Polymeric micelles based on poly(methacrylic acid) block-containing copolymers with different membrane destabilizing properties for cellular drug delivery |
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Authors: | Naila Mebarek,Anne Aubert-Pouë ssel,Corine Gé rardin,Rita Vicente,Jean-Marie Devoisselle,Sylvie Bé gu |
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Affiliation: | 1. Institut Charles Gerhardt Montpellier, UMR 5253 CNRS-ENSCM-UM2-UM1, Equipe Matériaux Avancés pour la Catalyse et la Santé, 8 rue de l’Ecole Normale, 34296 Montpellier Cedex 5, France;2. INSERM, U 844, Université Montpellier 1, CHU St-Eloi, 80 avenue Augustin Fliche, 34298 Montpellier Cedex 5, France |
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Abstract: | Poly(methacrylic acid)-b-poly(ethylene oxide) are double hydrophilic block copolymers, which are able to form micelles by complexation with a counter-polycation, such as poly-l-lysine. A study was carried out on the ability of the copolymers to interact with model membranes as a function of their molecular weights and as a function of pH. Different behaviors were observed: high molecular weight copolymers respect the membrane integrity, whereas low molecular weight copolymers with a well-chosen asymmetry degree can induce a membrane alteration. Hence by choosing the appropriate molecular weight, micelles with distinct membrane interaction behaviors can be obtained leading to different intracellular traffics with or without endosomal escape, making them interesting tools for cell engineering. Especially micelles constituted of low molecular weight copolymers could exhibit the endosomal escape property, which opens vast therapeutic applications. Moreover micelles possess a homogeneous nanometric size and show variable properties of disassembly at acidic pH, of stability in physiological conditions, and finally of cyto-tolerance. |
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Keywords: | DHBC, double hydrophilic block copolymers DLS, Dynamic Light Scattering DPPC, dipalmitoyl phosphatidylcholine DPX, p-xylene-bis-pyridinium bromide HPTS, 8-hydroxypyrene-1,3,6-trisulfonic acid MW, molecular weights PDI, polydispersity indice PEO, poly(ethylene oxide) PIC, polyion complex PMAA, poly(methacrylic acid) polymers RBC, red blood cells TEM, transmission electron microscope |
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