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首页> 外文期刊>Critical Reviews in Food Science and Nutrition >State-of-the-art strategies and applied perspectives of enzyme biocatalysis in food sector - current status and future trends
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State-of-the-art strategies and applied perspectives of enzyme biocatalysis in food sector - current status and future trends

机译:食品部门酶生物分析的最先进的策略和应用透视 - 现状和未来趋势

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摘要

With the recent progress in biotechnology, a wide variety of novel enzymes with unique physicochemical properties and diverse applications has been introduced, and new application list continues to extend in the future. Enzymes obtained from microorganisms, including bacteria, fungi, yeast are widely applied in numerous food formulations for intensifying their texture and taste. Owing to several desirable characteristics such as easy, cost-efficient and stable production, microbial-derived enzymes are preferred source in contrast to animals or plants. Enzymatic processes have a considerable impact in controlling the characteristics such as (1) physiochemical properties, (2) rheological functionalities, (3) facile process as compared to the chemical-based processing, (4) no or minimal consumption of harsh chemicals, (5) overall cost-effective ratio, (6) sensory and flavor qualities, and (7) intensifying the stability, shelf life and overall quality of the product, etc. in the food industry. Also, enzyme-catalyzed processing has also been designed for new food applications such as extraction of bioactive compounds, nutrient-rich and texture improved foods production, and eliminating food safety hazards. Herein, we reviewed recent applications of food-processing enzymes and highlighted promising technologies to diversify their application range in food industries. Immobilization technology enabled biocatalysts to be used cost-effectively due to reusability with negligible or no activity loss. Integrated progress in novel enzyme discovery, and recombinant DNA technology, as well as protein engineering and bioprocess engineering strategies, are believed to rapidly propagate biocatalysis at industrial-scale food processing or green and sustainable chemical manufacturing.
机译:随着生物技术的最近进展,介绍了各种具有独特物理化学特性和多样性应用的新型酶,并在将来继续扩大新的应用程序。从微生物中获得的酶,包括细菌,真菌,酵母被广泛应用于大量的食品配方,以加强其质地和味道。由于诸如简单,成本效率和稳定的生产的若干所需特性,与动物或植物形成鲜明的源极衍生的酶。酶促方法对控制(1)理性特性,(2)流变函数,(3)容易工艺相比,与基于化学的加工相比,(4)没有或最小的苛刻化学物质消费( 5)总体成本效益的比例,(6)感官和风味质量,(7)加强产品的稳定,保质期和整体质量等。此外,酶催化的加工也专为新的食品应用而设计,例如提取生物活性化合物,富含营养素和质地改善的食品生产,并消除食品安全危害。在此,我们审查了最近的食品加工酶应用,并强调了有希望的技术,以使其在食品行业的应用范围多样化。由于可重复使用或无活动损失,固定技术使生物催化剂能够经济有效地使用。新型酶发现的综合进展和重组DNA技术以及蛋白质工程和生物过程工程策略,据信迅速在工业规模食品加工或绿色和可持续化学制造中迅速繁殖生物分析。

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