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Tyrosine kinase inhibitor prodrug-loaded liposomes for controlled release at tumor microenvironment
Stefano Salmaso1, Francesca Mastrotto1, Marco Roverso2
1Department of Pharmaceutical and Pharmacological Sciences, University of Padova, via Marzolo 5, 35131, Italy.
Abstract:
Tyrosine kinase inhibitors (TKIs) represent one of the most advanced class of therapeutics for cancer treatment. Most of them are also cytochrome P450 (CYP) inhibitors and/or substrates thereof. Accordingly, their efficacy and/or toxicity can be affected by CYP-mediated metabolism and by metabolism-derived drug-drug interactions. In order to enhance the therapeutic performance of these drugs, we developed a prodrug (Pro962) of our TKI TK962 specifically designed for liposome loading and pH-controlled release in the tumor. A cholesterol moiety was linked to TK962 through pH-sensitive hydrazone bond for anchoring to the liposome phospholipid bilayer to prevent leakage of the prodrug from the nanocarrier. Bioactivity studies performed on isolated target kinases showed that the prodrug maintains only partial activity against them and the release of TK962 is required. Biopharmaceutical studies carried out with prodrug loaded liposomes showed that the prodrug was firmly associated with the vesicles and the drug release was prevented under blood-mimicking conditions. Conversely, conventional liposome loaded with TK962 readily released the drug. Flow cytometric studies showed that liposomes efficiently provided for intracellular prodrug delivery. The use of the hydrazone linker yielded a pH-controlled drug release, which resulted in about 50% drug release at pH 4 and 5 in 2 h. Prodrug, prodrug loaded liposomes and active lead compound have been tested against cancer cell lines in either 2D or 3D models. The liposome formulation showed higher cytotoxicity than the unformulated lead TK962 in both 2D and 3D models. The stability of prodrug, prodrug loaded liposomes and active lead compound in human serum and against human, mouse, and rat microsomes was also assessed, demonstrating that liposome formulations impair the metabolic reactions and protect the loaded compounds from catabolism. The results suggest that the liposomal formulation of pH releasable TKI prodrugs is a promising strategy to improve the metabolic stability, intracellular cancer cell delivery and release, and in turn the efficacy of this class of anticancer drugs.
Insights
This study developed a liposomal prodrug of a tyrosine kinase inhibitor (TKI) for improved cancer therapy. The formulation enhances drug stability, tumor delivery, and efficacy by enabling pH-controlled release within cancer cells.
Area of Science:
- * Pharmacology
- * Nanomedicine
- * Oncology
Background:
- * Tyrosine kinase inhibitors (TKIs) are advanced cancer therapeutics.
- * TKIs are often metabolized by cytochrome P450 (CYP) enzymes, leading to drug interactions and variable efficacy/toxicity.
- * Developing strategies to improve TKI stability and delivery is crucial for enhancing therapeutic performance.
Purpose of the Study:
- * To develop a novel liposomal prodrug (Pro962) of the TKI TK962 for improved cancer treatment.
- * To engineer the prodrug for pH-controlled release within the tumor microenvironment.
- * To evaluate the enhanced stability, delivery, and efficacy of the liposomal TKI prodrug formulation.
Main Methods:
- * A prodrug (Pro962) was synthesized by linking TK962 to a cholesterol moiety via a pH-sensitive hydrazone bond.
- * Pro962 was loaded into liposomes for enhanced stability and targeted delivery.
- * In vitro studies assessed prodrug association with liposomes, drug release kinetics at different pH values, intracellular delivery, cytotoxicity against cancer cell lines (2D and 3D models), and metabolic stability in human serum and microsomes.
Main Results:
- * The prodrug was stably associated with liposomes, preventing premature drug release under physiological conditions.
- * Liposomal formulation demonstrated efficient intracellular prodrug delivery and pH-dependent drug release (significant release at pH 4-5).
- * The liposomal TKI prodrug exhibited enhanced cytotoxicity compared to the unformulated drug and improved metabolic stability, protecting against catabolism.
Conclusions:
- * Liposomal formulation of pH-sensitive TKI prodrugs is a promising strategy for cancer therapy.
- * This approach improves metabolic stability, enhances intracellular delivery and controlled release in tumors.
- * The developed liposomal TKI prodrug has the potential to increase the therapeutic efficacy of TKIs.
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