Affinity binding of antibodies to supermacroporous cryogel adsorbents with immobilized protein A for removal of anthrax toxin protective antigen

dc.contributor.authorIngavle, Ganesh C.
dc.contributor.authorBaillie, Les W.J.
dc.contributor.authorZheng, Yishan
dc.contributor.authorLis, Elzbieta K.
dc.contributor.authorSavina, Irina N.
dc.contributor.authorHowell, Carol A.
dc.contributor.authorMikhalovsky, Sergey V.
dc.contributor.authorSandeman, Susan R.
dc.creatorGanesh C., Ingavle
dc.date.accessioned2017-12-22T06:23:46Z
dc.date.available2017-12-22T06:23:46Z
dc.date.issued2015-05-01
dc.description.abstractAbstract Polymeric cryogels are efficient carriers for the immobilization of biomolecules because of their unique macroporous structure, permeability, mechanical stability and different surface chemical functionalities. The aim of the study was to demonstrate the potential use of macroporous monolithic cryogels for biotoxin removal using anthrax toxin protective antigen (PA), the central cell-binding component of the anthrax exotoxins, and covalent immobilization of monoclonal antibodies. The affinity ligand (protein A) was chemically coupled to the reactive hydroxyl and epoxy-derivatized monolithic cryogels and the binding efficiencies of protein A, monoclonal antibodies to the cryogel column were determined. Our results show differences in the binding capacity of protein A as well as monoclonal antibodies to the cryogel adsorbents caused by ligand concentrations, physical properties and morphology of surface matrices. The cytotoxicity potential of the cryogels was determined by an in vitro viability assay using V79 lung fibroblast as a model cell and the results reveal that the cryogels are non-cytotoxic. Finally, the adsorptive capacities of PA from phosphate buffered saline (PBS) were evaluated towards a non-glycosylated, plant-derived human monoclonal antibody (PANG) and a glycosylated human monoclonal antibody (Valortim®), both of which were covalently attached via protein A immobilization. Optimal binding capacities of 108 and 117 mg/g of antibody to the adsorbent were observed for PANG attached poly(acrylamide-allyl glycidyl ether) [poly(AAm-AGE)] and Valortim® attached poly(AAm-AGE) cryogels, respectively, This indicated that glycosylation status of Valortim® antibody could significantly increase (8%) its binding capacity relative to the PANG antibody on poly(AAm-AGE)-protien-A column (p < 0.05). The amounts of PA which remained in the solution after passing PA spiked PBS through PANG or Valortim bound poly(AAm-AGE) cryogel were significantly (p < 0.05) decreased relative to the amount of PA remained in the solution after passing through unmodified as well as protein A modified poly(AAm-AGE) cryogel columns, indicates efficient PA removal from spiked PBS over 60 min of circulation. The high adsorption capacity towards anthrax toxin PA of the cryogel adsorbents indicated potential application of these materials for treatment of Bacillus anthracis infection.en_US
dc.identifierDOI:10.1016/j.biomaterials.2015.01.039
dc.identifier.citationGanesh C. Ingavle, Les W.J. Baillie, Yishan Zheng, Elzbieta K. Lis, Irina N. Savina, Carol A. Howell, Sergey V. Mikhalovsky, Susan R. Sandeman, Affinity binding of antibodies to supermacroporous cryogel adsorbents with immobilized protein A for removal of anthrax toxin protective antigen, In Biomaterials, Volume 50, 2015, Pages 140-153en_US
dc.identifier.issn01429612
dc.identifier.urihttps://www.sciencedirect.com/science/article/pii/S0142961215000563
dc.identifier.urihttp://nur.nu.edu.kz/handle/123456789/3040
dc.language.isoenen_US
dc.publisherBiomaterialsen_US
dc.relation.ispartofBiomaterials
dc.rights.licenseCopyright © 2015 The Authors. Published by Elsevier Ltd.
dc.subjectSupermacroporous cryogelen_US
dc.subjectAnthrax toxin protective antigen (PA)en_US
dc.subjectProtein A affinity cryogelsen_US
dc.subjectAnthrax toxin specific monoclonal antibodiesen_US
dc.titleAffinity binding of antibodies to supermacroporous cryogel adsorbents with immobilized protein A for removal of anthrax toxin protective antigenen_US
dc.typeArticleen_US
elsevier.aggregationtypeJournal
elsevier.coverdate2015-05-01
elsevier.coverdisplaydateMay 2015
elsevier.endingpage153
elsevier.identifier.doi10.1016/j.biomaterials.2015.01.039
elsevier.identifier.eid1-s2.0-S0142961215000563
elsevier.identifier.piiS0142-9612(15)00056-3
elsevier.identifier.pubmedid25736504
elsevier.identifier.scopusid84932651434
elsevier.openaccess1
elsevier.openaccessarticletrue
elsevier.openaccessuserlicensehttp://creativecommons.org/licenses/by-nc-nd/4.0/
elsevier.openarchivearticlefalse
elsevier.startingpage140
elsevier.teaserPolymeric cryogels are efficient carriers for the immobilization of biomolecules because of their unique macroporous structure, permeability, mechanical stability and different surface chemical functionalities....
elsevier.volume50
workflow.import.sourcescience

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