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优化L-天冬酰胺酶生产的基因来源:一项比较综述

Optimizing Gene Sources for L-asparaginase Production: A Comparative Review.

作者信息

Ebrahimi Vida, Hashemi Atieh

机构信息

Department of Pharmaceutical Biotechnology, School of Pharmacy, Shahid Beheshti University of Medical Sciences, No. 2660, Valiasr-Niayesh Junction, Vali-E-Asr Ave, Tehran, 19968-35113, Iran.

出版信息

Curr Microbiol. 2025 Jul 12;82(9):381. doi: 10.1007/s00284-025-04351-6.

Abstract

L-asparaginase is a versatile enzyme that has been a vital tool in both cancer treatment and food production. In the clinic, it's used as a first-line treatment for acute lymphoblastic leukemia. That's because it can deplete the extracellular L-asparagine that cancer cells need to multiply. In the food industry, it helps reduce the formation of acrylamide in starchy foods that are cooked at high heat. That makes food safer for consumers. The enzyme's performance depends heavily on where its genes come from. That source affects how well it works, how stable it is, how likely it is to trigger an immune response-and how feasible it is to produce. To evaluate the best gene sources for L-asparaginase, this review scoured the major biomedical databases. It fills a gap in existing research by systematically assessing gene sources based on their suitability for different applications: cancer therapy, food safety and biosensing. By matching gene selection with the needs of downstream applications, this review shows how application-driven gene sourcing can lead to safer, more effective and more viable L-asparaginase variants. That approach gives us new insights to guide the next generation of biotech and clinical advancements in enzyme design and deployment.

摘要

L-天冬酰胺酶是一种多功能酶,在癌症治疗和食品生产中都是至关重要的工具。在临床上,它被用作急性淋巴细胞白血病的一线治疗药物。这是因为它能够耗尽癌细胞增殖所需的细胞外L-天冬酰胺。在食品工业中,它有助于减少高温烹饪的淀粉类食品中丙烯酰胺的形成。这使得食品对消费者更安全。该酶的性能在很大程度上取决于其基因来源。该来源会影响其工作效果、稳定性、引发免疫反应的可能性以及生产的可行性。为了评估L-天冬酰胺酶的最佳基因来源,这篇综述检索了主要的生物医学数据库。它通过根据基因来源对不同应用(癌症治疗、食品安全和生物传感)的适用性进行系统评估,填补了现有研究的空白。通过将基因选择与下游应用的需求相匹配,这篇综述展示了应用驱动的基因来源如何能够产生更安全、更有效且更可行的L-天冬酰胺酶变体。这种方法为指导酶设计和应用中的下一代生物技术和临床进展提供了新的见解。

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