Cargando…

A Water-Soluble Polyacid Polymer Based on Hydrophilic Metal–Organic Frameworks Using Amphoteric Carboxylic Acid Ligands as Linkers for Hydroxycamptothecin Loading and Release In Vitro

The poor water solubility and severe side effects of hydroxycamptothecin (HCPT) limit its clinical application; therefore, it is necessary to synthesize applicable nanodrug carriers with good solubility to expand the applications of HCPT. In this study, a hydrophilic metal–organic framework (MOF) wi...

Descripción completa

Detalles Bibliográficos
Autores principales: Shi, Yuqiong, Liu, Wei, Wu, Xiangrong, Zhu, Jinhua, Zhou, Danyang, Liu, Xiuhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8618358/
https://www.ncbi.nlm.nih.gov/pubmed/34835619
http://dx.doi.org/10.3390/nano11112854
_version_ 1784604728242470912
author Shi, Yuqiong
Liu, Wei
Wu, Xiangrong
Zhu, Jinhua
Zhou, Danyang
Liu, Xiuhua
author_facet Shi, Yuqiong
Liu, Wei
Wu, Xiangrong
Zhu, Jinhua
Zhou, Danyang
Liu, Xiuhua
author_sort Shi, Yuqiong
collection PubMed
description The poor water solubility and severe side effects of hydroxycamptothecin (HCPT) limit its clinical application; therefore, it is necessary to synthesize applicable nanodrug carriers with good solubility to expand the applications of HCPT. In this study, a hydrophilic metal–organic framework (MOF) with amphoteric carboxylic acid ligands as linkers was first synthesized and characterized. Then, water-soluble acrylamide and methacrylic acid were applied as monomers to prepare a water-soluble polyacid polymer MOF@P, which had a solubility of 370 μg/mL. The effects of the MOF@P material on the HCPT loading and solubility were investigated. The results showed that the polymer material could improve the HCPT solubility in water. Moreover, the in vitro release study indicated that the MOF@P polymeric composite exhibited a sustained-release effect on HCPT, with a cumulative release rate of 30.18% in 72 h at pH 7.4. Furthermore, the cytotoxicity test demonstrated that the hydrophilic MOF and the MOF@P had low cell toxicities. The results indicate that the prepared MOF@P polymeric complex can be applied for the sustained release of HCPT in clinics.
format Online
Article
Text
id pubmed-8618358
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-86183582021-11-27 A Water-Soluble Polyacid Polymer Based on Hydrophilic Metal–Organic Frameworks Using Amphoteric Carboxylic Acid Ligands as Linkers for Hydroxycamptothecin Loading and Release In Vitro Shi, Yuqiong Liu, Wei Wu, Xiangrong Zhu, Jinhua Zhou, Danyang Liu, Xiuhua Nanomaterials (Basel) Article The poor water solubility and severe side effects of hydroxycamptothecin (HCPT) limit its clinical application; therefore, it is necessary to synthesize applicable nanodrug carriers with good solubility to expand the applications of HCPT. In this study, a hydrophilic metal–organic framework (MOF) with amphoteric carboxylic acid ligands as linkers was first synthesized and characterized. Then, water-soluble acrylamide and methacrylic acid were applied as monomers to prepare a water-soluble polyacid polymer MOF@P, which had a solubility of 370 μg/mL. The effects of the MOF@P material on the HCPT loading and solubility were investigated. The results showed that the polymer material could improve the HCPT solubility in water. Moreover, the in vitro release study indicated that the MOF@P polymeric composite exhibited a sustained-release effect on HCPT, with a cumulative release rate of 30.18% in 72 h at pH 7.4. Furthermore, the cytotoxicity test demonstrated that the hydrophilic MOF and the MOF@P had low cell toxicities. The results indicate that the prepared MOF@P polymeric complex can be applied for the sustained release of HCPT in clinics. MDPI 2021-10-26 /pmc/articles/PMC8618358/ /pubmed/34835619 http://dx.doi.org/10.3390/nano11112854 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shi, Yuqiong
