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Publication

Contrast Matching Biopolymers: A SANS-Based Approach to Structural Characterization of Chitosan

by Chathurika J Kosgallana, Wellington C Leite, Yue Yuan, Flora Meilleur
Publication Type
Conference Paper
Book Title
Proceedings of the 2025 Biocatalyst Interactions with Gases (BIG) Research Symposium
Publication Date
Page Numbers
1 to 7
Publisher Location
Netherlands
Conference Name
Biocatalyst Interactions with Gases (BIG) Research Symposium
Conference Location
Raleigh, North Carolina, United States of America
Conference Sponsor
Novo Nordisk Foundation
Conference Date
-

Immobilizing enzymes in polysaccharide-based matrices has been shown to improve both their stability and their catalytic efficiency. Among available materials, chitosan was selected for its abundance, biocompatibility, and versatility in a range of applications. While the broader aim of this work is to study chitosan as a matrix for immobilizing carbonic anhydrase (CA) for CO₂ capture, this study focused on determining the contrast match point (CMP) of hydrogenated and deuterated chitosan in D₂O:H₂O mixtures to enable future structural investigations using small-angle neutron scattering (SANS).
Previous work successfully synthesized deuterated chitosan from Rhizopus oryzae mycelia and assessed the degree of deuteration using Fourier-transform infrared spectroscopy (FTIR) and nuclear magnetic resonance (NMR). Building on this foundation, the current study determined the CMPs of both H-chitosan and D-chitosan by performing SANS measurements across a range of D₂O:H₂O solvent contrasts. The extracted CMPs for both forms correlated well with their respective calculated scattering length densities (SLDs), validating the experimental approach. These results establish a critical reference for selective contrast matching in future SANS studies of carbonic anhydrase immobilized in chitosan matrices, enabling detailed structural analysis of enzyme–matrix interactions.