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经心脏灌注新生小鼠并对其进行全身体免疫荧光染色作为一种研究神经系统发育的方法。

Trans-cardiac perfusion of neonatal mice and immunofluorescence of the whole body as a method to study nervous system development.

机构信息

Institute for Anatomy and Cell Biology, Ulm University, Ulm, Germany.

Deutsches Zentrum für Neurodegenerative Erkrankungen (DZNE), Ulm Site, Ulm, Germany.

出版信息

PLoS One. 2022 Oct 13;17(10):e0275780. doi: 10.1371/journal.pone.0275780. eCollection 2022.

Abstract

Whole animal perfusion is a well-established method that has been used for the past decades in multiple research fields. Particularly, it has been very important for the study of the brain. The rapid and uniform fixation of tissue is essential for the preservation of its integrity and the study of complex structures. For small tissue pieces submerging in formaldehyde solution oftentimes is sufficient to get a good fixation, larger tissues or organs with a more complicated structure present a greater difficulty. Here, we report the precise parameters to successfully perform trans-cardiac perfusion of neonatal mouse pups that allows a uniform fixation of the whole body for subsequent structural analysis and immunohistochemistry. In comparison to standard perfusion procedures of adult mice, changes in the pump velocity, the buffer volume and in the needle size lead to high quality fixation of neonatal mice pups. Further, we present a whole-body section staining, which results in a highly specific immunofluorescence signal suited for detailed analysis of multiple tissues or systems at the same time. Thus, our protocol provides a reproducible and reliable method for neonatal perfusion and staining that can rapidly be applied in any laboratory. It allows a high quality analysis of cellular structures and expression profiles at early developmental stages.

摘要

整体动物灌注是一种经过多年验证的方法,在多个研究领域得到了广泛应用。特别是,它对大脑的研究非常重要。组织的快速和均匀固定对于保持其完整性和研究复杂结构至关重要。对于小块组织,将其浸泡在甲醛溶液中通常足以实现良好的固定,而对于具有更复杂结构的较大组织或器官,则存在更大的难度。在这里,我们报告了成功进行新生小鼠心脏灌注的精确参数,可实现全身均匀固定,以便进行后续的结构分析和免疫组织化学研究。与成年小鼠的标准灌注程序相比,改变泵的速度、缓冲液的体积和针头的大小可以实现新生小鼠的高质量固定。此外,我们还提出了一种全身切片染色方法,可产生高度特异性的免疫荧光信号,适用于同时对多个组织或系统进行详细分析。因此,我们的方案为新生动物的灌注和染色提供了一种可重复且可靠的方法,可在任何实验室中快速应用。它可以在早期发育阶段对细胞结构和表达谱进行高质量分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72c9/9560478/7546743c95d9/pone.0275780.g001.jpg

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