Production of isotopically enriched high molecular weight hyaluronic acid and characterization by solid-state NMR

Author:

Rampratap PushpaORCID,Lasorsa AlessiaORCID,Perrone Barbara,van der Wel Patrick C.A.ORCID,Walvoort Marthe T.C.ORCID

Abstract

AbstractHyaluronic acid (HA) is a naturally occurring polysaccharide that is abundant in the extracellular matrix (ECM) of all vertebrate cells. HA-based hydrogels have attracted great interest for biomedical applications due to their high viscoelasticity and biocompatibility. In both ECM and hydrogel applications, high molecular weight (HMW)-HA can absorb a large amount of water to yield matrices with a high level of structural integrity. To understand the molecular underpinnings of structural and functional properties of HA-containing hydrogels, few techniques are available. Nuclear magnetic resonance (NMR) spectroscopy is a powerful tool for such studies, e.g.13C NMR measurements can reveal the structural and dynamical features of (HMW) HA. However, a major obstacle to13C NMR is the low natural abundance of13C, necessitating the generation of HMW-HA that is enriched with13C isotopes. Here we present a convenient method to obtain13C- and15N-enriched HMW-HA in good yield fromStreptococcus equisubsp. zooepidemicus. The labeled HMW-HA has been characterized by solution and magic angle spinning (MAS) solid-state NMR spectroscopy, as well as other methods. These results will open new ways to study the structure and dynamics of HMW-HA-based hydrogels, and interactions of HMW-HA with proteins and other ECM components, using advanced NMR techniques.

Publisher

Cold Spring Harbor Laboratory

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