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l-Histidine-based pH-sensitive anticancer drug carrier micelle: Reconstitution and brief evaluation of its systemic toxicity

  • University of Utah

Research output: Contribution to journalArticlepeer-review

63 Scopus citations

Abstract

A doxorubicin (DOX)-carrier micellar system consisting of poly(histidine)(5K)-b-poly(ethylene glycol)(2K) and poly(l-lactic acid)(3K)-b-PEG(2K)-folate has been developed targeting the early endosomal pH and it have been convincingly proved that intracellular high dose strategy using such micelles is effective in overcoming multidrug resistance (MDR) of cancer cells. Due to the low DOX concentrations in the micelle solution obtained by dialysis and the lack of long-term stability of the micelles, stable and lyophilized micelle formulations were the subject of investigation reported here by using excipients of sucrose, PEG or Pluronic. The reconstituted micelle solutions were examined by particle size, pH sensitivity, and cytotoxicity for MDR cells and the results were compared with the non-lyophilized micelles. Among tested excipients, Pluronic F127 (33 wt%) added to the polymer/drug solution prior to dialysis resulted in a reconstituted product stable for a week and presented equivalent benefits as the fresh micelle formulation. The blank micelles did not present any apparent systemic toxicity in mice up to 2400 mg/kg i.v. injection (800 mg/(kg day) for 3 days). The brief toxicity of reconstituted DOX loaded micelles was examined by the maximum tolerated dose (MTD), which was approximately 7.5-fold higher than free DOX and guaranteeing further animal toxicity and efficacy study.

Original languageEnglish
Pages (from-to)177-183
Number of pages7
JournalInternational Journal of Pharmaceutics
Volume358
Issue number1-2
DOIs
StatePublished - 24 Jun 2008

Bibliographical note

Funding Information:
The authors thank Dr. Haiqing Yin (University of Utah) and Dr. Ajay Taluja (University of Utah) for a valuable discussion related to physicochemical characterization and reading the manuscript carefully, respectively. This work was supported by NIH CA101850.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Maximum tolerated dose
  • Multidrug resistance
  • Pluronic F127
  • Poly(l-histidine)-b-PEG
  • Reconstitution
  • pH-sensitive micelle

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