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1.
Biomacromolecules ; 16(7): 1924-37, 2015 Jul 13.
Article in English | MEDLINE | ID: mdl-25988940

ABSTRACT

New pH-responsive polymersomes for active anticancer oligonucleotide delivery were prepared from triblock copolymers. The delivery systems were formed by two terminal hydrophilic blocks, PEG and polyglycerolmethacrylate (poly-GMA), and a central weakly basic block, polyimidazole-hexyl methacrylate (poly-ImHeMA), which can complex with oligonucleotides and control vesicle formation/disassembly via pH variations. Targeted polymersomes were prepared by mixing folate-derivatized and underivatized copolymers. At pH 5, ds-DNA was found to complex with the pH-responsive copolymers at a N/P molar ratio above ∼2:1, which assisted the encapsulation of ds-DNA in the polymersomes, while low association was observed at pH 7.4. Cytotoxicity studies performed on folate receptor overexpressing KB and B16-F10 cells and low folate receptor expressing MCF-7 cells showed high tolerance of the polymersomes at up to 3 mg/mL concentration. Studies performed with red blood cells showed that at pH 5.0 the polymersomes have endosomolytic properties. Cytofluorimetric studies showed a 5.5-fold higher uptake of ds-DNA loaded folate-functional polymersomes in KB cells compared to nontargeted polymersomes. In addition, ds-DNA was found to be localized both in the nucleus and in the cytosol. The incubation of luciferase transfected B16-F10 cells with targeted polymersomes loaded with luciferase and Hsp90 expression silencing siRNAs yielded 31 and 23% knockdown in target protein expression, respectively.


Subject(s)
Antineoplastic Agents/pharmacology , Cell Nucleus/genetics , Polyethylene Glycols/chemistry , RNA, Small Interfering/pharmacology , Cytosol/metabolism , Drug Carriers/chemistry , Folate Receptors, GPI-Anchored/metabolism , Humans , Hydrophobic and Hydrophilic Interactions , KB Cells , MCF-7 Cells , Methacrylates/chemical synthesis , Methacrylates/chemistry , Nanoparticles/chemistry
2.
Biomater Sci ; 5(3): 532-550, 2017 Feb 28.
Article in English | MEDLINE | ID: mdl-28124699

ABSTRACT

Polymer micelles have emerged as promising carriers for controlled release applications, however, several limitations of micelle-based drug delivery have also been reported. To address these issues, we have synthesized a functional biodegradable and cytocompatible block copolymer based on methoxypoly(ethyleneglycol)-b-poly(ε-caprolactone-co-α-azido-ε-caprolactone) (mPEG-b-poly(εCL-co-αN3εCL)) as a precursor of reduction sensitive core-crosslinked micelles. The synthesized polymer was formulated as micelles using a dialysis method and loaded with the anti-inflammatory and anti-cancer drug methotrexate (MTX). The micellar cores were subsequently crosslinked at their pendent azides by a redox-responsive bis(alkyne). The size distributions and morphology of the polymer micelles were assessed using dynamic light scattering (DLS) and transmission electron microscopy, and drug release assays were performed under simplified (serum free) physiological and reductive conditions. Cellular uptake studies in human breast cancer cells were performed using Oregon-green loaded core-crosslinked micelles. The MTX-loaded core-crosslinked micelles were assessed for their effects on metabolic activity in human breast cancer (MCF-7) cells by evaluating the reduction of the dye MTT 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide. The apoptosis inducing potential of MTX-loaded core-crosslinked micelles was analysed using Hoechst/propidium iodide (PI) and annexin-V/PI assays. The data from these experiments indicated that drug release from these cross-linked micelles can be controlled and that the redox-responsive micelles are more effective carriers for MTX than non-crosslinked analogues and the free drug in the cell-lines tested.


Subject(s)
Antimetabolites, Antineoplastic/administration & dosage , Breast Neoplasms/drug therapy , Delayed-Action Preparations/chemistry , Methotrexate/administration & dosage , Micelles , Polymers/chemistry , Antimetabolites, Antineoplastic/pharmacokinetics , Antimetabolites, Antineoplastic/pharmacology , Apoptosis/drug effects , Caproates/chemistry , Drug Liberation , Female , Humans , Lactones/chemistry , MCF-7 Cells , Methotrexate/pharmacokinetics , Methotrexate/pharmacology , Oxidation-Reduction , Polyethylene Glycols/chemistry
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