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首页> 外文期刊>Bioprocess and Biosystems Engineering >Influence of mass transfer limitations on the enzymatic synthesis of β-actam antibiotics catalyzed by penicillin G acylase immobilized on glioxil-agarose
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Influence of mass transfer limitations on the enzymatic synthesis of β-actam antibiotics catalyzed by penicillin G acylase immobilized on glioxil-agarose

机译:传质限制对固定在吡咯琼脂-琼脂糖上的青霉素G酰基转移酶催化的β-内酰胺抗生素酶促合成的影响

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Mass transfer effects were investigated for the synthesis of ampicillin and amoxicillin, at pH 6.5 and 25 °C, catalyzed by penicillin G acylase immobilized on agarose. The influence of external mass transfer was analysed using different stirring rates, ranging form 200 to 800 rpm. Above 400 rpm, the film resistance may be neglected. Intra-particle diffusion limitation was investigated using biocatalysts prepared with different enzyme loads and agarose with different mean pore diameters. When agarose with 6, 8 and 10% of crosslinking were used, for the same enzyme load, substrates and products concentration profiles presented no expressive differences, suggesting pore diameter is not important parameter. An increase on enzyme load showed that when more than 90 IU of enzyme activity were used per mL of support, the system was influenced by intra-particle mass transfer. A reactive-diffusive model was used to estimate effective diffusivities of substrates and products.
机译:在固定于琼脂糖上的青霉素G酰基转移酶的催化下,研究了在pH 6.5和25°C下合成氨苄青霉素和阿莫西林的传质效应。使用不同的搅拌速度(200至800 rpm)分析了外部传质的影响。高于400 rpm,薄膜电阻可以忽略。使用不同的酶负荷和琼脂糖具有不同的平均孔径制备的生物催化剂研究了颗粒内扩散限制。当使用具有6%,8%和10%交联度的琼脂糖时,对于相同的酶负载,底物和产物的浓度曲线没有表达差异,表明孔径不是重要的参数。酶负荷的增加表明,每毫升支持物使用的酶活性超过90 IU时,系统受颗粒内传质的影响。反应扩散模型用于估计基材和产品的有效扩散率。

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