Genetically modified animals for use in biopharmacology: from research to production

Q3 Pharmacology, Toxicology and Pharmaceutics Research Results in Pharmacology Pub Date : 2021-10-29 DOI:10.3897/rrpharmacology.7.76685
A. Deykin, Olesya V. Shcheblykina, Elena E. Povetka, P. A. Golubinskaya, V. M. Pokrovsky, L. Korokina, Olesya A. Vanchenko, E. Kuzubova, K. S. Trunov, V. V. Vasyutkin, A. Radchenko, A. P. Danilenko, Julia V. Stepenko, I. S. Kochkarova, V. S. Belyaeva, V. Yakushev
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引用次数: 1

Abstract

Introduction: In this review, the analysis of technologies for obtaining biologically active proteins from various sources is carried out, and the comparative analysis of technologies for creating producers of biologically active proteins is presented. Special attention is paid to genetically modified animals as bioreactors for the pharmaceutical industry of a new type. The necessity of improving the technology of development transgenic rabbit producers and creating a platform solution for the production of biological products is substantiated. The advantages of using TrB for the production of recombinant proteins: The main advantages of using TrB are the low cost of obtaining valuable complex therapeutic human proteins in readily accessible fluids, their greater safety relative to proteins isolated directly from human blood, and the greater safety of the activity of the native protein. The advantages of the mammary gland as a system for the expression of recombinant proteins: The mammary gland is the organ of choice for the expression of valuable recombinant proteins because milk is easy to collect in large volumes. Methods for obtaining transgenic animals: The modern understanding of the regulation of gene expression and the discovery of new tools for gene editing can increase the efficiency of creating bioreactors for animals and help to obtain high concentrations of the target protein. The advantages of using rabbits as bioreactors producing recombinant proteins in milk: The rabbit is a relatively small animal with a short duration of gestation, puberty and optimal size, capable of producing up to 5 liters of milk per year per female, receiving up to 300 grams of the target protein.
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用于生物药理学的转基因动物:从研究到生产
引言:在这篇综述中,对从各种来源获得生物活性蛋白的技术进行了分析,并对创建生物活性蛋白生产商的技术进行比较分析。作为一种新型制药工业的生物反应器,转基因动物受到了特别关注。证实了提高转基因兔生产商发展技术和创建生物产品生产平台解决方案的必要性。使用TrB生产重组蛋白的优点:使用TrB的主要优点是在容易获得的液体中获得有价值的复杂治疗性人类蛋白的成本低,相对于直接从人类血液中分离的蛋白质,其安全性更高,并且天然蛋白质的活性更安全。乳腺作为重组蛋白表达系统的优势:乳腺是表达有价值的重组蛋白的首选器官,因为牛奶很容易大量收集。获得转基因动物的方法:对基因表达调控的现代理解和基因编辑新工具的发现可以提高为动物创建生物反应器的效率,并有助于获得高浓度的靶蛋白。使用兔子作为在牛奶中生产重组蛋白的生物反应器的优势:兔子是一种相对较小的动物,妊娠期、青春期和最佳体型较短,每只雌性每年能够生产多达5升的牛奶,可获得多达300克的目标蛋白。
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来源期刊
Research Results in Pharmacology
Research Results in Pharmacology Medicine-Pharmacology (medical)
CiteScore
1.50
自引率
0.00%
发文量
32
审稿时长
12 weeks
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