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胰岛素的演进:对重组生产进展的整体看法。

Insulin evolution: A holistic view of recombinant production advancements.

机构信息

Biochemical Engineering Laboratory, Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, 781039, Assam, India.

Biochemical Engineering Laboratory, Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, 781039, Assam, India.

出版信息

Int J Biol Macromol. 2024 Oct;277(Pt 1):133951. doi: 10.1016/j.ijbiomac.2024.133951. Epub 2024 Jul 19.

Abstract

The increased prevalence of diabetes and the growing popularity of non-invasive methods of recombinant human insulin uptake, such as oral insulin, have increased insulin demand, further limiting the affordability of insulin. Over 40 years have passed since the development of engineered microorganisms that replaced the animal pancreas as the primary source of insulin. To stay ahead of the need for insulin in the present and the future, a few drawbacks with the existing expression systems need to be alleviated, including the inclusion body formation, the use of toxic inducers, and high process costs. To address these bottlenecks and improve insulin production, a variety of techniques are being used in bacteria, yeasts, transgenic plants and animals, mammalian cell lines, and cell-free expression systems. Different approaches for the production of insulin, including two-chain, proinsulin or mini-proinsulin, preproinsulin coupled with fusion protein, chaperone, signal peptide, and purification tags, are explored in upstream, whereas downstream processing takes into account the recovery of intact protein in its bioactive form and purity. This article focuses on the strategies used in the upstream and downstream phases of the bioprocess to produce recombinant human insulin. This review also covers a range of analytical methods and tools employed in investigating the genuity of recombinant human insulin.

摘要

糖尿病患病率的上升和非侵入性重组人胰岛素摄取方法(如口服胰岛素)的日益普及,增加了对胰岛素的需求,进一步限制了胰岛素的可负担性。自从开发出可替代动物胰腺作为胰岛素主要来源的工程微生物以来,已经过去了 40 多年。为了满足当前和未来对胰岛素的需求,需要缓解现有表达系统的一些缺点,包括包含体形成、使用有毒诱导剂和高工艺成本。为了解决这些瓶颈并提高胰岛素的产量,正在细菌、酵母、转基因植物和动物、哺乳动物细胞系和无细胞表达系统中使用各种技术。本文重点介绍了在生物工艺的上游和下游阶段用于生产重组人胰岛素的策略。本文还涵盖了用于研究重组人胰岛素真实性的一系列分析方法和工具。

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