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Effect of Ca<sup>2+</sup>, Ba<sup>2+</sup>, and Sr<sup>2+</sup> on Alginate Microbeads

Biomacromolecules · 2006 · Vol. 7(5) · pp. 1471–1480
Ýrr MørchIvan DonatiBerit L. StrandGudmund Skjåk‐Bræk

Abstract

Microcapsules of alginate cross-linked with divalent ions are the most common system for cell immobilization. In this study, we wanted to characterize the effect of different alginates and cross-linking ions on important microcapsule properties. The dimensional stability and gel strength increased for high-G alginate gels when exchanging the traditional Ca2+ ions with Ba2+. The use of Ba2+ decreased the size of alginate beads and reduced the permeability to immunoglobulin G. Strontium gave gels with characteristics lying between calcium and barium. Interestingly, high-M alginate showed an opposite behavior in combination with barium and strontium as these beads were larger than beads of calcium-alginate and tended to swell more, also resulting in increased permeability. Binding studies revealed that different block structures in the alginate bind the ions to a different extent. More specifically, Ca2+ was found to bind to G- and MG-blocks, Ba2+ to G- and M-blocks, and Sr2+ to G-blocks solely.

Pancreatic function and diabetes3D Printing in Biomedical ResearchTissue Engineering and Regenerative MedicineStrontiumBariumDivalentChemistryCalcium alginateCalciumIonPermeability (electromagnetism)Nuclear chemistryChemical engineering

MeSH terms

AlginatesCalcium ChlorideCations, DivalentChloridesCircular DichroismCross-Linking ReagentsGelsHexuronic AcidsImmunoglobulin GLaminariaPermeabilitySodium ChlorideSolutionsStress, MechanicalStrontium
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