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改良的成年黑腹果蝇脂肪组织整体免疫荧光标记协议,以获得一致且稳健的标记效果。

Improved whole-mount immunofluorescence protocol for consistent and robust labeling of adult Drosophila melanogaster adipose tissue.

机构信息

Department of Biological Sciences, University of South Carolina, Columbia, SC 29072, USA.

出版信息

Biol Open. 2024 Aug 15;13(8). doi: 10.1242/bio.060491. Epub 2024 Aug 1.

Abstract

Energy storage and endocrine functions of the Drosophila fat body make it an excellent model for elucidating mechanisms that underlie physiological and pathophysiological organismal metabolism. Combined with Drosophila's robust genetic and immunofluorescence microscopy toolkits, studies of Drosophila fat body function are ripe for cell biological analysis. Unlike the larval fat body, which is easily removed as a single, cohesive sheet of tissue, isolating intact adult fat body proves to be more challenging, thus hindering consistent immunofluorescence labeling even within a single piece of adipose tissue. Here, we describe an improved approach to handling Drosophila abdomens that ensures full access of the adult fat body to solutions generally used in immunofluorescence labeling protocols. In addition, we assess the quality of fluorescence reporter expression and antibody immunoreactivity in response to variations in fixative type, fixation incubation time, and detergent used for cellular permeabilization. Overall, we provide several recommendations for steps in a whole-mount staining protocol that results in consistent and robust immunofluorescence labeling of the adult Drosophila fat body.

摘要

果蝇的脂肪体具有储能和内分泌功能,使其成为研究生理和病理生理机体代谢机制的极佳模型。结合果蝇强大的遗传和免疫荧光显微镜工具包,对果蝇脂肪体功能的研究非常适合进行细胞生物学分析。与幼虫脂肪体不同,幼虫脂肪体很容易作为一个单一的、有凝聚力的组织片取出,而分离完整的成年脂肪体则证明更具挑战性,因此即使在一块脂肪组织内,也很难进行一致的免疫荧光标记。在这里,我们描述了一种改进的处理果蝇腹部的方法,可确保成年果蝇脂肪体充分接触到免疫荧光标记方案中常用的溶液。此外,我们还评估了荧光报告基因表达和抗体免疫反应性的质量,以响应固定剂类型、固定孵育时间和用于细胞通透化的去污剂的变化。总的来说,我们为全组织染色方案中的几个步骤提供了建议,这些步骤可确保成年果蝇脂肪体的免疫荧光标记具有一致性和稳健性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5ae/11317099/6ec6d416a1e1/biolopen-13-060491-g1.jpg

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