ma Jin Li Kai Lin Mythili Ramachandran Dalin Zhang Megan Showalter Cristabelle De Souza Aaron Lindstrom Lucas N. Solano Bei Jia Shiro Urayama Yuyou Duan Oliver Fiehn Tzu-yin Lin Minyong Li Yuanpei Li |
author_facet |
Zhao Ma Jin Li Kai Lin Mythili Ramachandran Dalin Zhang Megan Showalter Cristabelle De Souza Aaron Lindstrom Lucas N. Solano Bei Jia Shiro Urayama Yuyou Duan Oliver Fiehn Tzu-yin Lin Minyong Li Yuanpei Li |
author_sort |
Zhao Ma |
title |
Pharmacophore hybridisation and nanoscale assembly to discover self-delivering lysosomotropic new-chemical entities for cancer therapy |
title_short |
Pharmacophore hybridisation and nanoscale assembly to discover self-delivering lysosomotropic new-chemical entities for cancer therapy |
title_full |
Pharmacophore hybridisation and nanoscale assembly to discover self-delivering lysosomotropic new-chemical entities for cancer therapy |
title_fullStr |
Pharmacophore hybridisation and nanoscale assembly to discover self-delivering lysosomotropic new-chemical entities for cancer therapy |
title_full_unstemmed |
Pharmacophore hybridisation and nanoscale assembly to discover self-delivering lysosomotropic new-chemical entities for cancer therapy |
title_sort |
pharmacophore hybridisation and nanoscale assembly to discover self-delivering lysosomotropic new-chemical entities for cancer therapy |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/c1bb3fa64a58463a9a7b7509b2e89b61 |
work_keys_str_mv |
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1718377530352730112 |