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Published on: May 5, 2021
Novel SN38 derivative-based liposome as anticancer prodrug: an in vitro and in vivo study
Chan Wu1, Yang Zhang1,2, Daoqiu Yang3
1Department of Pharmaceutics, School of Pharmacy, Second Military Medical University, Shanghai 200433, People's Republic of China, yjcjm@163.com; lilideng2004@126.com.
Background:
Many novel drug delivery systems have been extensively studied to exploit the full therapeutic potential of SN38, which is one of the most potent antitumor analogs of camptothecins (CPTs), whose clinical application is seriously hindered by poor water solubility, low plasmatic stability, and severe toxicity, but results are always unsatisfactory.
Methods:
In this study, combining the advantages of prodrug and nanotechnology, a lipophilic prodrug of SN38, SN38-PA, was developed by conjugating palmitic acid to SN38 via ester bond at C10 position, and then the lipophilic prodrug was encapsulated into a long-circulating liposomal carrier by film dispersion method.
Results:
The SN38-PA liposomes were characterized as follows: an average particle size of 80.13 nm, an average zeta potential of -33.53 mv, and the entrapment efficiency of 99%. Compared with CPT-11, SN38-PA liposome was more stable in close lactone form, more efficient in conversion rate to SN38, and more potent in cytotoxicity against tumor cells. Pharmacokinetic study showed that SN38-PA liposome had significantly enhanced plasma half-life (t1/2) value of SN38 and increased area under the curve (AUC) of SN38, which was 7.5-fold higher than that of CPT-11. Biodistribution study showed that SN38-PA liposome had more active metabolite SN38 in each tissue. Finally, the pharmacodynamic study showed that SN38-PA liposome had higher antitumor effect with the antitumor inhibition rate of 1.61 times than that of CPT-11.
Conclusion:
These encouraging data merit further investigation on this novel SN38-PA liposome.
Insights
A novel liposomal prodrug, SN38-PA, enhances the delivery of SN38, a potent antitumor agent. This liposomal formulation improves stability, efficacy, and pharmacokinetic properties, showing significant potential for cancer therapy.
Area of Science:
- Pharmaceutical Sciences
- Nanotechnology
- Oncology
Background:
- SN38, a potent camptothecin analog, faces clinical limitations due to poor solubility, stability, and toxicity.
- Existing drug delivery systems for SN38 have yielded unsatisfactory outcomes.
Purpose of the Study:
- To develop a novel liposomal prodrug system for SN38 to overcome its limitations.
- To enhance the therapeutic efficacy and pharmacokinetic profile of SN38.
Main Methods:
- Synthesized a lipophilic SN38 prodrug (SN38-PA) by conjugating palmitic acid to SN38.
- Encapsulated SN38-PA into long-circulating liposomes using the film dispersion method.
Main Results:
- SN38-PA liposomes exhibited optimal particle size (80.13 nm), zeta potential (-33.53 mv), and high entrapment efficiency (99%).
- The liposomal formulation demonstrated superior stability, SN38 conversion, and cytotoxicity compared to CPT-11.
- Pharmacokinetic studies revealed a 7.5-fold increase in SN38's area under the curve and enhanced plasma half-life, with improved tissue distribution of the active metabolite.
Conclusions:
- SN38-PA liposomes represent a promising drug delivery platform for SN38.
- The enhanced pharmacokinetic and pharmacodynamic properties warrant further investigation for clinical applications.
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