4.7 Article

Micelles based on biodegradable poly(L-glutamic acid)-b-polylactide with paramagnetic gd ions chelated to the shell layer as a potential nanoscale IVIRI-visible delivery system

Journal

BIOMACROMOLECULES
Volume 9, Issue 1, Pages 36-42

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/bm700713p

Keywords

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Funding

  1. NCI NIH HHS [R01 CA119387-02, R01 CA119387-01, R01 CA119387, R01 CA119387-03] Funding Source: Medline
  2. NATIONAL CANCER INSTITUTE [R01CA119387] Funding Source: NIH RePORTER

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There is much interest in the development of a nanoscale drug delivery system with MRI visibility to optimize the delivery efficiency and therapeutic efficacy under image guidance. Here we report on the successful fabrication of nanoscale micelles based on biodegradable poly(L-glutamic acid)-b-polylactide (PG-b-PLA) block copolymer with paramagnetic Gd3+ ions chelated to their shell. PG-b-PLA was synthesized by sequential polymerization reactions: anionic polymerization of L-lactide followed by ring-opening polymerization of benzyl glutamate N-carboxylic anhydride. The metal chelator p-aminobenzyldiethylenetriaminepenta(acetic acid) (DTPA) was readily conjugated to the side chain carboxylic acids of poly(L-glutamic acid). The resulting copolymer formed spherical micelles in aqueous solution with an average diameter of 230 nm at pH 7.4. The size of PG(DTPA)-b-PLA micelles decreased with increasing pH value. DTPA-Gd chelated to the shell layer of the micelles exhibited significantly higher spin-lattice relaxivity (r(1)) than a small-niolecular-weight MRI contrast agent, indicating that water molecules could readily access the Gd ions in the micelles. Because of the presence of multiple carboxylic acid functional groups in the shell layer, polymeric micelles based on biodegradable PG(DTPA-Gd)-b-PLA may be a suitable platform for the development of MRI-visible, targeted nanoscale drug delivery systems.

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