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小鼠中腺相关病毒嗜性的综合图谱。

A comprehensive atlas of AAV tropism in the mouse.

作者信息

Walkey Christopher J, Snow Kathy J, Bulcha Jote, Cox Aaron R, Martinez Alexa E, Ljungberg M Cecilia, Lanza Denise G, De Giorgi Marco, Chuecos Marcel A, Alves-Bezerra Michele, Suarez Carlos Flores, Hartig Sean M, Hilsenbeck Susan G, Hsu Chih-Wei, Saville Ethan, Gaitan Yaned, Duryea Jeff, Hannigan Seth, Dickinson Mary E, Mirochnitchenko Oleg, Wang Dan, Lutz Cathleen M, Heaney Jason D, Gao Guangping, Murray Stephen A, Lagor William R

机构信息

Department of Integrative Physiology, Baylor College of Medicine, Houston, TX 77030, USA.

The Jackson Laboratory, 600 Main Street, Bar Harbor, ME 04609 USA.

出版信息

Mol Ther. 2025 Mar 5;33(3):1282-1299. doi: 10.1016/j.ymthe.2025.01.041. Epub 2025 Jan 25.

Abstract

Gene therapy with adeno-associated virus (AAV) vectors requires knowledge of their tropism within the body. Here we analyze the tropism of 10 naturally occurring AAV serotypes (AAV3B, AAV4, AAV5, AAV6, AAV7, AAV8, AAV9, AAVrh8, AAVrh10, and AAVrh74) following systemic delivery into male and female mice. A transgene-expressing ZsGreen and Cre recombinase was used to identify transduction in a cell-dependent manner based on fluorescence. Cre-driven activation of tdTomato fluorescence offered superior sensitivity for transduced cells. All serotypes except AAV3B and AAV4 had high liver tropism. Fluorescence activation revealed transduction of unexpected tissues, including adrenals, testes, and ovaries. Rare transduced cells within tissues were also readily visualized. Biodistribution of AAV genomes correlated with fluorescence, except in immune tissues. AAV4 was found to have a pan-endothelial tropism while also targeting pancreatic beta cells. This public resource enables selection of the best AAV serotypes for basic science and preclinical applications in mice.

摘要

使用腺相关病毒(AAV)载体进行基因治疗需要了解其在体内的嗜性。在此,我们分析了10种天然存在的AAV血清型(AAV3B、AAV4、AAV5、AAV6、AAV7、AAV8、AAV9、AAVrh8、AAVrh10和AAVrh74)经全身注射到雄性和雌性小鼠体内后的嗜性。一个表达转基因ZsGreen和Cre重组酶的载体被用于基于荧光以细胞依赖的方式识别转导。Cre驱动的tdTomato荧光激活对转导细胞具有更高的敏感性。除AAV3B和AAV4外,所有血清型都具有高肝脏嗜性。荧光激活揭示了意外组织的转导,包括肾上腺、睾丸和卵巢。组织内罕见的转导细胞也很容易被观察到。AAV基因组的生物分布与荧光相关,但在免疫组织中除外。发现AAV4具有泛内皮嗜性,同时还靶向胰腺β细胞。这个公共资源有助于为小鼠的基础科学和临床前应用选择最佳的AAV血清型。

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