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Updated: Aug 9, 2026

Preparation and Characterization of Lipophilic Doxorubicin Pro-drug Micelles
Published on: August 2, 2016
Imidazole-Based pH-Sensitive Convertible Liposomes for Anticancer Drug Delivery
Ruiqi Huang1, Vijay Gyanani1, Shen Zhao1
1Thomas J. Long School of Pharmacy, University of the Pacific, Stockton, CA 95211, USA.
Novel imidazole lipids create pH-sensitive convertible liposomes (ICL) that release doxorubicin (DOX) in tumor environments. These liposomes show enhanced anticancer activity against solid tumors compared to standard liposomes.
Area of Science:
- Nanomedicine
- Drug Delivery Systems
- Oncology
Background:
- Conventional liposomal drug delivery faces challenges in solid tumor treatment due to poor penetration and premature drug release.
- Developing stimuli-responsive liposomes that target the acidic tumor microenvironment is a promising strategy to improve therapeutic efficacy.
- pH-sensitive liposomes can enhance drug accumulation and activity within solid tumors.
Purpose of the Study:
- To design and synthesize novel imidazole-based lipids for creating pH-sensitive convertible liposomes (ICL).
- To evaluate the pH-triggered behavior, drug release kinetics, and anticancer activity of ICL containing doxorubicin (DOX).
- To investigate the impact of imidazole lipid basicity and cholesterol content on ICL performance against solid tumors.
Main Methods:
- Synthesis of three novel imidazole lipids with varying basicity.
- Incorporation of imidazole lipids into PEGylated liposomes containing doxorubicin (DOX) to form ICL.
- Characterization of ICL pH-sensitivity, lipid phase separation (TEM, DSC), aggregation, and DOX release.
- Assessment of ICL anticancer activity against monolayer cells and 3D multicellular spheroids (MCS).
Main Results:
- ICL demonstrated pH-dependent protonation and clustering, leading to increased positive surface charge and lipid phase separation at tumor-relevant pH (6.0).
- A specific imidazole lipid enhanced DOX release from ICL at lower pH.
- ICL exhibited superior anticancer activity compared to pH-insensitive liposomes in both monolayer and 3D MCS models.
- Cholesterol incorporation improved colloidal stability but reduced pH-sensitivity; lipid basicity influenced activity in different cellular models.
Conclusions:
- Novel imidazole lipids enable the development of effective pH-sensitive convertible liposomes (ICL) for targeted doxorubicin delivery.
- ICL show enhanced anticancer efficacy against solid tumors by leveraging the acidic tumor microenvironment for triggered drug release.
- Optimizing ICL composition, balancing tissue penetration, cell binding, and drug release, is key for maximizing therapeutic outcomes in solid tumors.
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