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Enhancements in sugar immobilization in polymeric macroporous matrices for affinity capture
Authors:Josiane Ferreira da Silva  Débora Lemos da Silva  Rui Gomes Nascimento  Lizzy Ayra Alcântara Veríssimo  Cristiane Martins Veloso  Renata Cristina Ferreira Bonomo  Rafael da Costa Ilhéu Fontan
Affiliation:1. Processes Engineering Laboratory, State University of Southwest of Bahia, Itapetinga, Bahia, Brazil 45700-000;2. Food Science Department, Federal University of Lavras, Lavras, Minas Gerais, 37520-000 Brazil
Abstract:The use of macroporous monolithic matrices in the purification of biocompounds is constantly growing and developing. In this work, the objective was to optimize the quantity of N-acetyl-D-glucosamine (D-GlcNAc) immobilized on the surface of macroporous polymeric cryogels for capture of lectins from less clarified solutions. Surface response methodology was applied and it was observed that the immobilization temperature of the glutaraldehyde (GLU) and the D-GlcNAc concentration influenced the amount of sugar immobilized. The matrices produced with 1.1% of allyl glycidyl ether were functionalized by GLU. Optimal maximum condition was obtained with mean value of 160.39 ± 26.38 mg of D-GlcNAc immobilized per gram of dry cryogel. Characterization analyses of the matrices showed that the activation process was effective, maintaining the macroporous structure and physical characteristics. The adsorbents produced were tested for capture of lectins from a crude protein solution of barley. At tested conditions, adsorbent capture around 11% of protein in solution but reduce the hemaglutinating capacity in 40%, demonstrating its selectivity. The cryogels functionalized with D-GlcNAc present potential for use in capture compounds by affinity with carbohydrates, such as lectins. © 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019 , 136, 47956.
Keywords:carbohydrate  CCRD  cryogel  epoxy  optimization  polyacrylamide
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