Comparison of two methods of sperm- and testis-mediated gene transfer in production of transgenic animals: A systematic review

IF 1.8 3区 生物学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Animal genetics Pub Date : 2024-02-15 DOI:10.1111/age.13404
Zeinab Dehghan, Gholamhossein Darya, Shayesteh Mehdinejadiani, Amin Derakhshanfar
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Abstract

Transgenic (Tg) animal technology is one of the growing areas in biology. Various Tg technologies, each with its own advantages and disadvantages, are available for generating Tg animals. These include zygote microinjection, electroporation, viral infection, embryonic stem cell or spermatogonial stem cell-mediated production of Tg animals, sperm-mediated gene transfer (SMGT), and testis-mediated gene transfer (TMGT). However, there are currently no comprehensive studies comparing SMGT and TMGT methods, selecting appropriate gene delivery carriers (such as nanoparticles and liposomes), and determining the optimal route for gene delivery (SMGT and TMGT) for producing Tg animal. Here we aim to provide a comprehensive assessment comparing SMGT and TMGT methods, and to introduce the best carriers and gene transfer methods to sperm and testis to generate Tg animals in different species. From 2010 to 2022, 47 studies on SMGT and 25 studies on TMGT have been conducted. Mice and rats were the most commonly used species in SMGT and TMGT. Regarding the SMGT approach, nanoparticles, streptolysin-O, and virus packaging were found to be the best gene transfer methods for generating Tg mice. In the TMGT method, the best gene transfer methods for generating Tg mice and rats were virus packaging, dimethyl sulfoxide, electroporation, and liposome. Our study has shown that the efficiency of producing Tg animals varies depending on the species, gene carrier, and method of gene transfer.

Abstract Image

比较精子和睾丸介导的基因转移在转基因动物生产中的两种方法:系统综述。
转基因(Tg)动物技术是生物学中不断发展的领域之一。目前有多种 Tg 技术可用于产生 Tg 动物,这些技术各有利弊。这些技术包括卵子显微注射、电穿孔、病毒感染、胚胎干细胞或精原干细胞介导的 Tg 动物生产、精子介导的基因转移(SMGT)和睾丸介导的基因转移(TMGT)。然而,目前还没有全面的研究对 SMGT 和 TMGT 方法进行比较,选择合适的基因传递载体(如纳米颗粒和脂质体),并确定生产 Tg 动物的最佳基因传递途径(SMGT 和 TMGT)。在此,我们旨在对SMGT和TMGT方法进行全面评估比较,并介绍在不同物种中产生Tg动物的精子和睾丸的最佳载体和基因转移方法。从 2010 年到 2022 年,共进行了 47 项 SMGT 研究和 25 项 TMGT 研究。小鼠和大鼠是 SMGT 和 TMGT 最常用的物种。在 SMGT 方法中,纳米颗粒、链霉素-O 和病毒包装被认为是产生 Tg 小鼠的最佳基因转移方法。在 TMGT 方法中,产生 Tg 小鼠和大鼠的最佳基因转移方法是病毒包装、二甲基亚砜、电穿孔和脂质体。我们的研究表明,产生 Tg 动物的效率因物种、基因载体和基因转移方法而异。
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来源期刊
Animal genetics
Animal genetics 生物-奶制品与动物科学
CiteScore
4.60
自引率
4.20%
发文量
115
审稿时长
5 months
期刊介绍: Animal Genetics reports frontline research on immunogenetics, molecular genetics and functional genomics of economically important and domesticated animals. Publications include the study of variability at gene and protein levels, mapping of genes, traits and QTLs, associations between genes and traits, genetic diversity, and characterization of gene or protein expression and control related to phenotypic or genetic variation. The journal publishes full-length articles, short communications and brief notes, as well as commissioned and submitted mini-reviews on issues of interest to Animal Genetics readers.
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