Literature DB >> 10644951

Inhomogeneous alginate gel spheres: an assessment of the polymer gradients by synchrotron radiation-induced X-ray emission, magnetic resonance microimaging, and mathematical modeling.

B Thu1, O Gåserød, D Paus, A Mikkelsen, G Skjåk-Braek, R Toffanin, F Vittur, R Rizzo.   

Abstract

It has been previously demonstrated that calcium alginate gels prepared by dialysis often exhibit a concentration inhomogeneity being the polymer concentration considerably lower in the center of the gel than at the edges. Inhomogeneity may be a preferred structure in microcapsules due to low porosity and higher stability so that it is interesting to evaluate the polymer gradient in spherically symmetrical small alginate beads (1.0-0.7 mm diameter) obtained in different conditions. In this paper, two complementary techniques have been used to investigate this aspect. The concentration gradient of alginate has been analyzed by measuring both the spatial distribution of calcium ions in sections of alginate gel spheres, by means of x-ray fluorescence spectroscopy, and the T2 relaxation behavior on intact gel beads using magnetic resonance microimaging. The experimentally determined gradients from three-dimensional gels provide data to reevaluate the parameter estimates in the recently reported mathematical model for alginate gel formation (A. Mikkaelsen and A. Elgsaeter, Biopolymers, 1995, Vol. 36, pp. 17-41). The model may account for the gels being less inhomogeneous when nongelling sodium or magnesium ions are added during gelation.

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Year:  2000        PMID: 10644951     DOI: 10.1002/(SICI)1097-0282(200001)53:1<60::AID-BIP6>3.0.CO;2-F

Source DB:  PubMed          Journal:  Biopolymers        ISSN: 0006-3525            Impact factor:   2.505


  15 in total

1.  Encapsulation of human islets in novel inhomogeneous alginate-ca2+/ba2+ microbeads: in vitro and in vivo function.

Authors:  Meirigeng Qi; Berit Løkensgard Strand; Yrr Mørch; Igor Lacík; Yong Wang; Payam Salehi; Barbara Barbaro; Antonio Gangemi; Joseph Kuechle; Travis Romagnoli; Michael A Hansen; Lisette A Rodriguez; Enrico Benedetti; David Hunkeler; Gudmund Skjåk-Braek; José Oberholzer
Journal:  Artif Cells Blood Substit Immobil Biotechnol       Date:  2008

Review 2.  Towards a medically approved technology for alginate-based microcapsules allowing long-term immunoisolated transplantation.

Authors:  H Zimmermann; D Zimmermann; R Reuss; P J Feilen; B Manz; A Katsen; M Weber; F R Ihmig; F Ehrhart; P Gessner; M Behringer; A Steinbach; L H Wegner; V L Sukhorukov; J A Vásquez; S Schneider; M M Weber; F Volke; R Wolf; U Zimmermann
Journal:  J Mater Sci Mater Med       Date:  2005-06       Impact factor: 3.896

3.  Handheld skin printer: in situ formation of planar biomaterials and tissues.

Authors:  Navid Hakimi; Richard Cheng; Lian Leng; Mohammad Sotoudehfar; Phoenix Qing Ba; Nazihah Bakhtyar; Saeid Amini-Nik; Marc G Jeschke; Axel Günther
Journal:  Lab Chip       Date:  2018-05-15       Impact factor: 6.799

4.  Non-invasive evaluation of alginate/poly-l-lysine/alginate microcapsules by magnetic resonance microscopy.

Authors:  Ioannis Constantinidis; Samuel C Grant; Susanne Celper; Isabel Gauffin-Holmberg; Kristina Agering; Jose A Oca-Cossio; Jonathan D Bui; Jeremy Flint; Christine Hamaty; Nicholas E Simpson; Stephen J Blackband
Journal:  Biomaterials       Date:  2007-01-08       Impact factor: 12.479

5.  Preparation and Characterization of Alginate Microparticles Containing a Model Protein for Oral Administration in Gnotobiotic European Sea Bass (Dicentrarchus labrax) Larvae.

Authors:  Eamy Nursaliza Yaacob; Jens Goethals; Aline Bajek; Kristof Dierckens; Peter Bossier; Bruno G De Geest; Daisy Vanrompay
Journal:  Mar Biotechnol (NY)       Date:  2017-06-22       Impact factor: 3.619

6.  Cross-linking properties of alginate gels determined by using advanced NMR imaging and Cu(2+) as contrast agent.

Authors:  B Manz; M Hillgärtner; H Zimmermann; D Zimmermann; F Volke; U Zimmermann
Journal:  Eur Biophys J       Date:  2003-09-16       Impact factor: 1.733

7.  Insulin secretion dynamics of free and alginate-encapsulated insulinoma cells.

Authors:  Shing-Yi Cheng; Ioannis Constantinidis; Athanassios Sambanis
Journal:  Cytotechnology       Date:  2006-11-16       Impact factor: 2.058

8.  Ionotropic Gelation Fronts in Sodium Carboxymethyl Cellulose for Hydrogel Particle Formation.

Authors:  William N Sharratt; Carlos G Lopez; Miriam Sarkis; Gunjan Tyagi; Róisín O'Connell; Sarah E Rogers; João T Cabral
Journal:  Gels       Date:  2021-04-12

9.  Alginate microencapsulated hepatocytes optimised for transplantation in acute liver failure.

Authors:  Suttiruk Jitraruch; Anil Dhawan; Robin D Hughes; Celine Filippi; Daniel Soong; Christina Philippeos; Sharon C Lehec; Nigel D Heaton; Maria S Longhi; Ragai R Mitry
Journal:  PLoS One       Date:  2014-12-01       Impact factor: 3.240

Review 10.  Alginate-based encapsulation of cells: past, present, and future.

Authors:  Heiko Zimmermann; Stephen G Shirley; Ulrich Zimmermann
Journal:  Curr Diab Rep       Date:  2007-08       Impact factor: 5.430

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