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.

Abstract

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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