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Modification of Cellulose-based Packaging Materials for Enzyme Immobilization

机译:纤维素固定化酶的包装材料的改性

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摘要

Active cellulose-based packaging materials were prepared by binding lysozyme to paper modified with anionic polyelectrolytes. Polyelectrolytes improve the paper binding capacity towards the positively charged lysozyme and play a protective role towards lysozyme activity during the paper-making process. The charge density of paper was increased by incorporating carboxymethylcellulose (CMC) or polygalacturonic acid (PGA). The presence of either CMC or PGA greatly increased the amount of bound lysozyme, and the stability of its binding towards buffers or towards non-ionic chaotropes which disrupt the three dimensional structure in macromolecules (urea, 8 M). Binding of lysozyme to modified papers was sensitive to anionic detergents (sodium dodecyl sulphate, 1%) and to non-chaotrope salts (NaCl, 0.5M). These data provide information about the nature of the interactions between the protein and the various types of paper, and provide insights on how to preserve the activity of lysozyme-loaded paper. The polymers used for lysozyme immobilization were found to affect only marginally the structural and functional properties of the antimicrobial protein, and to facilitate the recovery of structural features of the protein after heat treatment. Presence of a negative polyelectrolyte (and of CMC in particular) improves the thermal stability of the protein, making it resistant to thermal inactivation, even under the conditions used for drying processes without compromising the paper's mechanical properties. The activity measurements showed that paper-bound lysozyme retains its lytic (and therefore, antimicrobial) activity against the cell walls of Micrococcus lysodeikticus, the target microrganism used as standard for lysozyme bioassays.
机译:活性纤维素基包装材料是通过将溶菌酶结合到阴离子聚电解质改性的纸上而制得的。聚电解质提高了纸张对带正电的溶菌酶的结合能力,并在造纸过程中对溶菌酶的活性起到了保护作用。通过加入羧甲基纤维素(CMC)或聚半乳糖醛酸(PGA),可以提高纸张的电荷密度。 CMC或PGA的存在极大地增加了结合的溶菌酶的量,并增加了其与缓冲液或与非离子型离液序列高聚物的结合的稳定性,从而破坏了大分子(尿素,8 M)的三维结构。溶菌酶与改性纸的结合对阴离子去污剂(十二烷基硫酸钠,1%)和非离液剂盐(NaCl,0.5M)敏感。这些数据提供了有关蛋白质与各种类型纸张之间相互作用性质的信息,并提供了有关如何保持溶菌酶负载纸张活性的见解。发现用于溶菌酶固定化的聚合物仅轻微地影响抗微生物蛋白的结构和功能特性,并促进热处理后蛋白的结构特征的恢复。负聚电解质(特别是CMC)的存在改善了蛋白质的热稳定性,即使在干燥过程中使用的条件下,也能抵抗热失活,而不会损害纸张的机械性能。活性测量表明,纸结合的溶菌酶保留了其对溶菌微球菌(Micrococcus lysodeikticus)细胞壁的裂解(因此具有抗微生物)活性,溶菌酶是用作溶菌酶生物测定标准的目标微生物。

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  • 来源
    《Packaging Technology and Science》 |2010年第1期|47-57|共11页
  • 作者单位

    Dipartimento di Scienze e Tecnologie Alimentari e Microbiologiche, Universita di Milano, Via Celoria, 2, 20133 Milan, Italy;

    Stazione Sperimentale Carta, Cartoni e Paste per Carta, Piazza L. da Vinci, 16, 20133 Milan, Italy;

    Dipartimento di Scienze Molecolari Agro-Alimentari, Universita di Milano, Via Celoria, 2, 20133 Milan, Italy;

    Dipartimento di Scienze Molecolari Agro-Alimentari, Universita di Milano, Via Celoria, 2, 20133 Milan, Italy;

    Dipartimento di Scienze e Tecnologie Alimentari e Microbiologiche, Universita di Milano, Via Celoria, 2, 20133 Milan, Italy;

    Dipartimento di Scienze e Tecnologie Alimentari e Microbiologiche, Universita di Milano, Via Celoria, 2, 20133 Milan, Italy;

    Dipartimento di Scienze Molecolari Agro-Alimentari, Universita di Milano, Via Celoria, 2, 20133 Milan, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    food packaging; paper; cellulose fibers; anionic polyelectrolytes; lysozyme adsorption; release;

    机译:食品包装;纸;纤维素纤维;阴离子聚电解质;溶菌酶吸附;释放;
  • 入库时间 2022-08-17 13:29:36

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