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通过在斑马鱼中进行细胞特异性标记来深入了解体内脂肪细胞分化。

Insights into in vivo adipocyte differentiation through cell-specific labeling in zebrafish.

机构信息

Human Molecular Genetics Lab, Institut Pasteur de Montevideo, Montevideo, Mataojo 2020, CP11400, Uruguay.

Sección Biología Celular, Facultad de Ciencias, Universidad de la República, Montevideo, Igua 4225, CP11400, Uruguay.

出版信息

Biol Open. 2021 Sep 15;10(9). doi: 10.1242/bio.058734. Epub 2021 Sep 9.

Abstract

White adipose tissue hyperplasia has been shown to be crucial for handling excess energy in healthy ways. Though adipogenesis mechanisms have been underscored in vitro, we lack information on how tissue and systemic factors influence the differentiation of new adipocytes. While this could be studied in zebrafish, adipocyte identification currently relies on neutral lipid labeling, thus precluding access to cells in early stages of differentiation. Here we report the generation and analysis of a zebrafish line with the transgene fabp4a(-2.7):EGFPcaax. In vivo confocal microscopy of the pancreatic and abdominal visceral depots of transgenic larvae, revealed the presence of labeled mature adipocytes as well as immature cells in earlier stages of differentiation. Through co-labeling for blood vessels, we observed a close interaction of differentiating adipocytes with endothelial cells through cell protrusions. Finally, we implemented hyperspectral imaging and spectral phasor analysis in Nile Red-labeled transgenic larvae and revealed the lipid metabolic transition towards neutral lipid accumulation of differentiating adipocytes. Altogether our work presents the characterization of a novel adipocyte-specific label in zebrafish and uncovers previously unknown aspects of in vivo adipogenesis. This article has an associated First Person interview with the first author of the paper.

摘要

白色脂肪组织增生已被证明对于以健康的方式处理多余的能量至关重要。尽管体外已经强调了脂肪生成机制,但我们缺乏关于组织和全身因素如何影响新脂肪细胞分化的信息。虽然这可以在斑马鱼中进行研究,但脂肪细胞的鉴定目前依赖于中性脂质标记,因此无法获得分化早期的细胞。在这里,我们报告了一种具有 fabp4a(-2.7):EGFPcaax 转基因的斑马鱼系的产生和分析。转基因幼虫胰腺和腹部内脏脂肪垫的体内共聚焦显微镜显示,存在标记的成熟脂肪细胞以及分化早期的未成熟细胞。通过对血管进行共标记,我们观察到分化的脂肪细胞通过细胞突起与内皮细胞密切相互作用。最后,我们在尼罗红标记的转基因幼虫中实施了高光谱成像和光谱相分析,揭示了分化脂肪细胞向中性脂质积累的脂质代谢转变。总的来说,我们的工作描述了一种新型的斑马鱼脂肪细胞特异性标记,并揭示了体内脂肪生成的未知方面。本文有该论文第一作者的相关第一人称采访。

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