Efficient Synthesis of Glycosaminoglycan Analogs

被引:19
作者
Gao, Chengzhe [1 ,3 ]
Edgar, Kevin J. [2 ,3 ]
机构
[1] Virginia Tech, Dept Chem, Blacksburg, VA 24061 USA
[2] Virginia Tech, Dept Sustainable Biomat, Blacksburg, VA 24061 USA
[3] Virginia Tech, Macromol Innovat Inst, Blacksburg, VA 24061 USA
关键词
TEMPO-MEDIATED OXIDATION; N-CARBOXYMETHYL GROUPS; CHEMOENZYMATIC SYNTHESIS; CHONDROITIN SULFATE; HEPARAN-SULFATE; ACYL MIGRATION; AMINO-GROUPS; ARYL AZIDES; CELLULOSE; REDUCTION;
D O I
10.1021/acs.biomac.8b01150
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Glycosaminoglycans (GAGs) are among the most complex, biologically active polysaccharides in nature. The complexity of GAGs greatly impedes their synthesis, thus complicating the structure-property studies that are so necessary for us to understand the roles of GAGs in natural processes, in pathogen invasion, and to understand how to develop effective interventions, for example, to prevent undesired GAG hijacking by pathogens. Total synthesis of GAG oligomers from monosaccharide building blocks is useful, but incredibly labor-intensive, expensive, and inefficient. In this study, we report a regiospecific synthetic route to two types of designed GAG analogs by chemical modification of commercially available, inexpensive cellulose acetate. Cellulose acetate was first brominated, followed by azide displacement to introduce azides as the GAG amine precursors. The resulting 6-N-3 cellulose acetate was then saponified to liberate 6-OH groups. Subsequent oxidation of the liberated primary hydroxyl groups to carboxyl groups was smoothly effected by a TEMPO-catalyzed process. Finally, the azides were reduced to amines using an aqueous process, new to polysaccharide chemistry, employing reduction by dithiothreitol (DTT). Alternatively, another process new to polysaccharide chemistry could be employed to convert most of the azides to acetamido groups (mimicking those present, for example, in native hyaluronic acid) by reduction with thioacetic acid. All the intermediates and products were characterized by H-1 NMR, C-13 NMR, and FT-IR spectroscopy. This synthetic route provides access to GAG analogs that will be of great interest for exploring structure-property relationships in various biomedical applications.
引用
收藏
页码:608 / 617
页数:10
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