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Biocolloids with ordered urease multilayer shells as enzymatic reactors

机译:具有顺序的脲酶多层壳的生物胶体作为酶促反应器

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The preparation of biocolloids with organized enzyme-containing multilayer shells for exploitation as colloidal enzymatic nanoreactors is described. Urease multilayers were assembled onto submicrometer-sized polystyrene spheres by the sequential adsorption of urease and polyelectrolyte, in a predetermined order, utilizing electrostatic interactions for layer growth. The catalytic activity of the biocolloids increased proportionally with the number of urease layers deposited on the particles, demonstrating that biocolloid particles with tailored enzymatic activities can be produced. It was further found that precoating the latex spheres with nanoparticles (40-nm silica or 12-nm magnetite) enhanced both the stability (with respect to adsorption) and enzymatic activity of the urease multilayers. The presence of the magnetite nanoparticle coating also provided a magnetic function that allowed the biocolloids to be easily and rapidly separated with a permanent magnet. The fabrication of such colloids opens new avenues for the application of bioparticles and represents a promising route for the creation of complex catalytic particles.
机译:描述了具有带组织的含酶的多层壳的生物胶体的制备,以用作胶体酶纳米反应器。通过将脲酶和聚电解质按预定顺序依次吸附,利用静电相互作用使层生长,将脲酶多层膜组装到亚微米尺寸的聚苯乙烯球上。生物胶体的催化活性与沉积在颗粒上的脲酶层的数量成比例地增加,表明可以产生具有定制酶活性的生物胶体颗粒。进一步发现,用纳米颗粒(40-nm二氧化硅或12-nm磁铁矿)预涂胶乳球既提高了脲酶多层的稳定性(相对于吸附),又提高了酶活性。磁铁矿纳米颗粒涂层的存在还提供了磁性功能,该磁性功能使生物胶体易于被永磁体快速分离。这种胶体的制造为生物颗粒的应用开辟了新途径,并代表了创建复杂催化颗粒的有前途的途径。

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