Synthesis and characterisation of magnetised Dacron-heparin composite employed for antithrombin affinity purification

•Magnetised Dacron microparticles exhibited a magnetic behaviour.•Heparin was immobilised on these microparticles, yielding a magnetic composite.•This composite was efficacious for human plasma antithrombin purification.•The properties of this composite were preserved after 10 reuses and for 2 years...

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Veröffentlicht in:Journal of chromatography. B, Analytical technologies in the biomedical and life sciences Analytical technologies in the biomedical and life sciences, 2016-12, Vol.1038, p.73-79
Hauptverfasser: Mercês, Aurenice Arruda Dutra das, Silva, Ricardo de Souza, Silva, Karciano José Santos, Maciel, Jackeline da Costa, Oliveira, Givanildo Bezerra, Buitrago, Davian Martinez, de Aguiar, José Albino Oliveira, de Carvalho-Júnior, Luiz Bezerra
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Sprache:eng
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Zusammenfassung:•Magnetised Dacron microparticles exhibited a magnetic behaviour.•Heparin was immobilised on these microparticles, yielding a magnetic composite.•This composite was efficacious for human plasma antithrombin purification.•The properties of this composite were preserved after 10 reuses and for 2 years. Human antithrombin is a blood derivative widely used in the treatment of coagulation dysfunction. Affinity chromatography using heparin (HEP) derivatives is usually used for antithrombin purification. In this study, an affinity procedure based on a magnetic Dacron-HEP composite is proposed. Dacron was firstly converted to Dacron-hydrazide and magnetised by co-precipitation with of Fe2+/Fe3+ (mDAC). HEP was activated by carbodiimide and N-hydroxysuccinimide and covalently linked to mDAC (mDAC-HEP). EDX and infrared spectra analyses confirmed each synthesis step of mDAC-HEP. This composite exhibited superparamagnetism behaviour. Human plasma was incubated with mDAC-HEP (fresh and stored over a long period) and washed with phosphate buffer containing increasing concentrations of NaCl. Human plasma antithrombin activity was reduced by approximately 20% in the presence of the 1.0M NaCl fraction, and this eluate was able to prolong coagulation time (aPTT) using both preparations. Electrophoresis of the eluates revealed bands corresponding to the expected size of antithrombin (58kDa). The mDAC-HEP particles are reusable. This method presents the following advantages: easy, low-cost synthesis of the composite, magnet-based affinity purification steps, and reusability.
ISSN:1570-0232
1873-376X
DOI:10.1016/j.jchromb.2016.10.039