Longevity of Raw and Lyophilized Crude Urease Extracts

N. Javadi, H. Khodadadi Tirkolaei, N. Hamdan, E. Kavazanjian
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引用次数: 7

Abstract

The stability (longevity of activity) of three crude urease extracts was evaluated in a laboratory study as part of an effort to reduce the cost of urease for applications that do not require high purity enzyme. A low-cost, stable source of urease will greatly facilitate engineering applications of urease such as biocementation of soil. Inexpensive crude extracts of urease have been shown to be effective at hydrolyzing urea for carbonate precipitation. However, some studies have suggested that the activity of a crude extract may decrease with time, limiting the potential for its mass production for commercial applications. The stability of crude urease extracts shown to be effective for biocementation was studied. The crude extracts were obtained from jack beans via a simple extraction process, stored at room temperature and at 4 ℃, and periodically tested to evaluate their stability. To facilitate storage and transportation of the extracted enzyme, the longevity of the enzyme following freeze drying (lyophilization) to reduce the crude extract to a powder and subsequent re-hydration into an aqueous solution was evaluated. In an attempt to improve the shelf life of the lyophilized extract, dextran and sucrose were added during lyophilization. The stability of purified commercial urease following rehydration was also investigated. Results of the laboratory tests showed that the lyophilized crude extract maintained its activity during storage more effectively than either the crude extract solution or the rehydrated commercial urease. While incorporating 2% dextran (w/v) prior to lyophilization of the crude extract increased the overall enzymatic activity, it did not enhance the stability of the urease during storage.
生的和冻干的粗脲酶提取物的寿命
在实验室研究中评估了三种粗脲酶提取物的稳定性(活性寿命),作为降低脲酶成本的一部分,用于不需要高纯度酶的应用。低成本、稳定的脲酶来源将极大地促进脲酶在土壤生物固结等工程上的应用。廉价的尿素酶粗提取物已被证明是有效的水解尿素碳酸盐沉淀。然而,一些研究表明,粗提取物的活性可能会随着时间的推移而降低,这限制了其大规模生产用于商业应用的潜力。研究了脲酶粗提物对生物胶凝效果较好的稳定性。采用简单的提取工艺提取豆角粗提物,分别在室温和4℃条件下保存,并定期检测其稳定性。为了便于提取的酶的储存和运输,对酶在冷冻干燥(冻干)后的寿命进行了评估,以将粗提取物还原为粉末,然后再水化成水溶液。为了提高冻干提取物的保质期,在冻干过程中加入葡聚糖和蔗糖。还研究了纯化的商业脲酶复水后的稳定性。实验室试验结果表明,冻干粗提物在贮存期间比粗提物溶液或复水合商业脲酶更有效地保持其活性。虽然在粗提取物冻干前加入2%葡聚糖(w/v)可以提高酶的总活性,但在储存过程中并没有提高脲酶的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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