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Synthesis of Azide-Modified Chondroitin Sulfate Precursors: Substrates for “Click”- Conjugation with Fluorescent Labels and Oligonucleotides
Author(s) -
Satish Jadhav,
Vijay Gulumkar,
Prasannakumar Deshpande,
Eleanor T. Coffey,
Harri Lönnberg,
Pasi Virta
Publication year - 2018
Publication title -
bioconjugate chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.279
H-Index - 172
eISSN - 1520-4812
pISSN - 1043-1802
DOI - 10.1021/acs.bioconjchem.8b00317
Subject(s) - chemistry , azide , oligonucleotide , chondroitin sulfate , click chemistry , fluorescence , combinatorial chemistry , organic chemistry , biochemistry , dna , glycosaminoglycan , physics , quantum mechanics
Azidopropyl-modified precursors of chondroitin sulfate (CS) tetrasaccharides have been synthesized, which, after facile conversion to final CS structures, may be conjugated with alkyne-modified target compounds by a one-pot "click"-ligation. RP HPLC was used for the monitoring of the key reaction steps (protecting group manipulation and sulfation) and purification of the CS precursors (as partially protected form, bearing the O-Lev, O-benzoyl, and N-trichloroacetyl groups and methyl esters). Subsequent treatments with aqueous NaOH, concentrated ammonia, and acetic anhydride (i.e., global deprotection and acetylation of the galactosamine units) converted the precursors to final CS structures. The azidopropyl group was exposed to a strain-promoted azide-alkyne cycloaddition (SPAAC) with a dibenzylcyclooctyne-modified carboxyrhodamine dye to give labeled CSs. Conjugation with a 5'-cyclooctyne-modified oligonucleotide was additionally carried out to show the applicability of the precursors for the synthesis of biomolecular hybrids.

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