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Cellular recognition of paclitaxel-loaded polymeric nanoparticles composed of poly(gamma-benzyl L-glutamate) and poly(ethylene glycol) diblock copolymer endcapped with galactose moiety.
- Source :
-
International journal of pharmaceutics [Int J Pharm] 2005 May 30; Vol. 296 (1-2), pp. 151-61. Date of Electronic Publication: 2005 Apr 09. - Publication Year :
- 2005
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Abstract
- Poly(gamma-benzyl L-glutamate) (PBLG)/poly(ethylene glycol) (PEG) diblock copolymer endcapped with galactose moiety (abbreviated as GEG) was synthesized and characterized for study of liver-specific targeting. From dynamic light scattering measurement, particle sizes of copolymeric nanoparticles were decreased with an increase of PEG in the copolymer. The morphology of GEG-3 nanoparticles observed by transmission electron micrograph was observed as almost spherical shapes and ranged about 50-300 nm. From the structural characterization using 1H nuclear magnetic resonance, both characteristic peaks of PBLG and PEG were visible in CDCl3 but the characteristic peaks of PBLG were invisible in D2O, indicating that GEG block copolymers are found to the core-shell type nanoparticles in water with PBLG innercore and PEG outershell, exposing that galactose moiety of GEG block copolymers are outerwards oriented on the nanoparticle surfaces. By galactose-specific aggregation test of particles using beta-galactose specific lectin, and flow cytometry measurement, specific interaction between asialoglycoprotein receptors (ASGPR) of HepG2, human hepatoma cell line, and galactose moieties of the GEG nanoparticles was confirmed. From cell cytotoxicity test, HepG2 cells with ASGPR are more sensitive to paclitaxel (TX)-loaded nanoparticles than free TX whereas, P388 cells, murine leukemia cell line, and SK-Hep 01, human hepatoma cell line, without ASGPR is less sensitive to TX-loaded nanoparticles than free TX, suggesting that specific interaction between HepG2 cells and galactose moiety of the nanoparticles occurred.
- Subjects :
- Animals
Cell Communication drug effects
Cell Communication physiology
Cell Survival drug effects
Cell Survival physiology
Dose-Response Relationship, Drug
Galactose administration & dosage
Galactose pharmacokinetics
Leukemia P388 metabolism
Mice
Paclitaxel administration & dosage
Paclitaxel pharmacokinetics
Polyethylene Glycols administration & dosage
Polyethylene Glycols pharmacokinetics
Polyglutamic Acid administration & dosage
Polyglutamic Acid chemical synthesis
Polyglutamic Acid pharmacokinetics
Polymers administration & dosage
Polymers chemical synthesis
Polymers pharmacokinetics
Galactose chemical synthesis
Nanostructures chemistry
Paclitaxel chemical synthesis
Polyethylene Glycols chemical synthesis
Polyglutamic Acid analogs & derivatives
Subjects
Details
- Language :
- English
- ISSN :
- 0378-5173
- Volume :
- 296
- Issue :
- 1-2
- Database :
- MEDLINE
- Journal :
- International journal of pharmaceutics
- Publication Type :
- Academic Journal
- Accession number :
- 15885467
- Full Text :
- https://doi.org/10.1016/j.ijpharm.2005.02.027