Smart-Temporary-Film-Based Local-Delivery System with Controllable Drug-Release Behavior

The development of a simple local drug-delivery system that exhibits the advantages of macro- and microscale carriers with controllable drug-release behavior is still highly desired. Herein, in this work, a smart temporary film was prepared from doxorubicin (DOX)-loaded shape-memory microgels via a...

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Main Authors: Denghang Xie, Huiwen Wang, Cheng Yin, Mengxia Peng, Haiyong Ao, Jian Hu, Yizao Wan, Quanchao Zhang
Format: Article
Language:English
Published: MDPI AG 2022-11-01
Series:Gels
Subjects:
Online Access:https://www.mdpi.com/2310-2861/8/12/773
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author Denghang Xie
Huiwen Wang
Cheng Yin
Mengxia Peng
Haiyong Ao
Jian Hu
Yizao Wan
Quanchao Zhang
author_facet Denghang Xie
Huiwen Wang
Cheng Yin
Mengxia Peng
Haiyong Ao
Jian Hu
Yizao Wan
Quanchao Zhang
author_sort Denghang Xie
collection DOAJ
description The development of a simple local drug-delivery system that exhibits the advantages of macro- and microscale carriers with controllable drug-release behavior is still highly desired. Herein, in this work, a smart temporary film was prepared from doxorubicin (DOX)-loaded shape-memory microgels via a simple hot-compression programming method. The temporary film showed a very smooth surface and easy handing, as well as macroscopy mechanical properties, which could disintegrate into the microgels with heating at 45 °C. In this case, the temporary film showed a controllable DOX release behavior when compared with the microgels, which could release the DOX on demand. Consequently, the temporary film exhibited weaker cytotoxicity to normal cells and a much longer antitumor capability, as well as a higher drug-utilization efficiency when compared with microgels. Therefore, the smart temporary film has high potential as a candidate for use as a local drug-delivery system.
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spelling doaj.art-42caa0d55b344a098b0e544c44b275a92023-11-24T15:00:46ZengMDPI AGGels2310-28612022-11-0181277310.3390/gels8120773Smart-Temporary-Film-Based Local-Delivery System with Controllable Drug-Release BehaviorDenghang Xie0Huiwen Wang1Cheng Yin2Mengxia Peng3Haiyong Ao4Jian Hu5Yizao Wan6Quanchao Zhang7Jiangxi Key Laboratory of Nanobiomaterials, Institute of Advanced Materials, East China Jiaotong University, Nanchang 330013, ChinaJiangxi Key Laboratory of Nanobiomaterials, Institute of Advanced Materials, East China Jiaotong University, Nanchang 330013, ChinaJiangxi Key Laboratory of Nanobiomaterials, Institute of Advanced Materials, East China Jiaotong University, Nanchang 330013, ChinaJiangxi Key Laboratory of Nanobiomaterials, Institute of Advanced Materials, East China Jiaotong University, Nanchang 330013, ChinaJiangxi Key Laboratory of Nanobiomaterials, Institute of Advanced Materials, East China Jiaotong University, Nanchang 330013, ChinaJiangxi Key Laboratory of Nanobiomaterials, Institute of Advanced Materials, East China Jiaotong University, Nanchang 330013, ChinaJiangxi Key Laboratory of Nanobiomaterials, Institute of Advanced Materials, East China Jiaotong University, Nanchang 330013, ChinaJiangxi Key Laboratory of Nanobiomaterials, Institute of Advanced Materials, East China Jiaotong University, Nanchang 330013, ChinaThe development of a simple local drug-delivery system that exhibits the advantages of macro- and microscale carriers with controllable drug-release behavior is still highly desired. Herein, in this work, a smart temporary film was prepared from doxorubicin (DOX)-loaded shape-memory microgels via a simple hot-compression programming method. The temporary film showed a very smooth surface and easy handing, as well as macroscopy mechanical properties, which could disintegrate into the microgels with heating at 45 °C. In this case, the temporary film showed a controllable DOX release behavior when compared with the microgels, which could release the DOX on demand. Consequently, the temporary film exhibited weaker cytotoxicity to normal cells and a much longer antitumor capability, as well as a higher drug-utilization efficiency when compared with microgels. Therefore, the smart temporary film has high potential as a candidate for use as a local drug-delivery system.https://www.mdpi.com/2310-2861/8/12/773smarttemporary filmmicrogelscontrollable drug releaselocal delivery system
spellingShingle Denghang Xie
Huiwen Wang
Cheng Yin
Mengxia Peng
Haiyong Ao
Jian Hu
Yizao Wan
Quanchao Zhang
Smart-Temporary-Film-Based Local-Delivery System with Controllable Drug-Release Behavior
Gels
smart
temporary film
microgels
controllable drug release
local delivery system
title Smart-Temporary-Film-Based Local-Delivery System with Controllable Drug-Release Behavior
title_full Smart-Temporary-Film-Based Local-Delivery System with Controllable Drug-Release Behavior
title_fullStr Smart-Temporary-Film-Based Local-Delivery System with Controllable Drug-Release Behavior
title_full_unstemmed Smart-Temporary-Film-Based Local-Delivery System with Controllable Drug-Release Behavior
title_short Smart-Temporary-Film-Based Local-Delivery System with Controllable Drug-Release Behavior
title_sort smart temporary film based local delivery system with controllable drug release behavior
topic smart
temporary film
microgels
controllable drug release
local delivery system
url https://www.mdpi.com/2310-2861/8/12/773
work_keys_str_mv AT denghangxie smarttemporaryfilmbasedlocaldeliverysystemwithcontrollabledrugreleasebehavior
AT huiwenwang smarttemporaryfilmbasedlocaldeliverysystemwithcontrollabledrugreleasebehavior
AT chengyin smarttemporaryfilmbasedlocaldeliverysystemwithcontrollabledrugreleasebehavior
AT mengxiapeng smarttemporaryfilmbasedlocaldeliverysystemwithcontrollabledrugreleasebehavior
AT haiyongao smarttemporaryfilmbasedlocaldeliverysystemwithcontrollabledrugreleasebehavior
AT jianhu smarttemporaryfilmbasedlocaldeliverysystemwithcontrollabledrugreleasebehavior
AT yizaowan smarttemporaryfilmbasedlocaldeliverysystemwithcontrollabledrugreleasebehavior
AT quanchaozhang smarttemporaryfilmbasedlocaldeliverysystemwithcontrollabledrugreleasebehavior