Enzymatic synthesis of highly flexible lignin cross-linked succinyl-chitosan hydrogels reinforced with reed cellulose fibres

被引:19
作者
Haske-Cornelius, O. [1 ]
Bischof, S. [1 ]
Beer, B. [1 ]
Bartolome, M. Jimenez [1 ]
Olakanmi, E. Olatunde [2 ]
Mokoba, M. [3 ]
Guebitz, G. M. [1 ]
Nyanhongo, G. S. [1 ]
机构
[1] Univ Nat Resources & Life Sci, Inst Environm Biotechnol, Konrad Lorenz Str 20, A-3430 Tulln, Austria
[2] Botswana Int Univ Sci & Technol, Coll Engn & Technol, Private Bag 16, Palapye, Botswana
[3] Botswana Int Univ Sci & Technol, Coll Sci, Private Bag 16, Palapye, Botswana
关键词
Succinyl-chitosan hydrogels; Laccases; Synthesis; Reed cellulose fibres; Chitosan; Lignosulfonates; Oxygen scavenger; LACCASE; OXYGEN; FUNCTIONALIZATION; LIGNOSULFONATES; ANTIOXIDANT; DERIVATIVES; COATINGS; LINKING;
D O I
10.1016/j.eurpolymj.2019.08.028
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
This study reports on a novel strategy for laccase mediated synthesis of highly flexible succinyl chitosan (SucCTS) hydrogels cross-linked with lignosulfonates whose mechanical properties were further enhanced by incorporating glycerol as a plasticizer and reed cellulose fibres as reinforcement agent. Laccase enzyme was used to oxidize lignosulfonates resulting in the formation of phenoxyl radicals that reacted with -NH2 groups SucCTS either through radical coupling or Michaels addition. The oxidation of lignosulfonates resulted in 51 decrease in lignosulfonate -OH groups and 74% SucCTS-NH2 groups, and concomitant gradual increase in molecular weight of the copolymer from an average 15 kDa to above 600 kDa. Incorporation of glycerol as plasticizer prevented stiffness, shrinking and random breaking of the hydrogels, as evidenced by the remarkable increase in elongation at break (up to160%) of the hydrogels. The laccase remained active and completely reduced oxygen to water in a closed system, making it suitable for application as oxygen barrier system. This study therefore demonstrate an environmentally friendly process for synthesizing 100% biobased (chitosan based hydrogels) using naturally occurring lignin as cross-linking agent and laccase as biocatalyst.
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页数:10
相关论文
共 46 条
[1]   Functionalization of chitosan by laccase-catalyzed oxidation of ferulic acid and ethyl ferulate under heterogeneous reaction conditions [J].
Aljawish, Abdulhadi ;
Chevalot, Isabelle ;
Piffaut, Bernadette ;
Rondeau-Mouro, Corinne ;
Girardin, Michel ;
Jasniewski, Jordane ;
Scher, Joel ;
Muniglia, Lionel .
CARBOHYDRATE POLYMERS, 2012, 87 (01) :537-544
[2]   Influence of structure on dye degradation with laccase mediator systems [J].
Almansa, E ;
Kandelbauer, A ;
Pereira, L ;
Cavaco-Paulo, A ;
Guebitz, GM .
BIOCATALYSIS AND BIOTRANSFORMATION, 2004, 22 (5-6) :315-324
[3]   Enzymatic synthesis of catechol and hydroxyl-carboxic acid functionalized chitosan microspheres for iron overload therapy [J].
Brzonova, Ivana ;
Steiner, Walter ;
Zankel, Armin ;
Nyanhongo, Gibson S. ;
Guebitz, Georg M. .
EUROPEAN JOURNAL OF PHARMACEUTICS AND BIOPHARMACEUTICS, 2011, 79 (02) :294-303
[4]   Evaluation of the Potential of Fungal and Plant Laccases for Active-Packaging Applications [J].
Chatterjee, Robin ;
Johansson, Kristin ;
Jarnstrom, Lars ;
Jonsson, Leif J. .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2011, 59 (10) :5390-5395
[5]   Regenerated cellulose fibre reinforced casein films: Effect of plasticizer and fibres on the film properties [J].
Cho, Sung-Woo ;
Skrifvars, Mikael ;
Hemanathan, Kumar ;
Mahimaisenan, Pirabasenan ;
Adekunle, Kayode .
MACROMOLECULAR RESEARCH, 2014, 22 (07) :701-709
[6]   Sustainable Ethanol Production from Common Reed (Phragmites australis) through Simultaneuos Saccharification and Fermentation [J].
Cotana, Franco ;
Cavalaglio, Gianluca ;
Pisello, Anna Laura ;
Gelosia, Mattia ;
Ingles, David ;
Pompili, Enrico .
SUSTAINABILITY, 2015, 7 (09) :12149-12163
[7]   Mild alkaline pre-treatments loosen fibre structure enhancing methane production from biomass crops and residues [J].
Di Girolamo, Giuseppe ;
Bertin, Lorenzo ;
Capecchi, Lorenzo ;
Ciavatta, Claudio ;
Barbanti, Lorenzo .
BIOMASS & BIOENERGY, 2014, 71 :318-329
[8]   Cellulose Nanofiber-Reinforced Chitosan Hydrogel Composites for Intervertebral Disc Tissue Repair [J].
Doench, Ingo ;
Tuan Ahn Tran ;
David, Laurent ;
Montembault, Alexandra ;
Viguier, Eric ;
Gorzelanny, Christian ;
Sudre, Guillaume ;
Cachon, Thibaut ;
Louback-Mohamed, Malika ;
Horbelt, Niels ;
Peniche-Covas, Carlos ;
Osorio-Madrazo, Anayancy .
BIOMIMETICS, 2019, 4 (01)
[9]   Banning toxic heavy-metal catalysts from paints: enzymatic cross-linking of alkyd resins [J].
Greimel, Katrin J. ;
Perz, Veronika ;
Koren, Klaus ;
Feola, Roland ;
Temel, Armin ;
Sohar, Christian ;
Acero, Enrique Herrero ;
Klimant, Ingo ;
Guebitz, Georg M. .
GREEN CHEMISTRY, 2013, 15 (02) :381-388
[10]   Chitosan composite hydrogels reinforced with natural clay nanotubes [J].
Huang, Biao ;
Liu, Mingxian ;
Zhou, Changren .
CARBOHYDRATE POLYMERS, 2017, 175 :689-698