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Immobilization/Stabilization of Acid Urease on Eupergit Supports

机译:酸性蛋白酶在Eupergit载体上的固定化/稳定化

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摘要

The adsorption capacity and immobilization rate of two Eupergit" supports for acid urease was studied by vaiying the ionic strength and enzyme preparation concentration in the immobilizing solution at pH 7. Eupergit C250 L yielded a series of derivatives with enzyme loadings (Y_(P/B)) ranging from 48 to 171 mg of bovine serum albumin equivalent (BSAE) per gram of dry support (ds). Use of drastic postimmobilization conditions at pH 9 for 3-9 days yielded a slight decrease (8-14%) in the initial activity of immobilized enzymes and a limited increase in the stabilization factor (1.1-1.5), as assessed by accelerated aging tests at 65°C. Further storage tests at 4°C in the wet state showed that the activity of several derivatives either stabilized or not was practically constant for as long as 547 days. Both free enzyme and immobilized acid urease derivatives exhibited a kinetic pattern of the Michae-lis-Menten type. Using the Eadie-Hofstee diagram, the specific ammonia formation rate constant for free (k_(cat)) or immobilized (k'_(cat)) enzyme resulted to be little affected by immobilization (k_(cat) ≈k'_(cat)≈ 18.86 ± 0.34 IU/mg BSAE), whereas the apparent Michaelis constant for immobilized enzymes exhibited a statistically significant increase at P < 0.05 from the intrinsic value (2.55 ± 0.14 mM) for free enzyme to 5.38 ± 0.87 mM as Y_(P/B) increased to 171 mg BSAE/g ds. By estimating the observable Thiele modulus (Φ_(bos)), the activity of the biocatalyst with the greatest enzyme loading at the lowest urea concentrations tested (0.833 mM) was reduced by a factor of about 2 due to internal diffusional limitations. By operating in the pseudofirst-order regime with immobilized derivatives at Y_(P/B) about 126 mg BSAE/g ds, their activity after grinding was no more limited by intraparticle diffusion and approached the value for free enzyme.
机译:通过在pH 7下固定溶液中的离子强度和酶制剂浓度,研究了两种Eupergit“载体对酸性脲酶的吸附能力和固定化率。EupergitC250 L产生了一系列带有酶负载的衍生物(Y_(P / B ))范围从每克干支持物(ds)48至171 mg牛血清白蛋白当量(BSAE)。在pH 9下剧烈固定后3-9天使用,可使牛血清白蛋白当量略有下降(8-14%)。固定化酶的初始活性和稳定化因子的有限增加(1.1-1.5)(通过65°C加速老化试验评估)。在4°C潮湿状态下进行的进一步储存测试表明,几种衍生物的活性均稳定是否稳定在547天之内,游离酶和固定化酸性脲酶衍生物均表现出Michae-lis-Menten型动力学模式,使用Eadie-Hofstee图,比氨形成速率游离酶(k_(cat))或固定化(k'_(cat))的酶几乎不受固定化的影响(k_(cat)≈k'_(cat)≈18.86±0.34 IU / mg BSAE),而当Y_(P / B)增加到171 mg BSAE / g ds时,固定化酶的表观米氏常数在P <0.05上显示出统计学上的显着增加,从游离酶的内在值(2.55±0.14 mM)到5.38±0.87 mM。通过估计可观察的蒂尔模量(Φ_(bos)),由于内部扩散限制,在最低尿素浓度(0.833 mM)下具有最大酶负载的生物催化剂的活性降低了约2倍。通过在假一级反应中使用固定化衍生物以Y_(P / B)约126 mg BSAE / g ds进行操作,其研磨后的活性不再受颗粒内扩散的限制,并接近游离酶的值。

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