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Amphiphilic ionic oligomers as functionalizable stabilizers for gene therapy nanoparticles

Authors :
Schmid, M.
Mitrach, F.
(0000-0001-7390-3575) Wenzel, B.
Schulz-Siegmund, M.
Hacker, M.-C.
Schmid, M.
Mitrach, F.
(0000-0001-7390-3575) Wenzel, B.
Schulz-Siegmund, M.
Hacker, M.-C.
Source :
DPhG-Jahrestagung, 28.09.-01.10.2021, Leipzig, Deutschland
Publication Year :
2021

Abstract

Inorganic nano drug delivery vehicles require the use of an appropriate organic stabilizer. Examples are uncharged thiol containing macromolecules or polymers for gold NPs [1] , positively charged polyethylenimines for metals [2], or carboxylate bearing polymers for cationic calcium phosphates [3].To match a variety of demands, including ion interaction, solubility, good synthetic availability, cellular uptake and endosomal escape, we present the synthesis of amphiphilic functionalizable terpolymers. Our work is based on a broad experience in the synthesis and application of free radical synthesis of maleic anhydride-containing cooligomers. [4],[5],[6] The shown terpolymers [Fig. 1] consist of tetradecylacrylate (14), methoxy-poly(ethylenglycol) methacrylate (PEG, Mn 950) and maleic anhydride (MA). The addition of filler monomers such as 4-acryloylmorpholine (AMO) or N-vinylpyrrolidone (NVP) has also been realized. Reactive anhydride moieties allowed for accessible functionalization by amide formation e.g. with Cy5 amine as fluorescent label or with the azide linker (11-azido-3,6,9-trioxaundecan-1-amine) which renders the oligomers accessible for any kind of Cu (I) catalysed azide alkyne click reaction. Figure 1: A Anhydride-containing terpolymer synthesis and B illustration of stabilization of in situ generated siRNA-loaded calcium phosphate nanoparticles. Anhydride content and intactness were determined by conductometric titration. 1H-NMR was used to quantify comonomer integration and size exclusion chromatography for molecular weight analysis. Terpolymer synthesis yields ranged between 24.1 and 51.1%, and molecular weights between 4500 and 6500 Da. MA incorporation was controlled by the reaction feed and anhydride intactness in the oligomers was higher than 60% (o14PEGMA (4/4/10)). Effects of comonomer feed on integration in the resulting purified oligomers are presented. Pristine oligomers were transferred to the respective polyanionic ammonia salt. The here pre

Details

Database :
OAIster
Journal :
DPhG-Jahrestagung, 28.09.-01.10.2021, Leipzig, Deutschland
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1415611658
Document Type :
Electronic Resource