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Precisely Defined Aptamer-b-Poly(phosphodiester) Conjugates Prepared by Phosphoramidite Polymer Chemistry
Author(s) -
Capucine Loth,
Laurence Charles,
JeanFrançois Lutz,
Maria Nerantzaki
Publication year - 2021
Publication title -
acs macro letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.966
H-Index - 92
ISSN - 2161-1653
DOI - 10.1021/acsmacrolett.1c00164
Subject(s) - aptamer , phosphoramidite , phosphodiester bond , monomer , polymer , bioconjugation , chemistry , ethylene glycol , combinatorial chemistry , circular dichroism , click chemistry , pegylation , covalent bond , oligonucleotide , organic chemistry , dna , polyethylene glycol , stereochemistry , rna , biochemistry , genetics , gene , biology
Uniform conjugates combining a DNA aptamer (either anti-MUC1 or ATP aptamer) and a synthetic polymer segment were synthesized by automated phosphoramidite chemistry. This multistep growth polymer chemistry enables the use of both natural (i.e., nucleoside phosphoramidites) and non-natural monomers (e.g., alkyl- and oligo(ethylene glycol)-phosphoramidites). Thus, in the present work, six different aptamer-polymer conjugates were synthesized and characterized by ion-exchange HPLC, circular dichroism spectroscopy, and electrospray mass spectrometry. All these methods evidenced the formation of uniform molecules with precisely controlled chain-length and monomer sequences. Furthermore, aptamer folding was not affected by polymer bioconjugation. The method described herein is straightforward and allows covalent attachment of homopolymers and copolymers to biofunctional DNA aptamers.

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