Stereocomplex Prodrugs of Oligo(lactic acid) <sub>n</sub>-Gemcitabine in Poly(ethylene glycol)- block-poly(d,l-lactic acid) Micelles for Improved Physical Stability and Enhanced Antitumor Efficacy.
basic_science · Level V
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- Record sourced from PubMed, PMID 29957934.
- Also identified by DOI 10.1021/acsnano.8b04205 and PMC identifier 6071312.
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Abstract
Herein we demonstrate the formation of stereocomplex prodrugs of oligo(l-lactic acid) <sub>n</sub>-gemcitabine (o(LLA) <sub>n</sub>-GEM) and oligo(d-lactic acid) <sub>n</sub>-gemcitabine (o(DLA) <sub>n</sub>-GEM) for stable incorporation in poly(ethylene glycol)- block-poly(d,l-lactic acid) (PEG- b-PLA) micelles. O(LLA) <sub>n</sub> or o(DLA) <sub>n</sub> was attached at the amino group (4-( N)) of GEM via an amide linkage. When n = 10, a 1:1 mixture of o(LLA)<sub>10</sub>-GEM and o(DLA)<sub>10</sub>-GEM (o(L+DLA)<sub>10</sub>-GEM) was able to form a stereocomplex with a distinctive crystalline pattern. Degradation of o(L+DLA)<sub>10</sub>-GEM was driven by both backbiting conversion and esterase contribution, generating primarily o(L+DLA)<sub>1</sub>-GEM and GEM. O(L+DLA)<sub>10</sub>-GEM stably loaded in PEG- b-PLA micelles in the size range of 140-200 nm with an unexpected elongated morphology. The resulting micelles showed improved physical stability in aqueous media and inhibited backbiting conversion of o(L+DLA)<sub>10</sub>-GEM within micelles. Release of o(L+DLA)<sub>10</sub>-GEM from micelles was relatively slow, with a t<sub>1/2</sub> at ca. 60 h. Furthermore, weekly administration of o(L+DLA)<sub>10</sub>-GEM micelles i.v. displayed potent antitumor activity in an A549 human non-small-cell lung carcinoma xenograft model. Thus, stereocomplexation of isotactic o(LLA) <sub>n</sub> and o(DLA) <sub>n</sub> acts as a potential prodrug strategy for improved stability and sustained drug release in PEG- b-PLA micelles.
Medical subject headings
- Antineoplastic Agents
- Deoxycytidine
- Lactates
- Lactic Acid
- Micelles
- Polyethylene Glycols
- Prodrugs