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从成年非洲蓝珍珠鱼的脑组织中温和分离细胞核,这是一种用于衰老研究的天然短寿命模型。

Gentle Isolation of Nuclei from the Brain Tissue of Adult African Turquoise Killifish, a Naturally Short-Lived Model for Aging Research.

机构信息

Leonard Davis School of Gerontology, University of Southern California.

Leonard Davis School of Gerontology, University of Southern California; Molecular and Computational Biology Department, USC Dornsife College of Letters, Arts and Sciences; Biochemistry and Molecular Medicine Department, USC Keck School of Medicine; Epigenetics and Gene Regulation, USC Norris Comprehensive Cancer Center; USC Stem Cell Initiative;

出版信息

J Vis Exp. 2022 Aug 9(186). doi: 10.3791/64165.

Abstract

Studying brain aging at single-cell resolution in vertebrate systems remains challenging due to cost, time, and technical constraints. Here, we demonstrate a protocol to generate single-nucleus RNA sequencing (snRNA-seq) libraries from the brains of the naturally short-lived vertebrate African turquoise killifish Nothobranchius furzeri. The African turquoise killifish has a lifespan of 4-6 months and can be housed in a cost-effective manner, thus reducing cost and time barriers to study vertebrate brain aging. However, tailored protocols are needed to isolate nuclei of sufficient quality for downstream single-cell experiments from the brain of young and aged fish. Here, we demonstrate an empirically optimized protocol for the isolation of high-quality nuclei from the brain of adult African turquoise killifish, a critical step in the generation of high-quality single nuclei omic libraries. Furthermore, we show that the steps to reduce contaminating background RNA are important to clearly distinguish cell types. In summary, this protocol demonstrates the feasibility of studying brain aging in non-traditional vertebrate model organisms.

摘要

由于成本、时间和技术限制,在脊椎动物系统中以单细胞分辨率研究大脑衰老仍然具有挑战性。在这里,我们展示了一种从自然寿命短的脊椎动物非洲蓝胎鳉(Nothobranchius furzeri)的大脑中生成单个核 RNA 测序(snRNA-seq)文库的方案。非洲蓝胎鳉的寿命为 4-6 个月,并且可以以具有成本效益的方式饲养,从而降低了研究脊椎动物大脑衰老的成本和时间障碍。然而,需要针对从小鱼和老鱼的大脑中分离出足够质量的核以进行下游单细胞实验的定制方案。在这里,我们展示了一种从成年非洲蓝胎鳉大脑中分离高质量核的经验优化方案,这是生成高质量单个核组学文库的关键步骤。此外,我们表明,减少污染背景 RNA 的步骤对于清楚地区分细胞类型很重要。总之,该方案证明了在非传统脊椎动物模式生物中研究大脑衰老的可行性。

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