Liu, Wei
Wu, Xiangrong
Zhu, Jinhua
Zhou, Danyang
Liu, Xiuhua
A Water-Soluble Polyacid Polymer Based on Hydrophilic Metal–Organic Frameworks Using Amphoteric Carboxylic Acid Ligands as Linkers for Hydroxycamptothecin Loading and Release In Vitro
title A Water-Soluble Polyacid Polymer Based on Hydrophilic Metal–Organic Frameworks Using Amphoteric Carboxylic Acid Ligands as Linkers for Hydroxycamptothecin Loading and Release In Vitro
title_full A Water-Soluble Polyacid Polymer Based on Hydrophilic Metal–Organic Frameworks Using Amphoteric Carboxylic Acid Ligands as Linkers for Hydroxycamptothecin Loading and Release In Vitro
title_fullStr A Water-Soluble Polyacid Polymer Based on Hydrophilic Metal–Organic Frameworks Using Amphoteric Carboxylic Acid Ligands as Linkers for Hydroxycamptothecin Loading and Release In Vitro
title_full_unstemmed A Water-Soluble Polyacid Polymer Based on Hydrophilic Metal–Organic Frameworks Using Amphoteric Carboxylic Acid Ligands as Linkers for Hydroxycamptothecin Loading and Release In Vitro
title_short A Water-Soluble Polyacid Polymer Based on Hydrophilic Metal–Organic Frameworks Using Amphoteric Carboxylic Acid Ligands as Linkers for Hydroxycamptothecin Loading and Release In Vitro
title_sort water-soluble polyacid polymer based on hydrophilic metal–organic frameworks using amphoteric carboxylic acid ligands as linkers for hydroxycamptothecin loading and release in vitro
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8618358/
https://www.ncbi.nlm.nih.gov/pubmed/34835619
http://dx.doi.org/10.3390/nano11112854
work_keys_str_mv AT shiyuqiong awatersolublepolyacidpolymerbasedonhydrophilicmetalorganicframeworksusingamphotericcarboxylicacidligandsaslinkersforhydroxycamptothecinloadingandreleaseinvitro
AT liuwei awatersolublepolyacidpolymerbasedonhydrophilicmetalorganicframeworksusingamphotericcarboxylicacidligandsaslinkersforhydroxycamptothecinloadingandreleaseinvitro
AT wuxiangrong awatersolublepolyacidpolymerbasedonhydrophilicmetalorganicframeworksusingamphotericcarboxylicacidligandsaslinkersforhydroxycamptothecinloadingandreleaseinvitro
AT zhujinhua awatersolublepolyacidpolymerbasedonhydrophilicmetalorganicframeworksusingamphotericcarboxylicacidligandsaslinkersforhydroxycamptothecinloadingandreleaseinvitro
AT zhoudanyang awatersolublepolyacidpolymerbasedonhydrophilicmetalorganicframeworksusingamphotericcarboxylicacidligandsaslinkersforhydroxycamptothecinloadingandreleaseinvitro
AT liuxiuhua awatersolublepolyacidpolymerbasedonhydrophilicmetalorganicframeworksusingamphotericcarboxylicacidligandsaslinkersforhydroxycamptothecinloadingandreleaseinvitro
AT shiyuqiong watersolublepolyacidpolymerbasedonhydrophilicmetalorganicframeworksusingamphotericcarboxylicacidligandsaslinkersforhydroxycamptothecinloadingandreleaseinvitro
AT liuwei watersolublepolyacidpolymerbasedonhydrophilicmetalorganicframeworksusingamphotericcarboxylicacidligandsaslinkersforhydroxycamptothecinloadingandreleaseinvitro
AT wuxiangrong watersolublepolyacidpolymerbasedonhydrophilicmetalorganicframeworksusingamphotericcarboxylicacidligandsaslinkersforhydroxycamptothecinloadingandreleaseinvitro
AT zhujinhua watersolublepolyacidpolymerbasedonhydrophilicmetalorganicframeworksusingamphotericcarboxylicacidligandsaslinkersforhydroxycamptothecinloadingandreleaseinvitro
AT zhoudanyang watersolublepolyacidpolymerbasedonhydrophilicmetalorganicframeworksusingamphotericcarboxylicacidligandsaslinkersforhydroxycamptothecinloadingandreleaseinvitro
AT liuxiuhua watersolublepolyacidpolymerbasedonhydrophilicmetalorganicframeworksusingamphotericcarboxylicacidligandsaslinkersforhydroxycamptothecinloadingandreleaseinvitro