68Ga‐labeled, imatinib encapsulated, theranostic liposomes: Formulation, characterization, and in vitro evaluation of anticancer activity

Author:

Karpuz Merve1ORCID,Ozgenc Emre2,Oner Ezgi345,Atlihan‐Gundogdu Evren2,Burak Zeynep6

Affiliation:

1. Department of Radiopharmacy, Faculty of Pharmacy Izmir Katip Celebi University Izmir Turkey

2. Department of Radiopharmacy, Faculty of Pharmacy Ege University Izmir Turkey

3. Department of Pharmaceutical Biotechnology, Faculty of Pharmacy Izmir Katip Celebi University Izmir Turkey

4. Thoracic Oncology Research Group, Trinity Translational Medicine Institute St James's Hospital Dublin Ireland

5. Department of Clinical Medicine Trinity School of Medicine, Trinity College Dublin Dublin Ireland

6. Department of Nuclear Medicine Faculty of Medicine, Ege University Izmir Turkey

Abstract

AbstractCancer is still a global health problem. Among cancer types, breast cancer is the most frequently diagnosed one, and it causes a high mortality rate if not diagnosed in the early stages. In our study, imatinib encapsulated, nanosized, neutral/cationic liposome formulations were prepared as theranostic agents for breast cancer. After the characterization studies in which all liposomes exhibited proper profile owing to their particle size between 133 and 250 nm, polydispersity index values lower than 0.4, neutral and cationic zeta potential values, and high drug encapsulation efficiency, controlled drug release behaviors with zero‐order kinetic were obtained. The higher than 90% radiolabeling efficiency values were obtained thanks to the determination of optimum radiolabeling condition (80°C temperature, 5 mCi radioactivity, and 10 min incubation period). According to the resazurin assay evaluating the cytotoxic profile of liposomes on MCF7 cells, neutral empty liposome was found as biocompatible, while both cationic liposomes (empty and drug‐loaded ones) exhibited high nonspecific cytotoxicity at even low drug concentration due to the existence of stearyl amine in the formulations. However, dose‐dependent cytotoxic effect and the highest cellular binding capacity were obtained by imatinib loaded neutral liposomes. In conclusion, 68Ga‐radiolabeled, imatinib‐loaded, neutral, nanosized liposome formulation is the most promising one as a theranostic agent among all formulations.

Publisher

Wiley

Subject

Drug Discovery

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