Lyophilization induces alterations in cryptococcal exopolysaccharide resulting in reduced antibody binding

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Abstract

The structural, antigenic, and immunological characterization of microbial polysaccharides requires purification that often involves detergent precipitation and lyophilization. Here we examine physicochemical changes induced by lyophilization on exopolysaccharide (EPS) of the pathogenic fungus Cryptococcus neoformans . Solution 1 H NMR reveals significant anomeric signal attenuation following lyophilization of native EPS while 1 H ssNMR shows few changes, suggesting diminished molecular motion and consequent broadening of 1 H NMR polysaccharide resonances. 13 C ssNMR, dynamic light scattering, and transmission electron microscopy show that, while native EPS has rigid molecular characteristics and contains small, loosely packed polysaccharide assemblies, lyophilized and resuspended EPS is disordered and contains larger dense rosette-like aggregates, suggesting that structural water molecules in the interior of the polysaccharide assemblies are removed during extensive lyophilization. Importantly, mAbs to C. neoformans polysaccharide binds the native EPS more strongly than lyophilized EPS. Together, these observations argue for caution when interpreting the biological and immunological attributes of polysaccharides that have been lyophilized to dryness.

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last seen: 2026-05-19T01:45:01.086888+00:00