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Biochemical applications of ultrathin films of enzymes, polyions and DNA

机译:酶,聚离子和DNA超薄膜的生化应用

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This feature article summarizes recent applications of ultrathin films of enzymes and DNA assembled layer-by-layer (LbL). Using examples mainly from our own research, we focus on systems developed for biocatalysis and biosensors for toxicity screening. Enzyme-poly(L-lysine) (PLL) films, especially when stabilized by crosslinking, can be used for biocatalysis at unprecedented high temperatures or in acidic or basic solutions on electrodes or sub-micron sized beads. Such films have bright prospects for chiral synthesis and biofuel cells. Excellent bioactivity and retention of enzyme structure in these films facilitates their use in detailed kinetic studies. Biosensors and arrays employing DNA-enzyme films show great promise in predicting genotoxicity of new drug and chemical product candidates. These devices combine metabolic biocatalysis, reactive metabolite-DNA reactions, and DNA damage detection. Catalytic voltammetry or electrochemiluminescence (ECL) can be used for high throughput arrays utilizing multiple LbL "spots" of DNA, enzyme and metallopolymer. DNA-enzyme films can also be used to produce nucleobase adduct toxicity biomarkers for detection by LC-MS. These approaches provide valuable high throughput tools for drug and chemical product development and toxicity prediction.
机译:这篇专题文章总结了酶和DNA逐层组装(LbL)的超薄膜的最新应用。主要使用我们自己的研究中的示例,我们将重点放在为生物催化和用于毒性筛选的生物传感器开发的系统上。酶-聚(L-赖氨酸)(PLL)膜,尤其是通过交联稳定的膜,可以在前所未有的高温下或在电极或亚微米级微珠上的酸性或碱性溶液中用于生物催化。这样的膜对于手性合成和生物燃料电池具有广阔的前景。这些薄膜具有出色的生物活性和酶结构保留能力,有助于其在详细的动力学研究中使用。使用DNA酶膜的生物传感器和阵列在预测新药和化学产品候选物的遗传毒性方面显示出巨大的希望。这些设备结合了代谢生物催化,反应性代谢物-DNA反应和DNA损伤检测。催化伏安法或电化学发光法(ECL)可用于利用DNA,酶和金属聚合物的多个LbL“斑点”的高通量阵列。 DNA酶膜也可用于产生可通过LC-MS检测的核碱基加合物毒性生物标志物。这些方法为药物和化学产品开发以及毒性预测提供了有价值的高通量工具。

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