Multiseed liposomal drug delivery system using micelle gradient as driving force to improve amphiphilic drug retention and its anti-tumor efficacy

To improve drug retention in carriers for amphiphilic asulacrine (ASL), a novel active loading method using micelle gradient was developed to fabricate the ASL-loaded multiseed liposomes (ASL-ML). The empty ML were prepared by hydrating a thin film with empty micelles. Then the micelles in liposomal...

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Main Authors: Wenli Zhang, Caibin Li, Ya Jin, Xinyue Liu, Zhiyu Wang, John P. Shaw, Bruce C. Baguley, Zimei Wu, Jianping Liu
Format: Article
Language:English
Published: Taylor & Francis Group 2018-01-01
Series:Drug Delivery
Subjects:
Online Access:http://dx.doi.org/10.1080/10717544.2018.1440669
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spelling doaj-80e2e24bdb214463864680afeba008bb2020-11-25T03:29:07ZengTaylor & Francis GroupDrug Delivery1071-75441521-04642018-01-0125161162210.1080/10717544.2018.14406691440669Multiseed liposomal drug delivery system using micelle gradient as driving force to improve amphiphilic drug retention and its anti-tumor efficacyWenli Zhang0Caibin Li1Ya Jin2Xinyue Liu3Zhiyu Wang4John P. Shaw5Bruce C. Baguley6Zimei Wu7Jianping Liu8China Pharmaceutical UniversityChina Pharmaceutical UniversityChina Pharmaceutical UniversityChina Pharmaceutical UniversityChina Pharmaceutical UniversityUniversity of AucklandUniversity of AucklandUniversity of AucklandChina Pharmaceutical UniversityTo improve drug retention in carriers for amphiphilic asulacrine (ASL), a novel active loading method using micelle gradient was developed to fabricate the ASL-loaded multiseed liposomes (ASL-ML). The empty ML were prepared by hydrating a thin film with empty micelles. Then the micelles in liposomal compartment acting as ‘micelle pool’ drove the drug to be loaded after the outer micelles were removed. Some reasoning studies including critical micelle concentration (CMC) determination, influencing factors tests on entrapment efficiency (EE), structure visualization, and drug release were carried out to explore the mechanism of active loading, ASL location, and the structure of ASL-ML. Comparisons were made between pre-loading and active loading method. Finally, the extended drug retention capacity of ML was evaluated through pharmacokinetic, drug tissue irritancy, and in vivo anti-tumor activity studies. Comprehensive results from fluorescent and transmission electron microscope (TEM) observation, encapsulation efficiency (EE) comparison, and release studies demonstrated the formation of ML-shell structure for ASL-ML without inter-carrier fusion. The location of drug mainly in inner micelles as well as the superiority of post-loading to the pre-loading method , in which drug in micelles shifted onto the bilayer membrane was an additional positive of this delivery system. It was observed that the drug amphiphilicity and interaction of micelles with drug were the two prerequisites for this active loading method. The extended retention capacity of ML has been verified through the prolonged half-life, reduced paw-lick responses in rats, and enhanced tumor inhibition in model mice. In conclusion, ASL-ML prepared by active loading method can effectively load drug into micelles with expected structure and improve drug retention.http://dx.doi.org/10.1080/10717544.2018.1440669multiseed liposomesactive loadingmicelle gradientdrug retentionefficacy
collection DOAJ
language English
format Article
sources DOAJ
author Wenli Zhang
Caibin Li
Ya Jin
Xinyue Liu
Zhiyu Wang
John P. Shaw
Bruce C. Baguley
Zimei Wu
Jianping Liu
spellingShingle Wenli Zhang
Caibin Li
Ya Jin
Xinyue Liu
Zhiyu Wang
John P. Shaw
Bruce C. Baguley
Zimei Wu
Jianping Liu
Multiseed liposomal drug delivery system using micelle gradient as driving force to improve amphiphilic drug retention and its anti-tumor efficacy
Drug Delivery
multiseed liposomes
active loading
micelle gradient
drug retention
efficacy
author_facet Wenli Zhang
Caibin Li
Ya Jin
Xinyue Liu
Zhiyu Wang
John P. Shaw
Bruce C. Baguley
Zimei Wu
Jianping Liu
author_sort Wenli Zhang
title Multiseed liposomal drug delivery system using micelle gradient as driving force to improve amphiphilic drug retention and its anti-tumor efficacy
title_short Multiseed liposomal drug delivery system using micelle gradient as driving force to improve amphiphilic drug retention and its anti-tumor efficacy
title_full Multiseed liposomal drug delivery system using micelle gradient as driving force to improve amphiphilic drug retention and its anti-tumor efficacy
title_fullStr Multiseed liposomal drug delivery system using micelle gradient as driving force to improve amphiphilic drug retention and its anti-tumor efficacy
title_full_unstemmed Multiseed liposomal drug delivery system using micelle gradient as driving force to improve amphiphilic drug retention and its anti-tumor efficacy
title_sort multiseed liposomal drug delivery system using micelle gradient as driving force to improve amphiphilic drug retention and its anti-tumor efficacy
publisher Taylor & Francis Group
series Drug Delivery
issn 1071-7544
1521-0464
publishDate 2018-01-01
description To improve drug retention in carriers for amphiphilic asulacrine (ASL), a novel active loading method using micelle gradient was developed to fabricate the ASL-loaded multiseed liposomes (ASL-ML). The empty ML were prepared by hydrating a thin film with empty micelles. Then the micelles in liposomal compartment acting as ‘micelle pool’ drove the drug to be loaded after the outer micelles were removed. Some reasoning studies including critical micelle concentration (CMC) determination, influencing factors tests on entrapment efficiency (EE), structure visualization, and drug release were carried out to explore the mechanism of active loading, ASL location, and the structure of ASL-ML. Comparisons were made between pre-loading and active loading method. Finally, the extended drug retention capacity of ML was evaluated through pharmacokinetic, drug tissue irritancy, and in vivo anti-tumor activity studies. Comprehensive results from fluorescent and transmission electron microscope (TEM) observation, encapsulation efficiency (EE) comparison, and release studies demonstrated the formation of ML-shell structure for ASL-ML without inter-carrier fusion. The location of drug mainly in inner micelles as well as the superiority of post-loading to the pre-loading method , in which drug in micelles shifted onto the bilayer membrane was an additional positive of this delivery system. It was observed that the drug amphiphilicity and interaction of micelles with drug were the two prerequisites for this active loading method. The extended retention capacity of ML has been verified through the prolonged half-life, reduced paw-lick responses in rats, and enhanced tumor inhibition in model mice. In conclusion, ASL-ML prepared by active loading method can effectively load drug into micelles with expected structure and improve drug retention.
topic multiseed liposomes
active loading
micelle gradient
drug retention
efficacy
url http://dx.doi.org/10.1080/10717544.2018.1440669
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