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Published on: February 18, 2020
Transferrin-bearing liposomes entrapping plumbagin for targeted cancer therapy
Intouch Sakpakdeejaroen1, Sukrut Somani1, Partha Laskar1
1Strathclyde Institute of Pharmacy and Biomedical Sciences University of Strathclyde 161 Cathedral Street Glasgow G4 0RE UK.
Abstract:
The therapeutic potential of plumbagin, a naphthoquinone extracted from the officinal leadwort with anticancer properties, is hampered by its failure to specifically reach tumours at a therapeutic concentration after intravenous administration, without secondary effects on normal tissues. Its use in clinic is further limited by its poor aqueous solubility, its spontaneous sublimation, and its rapid elimination in vivo. We hypothesize that the entrapment of plumbagin within liposomes grafted with transferrin, whose receptors are overexpressed on many cancer cells, could result in a selective delivery to tumours after intravenous administration. The objectives of this study were therefore to prepare and characterize transferrin-targeted liposomes entrapping plumbagin and to evaluate their therapeutic efficacy in vitro and in vivo. The entrapment of plumbagin in transferrin-bearing liposomes led to an increase in plumbagin uptake by cancer cells and improved antiproliferative efficacy and apoptosis activity in B16-F10, A431, and T98G cell lines compared with that observed with the drug solution. In vivo, the intravenous injection of transferrin-bearing liposomes entrapping plumbagin led to tumour suppression for 10% of B16-F10 tumours and tumour regression for a further 10% of the tumours. By contrast, all the tumours treated with plumbagin solution or left untreated were progressive. The animals did not show any signs of toxicity. Transferrin-bearing liposomes entrapping plumbagin are therefore highly promising therapeutic systems that should be further optimized as a therapeutic tool for cancer treatment.
Insights
Targeted liposomes carrying the anticancer drug plumbagin show promise for cancer treatment. This drug delivery system enhances cancer cell uptake and reduces tumor growth without causing toxicity, offering a potential new cancer therapy.
Area of Science:
- Pharmacology and Nanomedicine
- Cancer Biology
- Drug Delivery Systems
Background:
- Plumbagin, an anticancer naphthoquinone, has limited therapeutic use due to poor solubility, rapid elimination, and lack of tumor specificity.
- Targeted drug delivery systems are needed to overcome these limitations and improve anticancer efficacy.
Purpose of the Study:
- To prepare and characterize transferrin-targeted liposomes encapsulating plumbagin.
- To evaluate the in vitro and in vivo therapeutic efficacy of these targeted liposomes against cancer.
Main Methods:
- Plumbagin was encapsulated in liposomes functionalized with transferrin.
- In vitro studies assessed cancer cell uptake, antiproliferative effects, and apoptosis induction.
- In vivo studies evaluated tumor suppression and toxicity in a mouse model.
Main Results:
- Transferrin-targeted liposomes significantly increased plumbagin uptake by cancer cells.
- Enhanced antiproliferative and apoptosis-inducing activities were observed in vitro.
- In vivo, targeted liposomes demonstrated tumor suppression and regression with no observed toxicity.
Conclusions:
- Transferrin-targeted liposomes represent a promising drug delivery system for plumbagin.
- This approach enhances anticancer efficacy and reduces systemic toxicity.
- Further optimization could lead to a valuable new therapeutic tool for cancer treatment.
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