Super pH-sensitive multifunctional polymeric micelle for tumor pHe specific TAT exposure and multidrug resistance

  • Lee, E.S.; 
  • Gao, Z.; 
  • Kim, D.; 
  • Park, K.; 
  • Kwon, I.C.; 
  • 외 1명
Citations

SCOPUS

412

초록

As an alternative to cell specific cancer targeting strategies (which are often afflicted with the heterogeneity of cancer cells as with most biological systems), a novel polymeric micelle constitute of two block copolymers of poly(l-lactic acid)-b-poly(ethylene glycol)-b-poly(l-histidine)-TAT (transactivator of transcription) and poly(l-histidine)-b-poly(ethylene glycol) was developed. The micelle formed via the dialysis method was approximately 95 nm in diameter and contained 15 wt.% of doxorubicin (DOX) by weight. The micelle surface hides TAT during circulation, which has the strong capability to translocate the micelle into cells, and exposes TAT at a slightly acidic tumor extracellular pH to facilitate the internalization process. The micelle core was engineered for disintegration in early endosomal pH of tumor cells, quickly releasing DOX. The ionization process of the block copolymers and ionized polymers assisted in disrupting the endosomal membrane. This processes permitted high DOX concentrations in the cytosol and its target site of the nucleus, thus increasing DOX potency in various wild and multidrug resistant (MDR) cell lines (3.8-8.8 times lower IC50 than free DOX, depending on cell line). When tested with the xenografted tumors of human ovarian tumor drug-resistant A2780/AD, human breast tumor drug-sensitive MCF-7, human lung tumor A549 and human epidermoid tumor KB in a nude mice model, all tumors significantly regressed in size by three bolus injections at a dose of DOX 10 mg equivalent/kg body per injection of DOX-loaded micelle at three day interval, while minimum weight loss was observed. This approach may replace the need for cell-specific antibodies or targeting ligands, thereby providing a general strategy for solid tumor targeting. © 2008 Elsevier B.V. All rights reserved.

키워드

Multidrug resistance; Pop-up pH-sensitive polymeric micelle; Triggering drug release; Tumor pH; Biological systems; Block copolymers; Cell culture; Cell membranes; Cells; Chemotherapy; Colloids; Copolymerization; Copolymers; Drug delivery; Drug dosage; Ethylene; Ethylene glycol; Glycols; Ionization of liquids; Lactic acid; Micelles; Nanostructured materials; Oncology; Organic acids; Plastic products; Polyethylene glycols; Polymers; Weighing; (e ,3e) process; (ethylene vinyl alcohol) copolymers; Cancer cells; Cell lines; cytosol; dialysis method; Doxorubicin (DOX); Elsevier (CO); endosomal membranes; Extracellular pH; General (CO); Human breast; Human lungs; Ionization processes; Ionized polymers; L histidine (PLH); Micelle surface; Minimum weight; Nude mice; Ovarian tumors; pH-sensitive; Poly L Lactic acid (PLLA); Polyethylene glycol (PEG); Polymeric micelles; Transactivator; Tumor cells; tumor targeting; Tumors; antibody; copolymer; doxorubicin; ligand; poly(histidine)b poly(ethylene glycol); poly(lactic acid)b poly(ethylene glycol)b poly(histidine); animal experiment; animal model; article; breast tumor; cell line; cell membrane; cell nucleus; cell pH; cell strain MCF 7; concentration (parameters); controlled study; cytosol; dialysis; drug potency; endosome; engineering; epidermoid tumor; female; human; human cell; IC 50; injection; internalization; ionization; lung tumor; micelle; mouse; multidrug resistance; nonhuman; nude mouse; ovary tumor; priority journal; solid tumor; tumor cell; tumor volume; tumor xenograft; weight; weight reduction; Animals; Antibiotics, Antineoplastic; Cell Line, Tumor; Doxorubicin; Drug Resistance, Multiple; Drug Resistance, Neoplasm; Endosomes; Female; Fluorescein-5-isothiocyanate; Fluorescent Dyes; Genes, tat; Humans; Hydrogen-Ion Concentration; Inhibitory Concentration 50; Mice; Mice, Nude; Micelles; Neoplasms; Polymers; Tumor Burden; Xenograft Model Antitumor Assays
제목
Super pH-sensitive multifunctional polymeric micelle for tumor pHe specific TAT exposure and multidrug resistance
저자
Lee, E.S.; Gao, Z.; Kim, D.; Park, K.; Kwon, I.C.; Bae, Y.H.
DOI
10.1016/j.jconrel.2008.04.024
발행일
2008
유형
Article
저널명
Journal of Controlled Release
권
129
호
3
페이지
228 ~ 236