Drug Displacement Strategy for Treatment of Acute Liver Injury with Cyclodextrin-Liposome Nanoassembly
Summary: Biofunctional supramolecular assemblies that combine macrocyclic receptors and amphiphiles are potent drug delivery systems, but optimization and implementation challenges remain. We herein describe a cooperative drug displacement strategy exemplified by the use of cyclodextrin-liposome sup...
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doaj-57a6bf54bee04da09d0819113e85285a2020-11-24T21:43:47ZengElsevieriScience2589-00422019-05-0115223233Drug Displacement Strategy for Treatment of Acute Liver Injury with Cyclodextrin-Liposome NanoassemblyYing-Ming Zhang0Xun Xu1Qilin Yu2Hua-Jiang Yu3Yu Liu4College of Chemistry, State Key Laboratory of Elemento-Organic Chemistry, Nankai University, Tianjin 300071, ChinaCollege of Chemistry, State Key Laboratory of Elemento-Organic Chemistry, Nankai University, Tianjin 300071, ChinaCollege of Chemistry, State Key Laboratory of Elemento-Organic Chemistry, Nankai University, Tianjin 300071, ChinaCollege of Chemistry, State Key Laboratory of Elemento-Organic Chemistry, Nankai University, Tianjin 300071, ChinaCollege of Chemistry, State Key Laboratory of Elemento-Organic Chemistry, Nankai University, Tianjin 300071, China; Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Tianjin 300072, China; Corresponding authorSummary: Biofunctional supramolecular assemblies that combine macrocyclic receptors and amphiphiles are potent drug delivery systems, but optimization and implementation challenges remain. We herein describe a cooperative drug displacement strategy exemplified by the use of cyclodextrin-liposome supramolecular nanoassemblies as a therapy for acute liver injury. The hepatoprotective drug silibinin was solubilized in phosphotyramine-modified β-cyclodextrin, and subsequent encapsulation of the silibinin-cyclodextrin complex in phosphatidylcholine liposomes gave uniformly sized and stable nanoassemblies that accumulated preferentially in the liver of mice. Enzymatic cleavage of the phosphate ester of the β-cyclodextrin resulted in rapid release of the encapsulated silibinin. Significantly, silibinin could be readily displaced by cytotoxic bile acids, thus leading to the removal of excess bile acids from the bodies of mice and the recovery of liver function. Our results demonstrate that cyclodextrin-based nanoassemblies with a dual role of solubilizing a drug and removing toxins constitute a promising therapy for hepatic injury. : Biological Sciences; Chemistry; Drug Delivery System; Medicine; Nanocomplex; Nanotechnology Subject Areas: Biological Sciences, Chemistry, Drug Delivery System, Medicine, Nanocomplex, Nanotechnologyhttp://www.sciencedirect.com/science/article/pii/S2589004219301269 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ying-Ming Zhang Xun Xu Qilin Yu Hua-Jiang Yu Yu Liu |
spellingShingle |
Ying-Ming Zhang Xun Xu Qilin Yu Hua-Jiang Yu Yu Liu Drug Displacement Strategy for Treatment of Acute Liver Injury with Cyclodextrin-Liposome Nanoassembly iScience |
author_facet |
Ying-Ming Zhang Xun Xu Qilin Yu Hua-Jiang Yu Yu Liu |
author_sort |
Ying-Ming Zhang |
title |
Drug Displacement Strategy for Treatment of Acute Liver Injury with Cyclodextrin-Liposome Nanoassembly |
title_short |
Drug Displacement Strategy for Treatment of Acute Liver Injury with Cyclodextrin-Liposome Nanoassembly |
title_full |
Drug Displacement Strategy for Treatment of Acute Liver Injury with Cyclodextrin-Liposome Nanoassembly |
title_fullStr |
Drug Displacement Strategy for Treatment of Acute Liver Injury with Cyclodextrin-Liposome Nanoassembly |
title_full_unstemmed |
Drug Displacement Strategy for Treatment of Acute Liver Injury with Cyclodextrin-Liposome Nanoassembly |
title_sort |
drug displacement strategy for treatment of acute liver injury with cyclodextrin-liposome nanoassembly |
publisher |
Elsevier |
series |
iScience |
issn |
2589-0042 |
publishDate |
2019-05-01 |
description |
Summary: Biofunctional supramolecular assemblies that combine macrocyclic receptors and amphiphiles are potent drug delivery systems, but optimization and implementation challenges remain. We herein describe a cooperative drug displacement strategy exemplified by the use of cyclodextrin-liposome supramolecular nanoassemblies as a therapy for acute liver injury. The hepatoprotective drug silibinin was solubilized in phosphotyramine-modified β-cyclodextrin, and subsequent encapsulation of the silibinin-cyclodextrin complex in phosphatidylcholine liposomes gave uniformly sized and stable nanoassemblies that accumulated preferentially in the liver of mice. Enzymatic cleavage of the phosphate ester of the β-cyclodextrin resulted in rapid release of the encapsulated silibinin. Significantly, silibinin could be readily displaced by cytotoxic bile acids, thus leading to the removal of excess bile acids from the bodies of mice and the recovery of liver function. Our results demonstrate that cyclodextrin-based nanoassemblies with a dual role of solubilizing a drug and removing toxins constitute a promising therapy for hepatic injury. : Biological Sciences; Chemistry; Drug Delivery System; Medicine; Nanocomplex; Nanotechnology Subject Areas: Biological Sciences, Chemistry, Drug Delivery System, Medicine, Nanocomplex, Nanotechnology |
url |
http://www.sciencedirect.com/science/article/pii/S2589004219301269 |
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