Dickmeis Thomas, Feng Yi, Mione Maria Caterina, Ninov Nikolay, Santoro Massimo, Spaink Herman P, Gut Philipp
Institute of Toxicology and Genetics, Karlsruhe Institute of Technology, Eggenstein-Leopoldshafen, Germany.
Centre for Inflammation Research, Queen's Medical Research Institute, The University of Edinburgh, Edinburgh, Scotland.
Front Cell Dev Biol. 2019 Feb 19;7:15. doi: 10.3389/fcell.2019.00015. eCollection 2019.
In the past years, evidence has emerged that hallmarks of human metabolic disorders can be recapitulated in zebrafish using genetic, pharmacological or dietary interventions. An advantage of modeling metabolic diseases in zebrafish compared to other "lower organisms" is the presence of a vertebrate body plan providing the possibility to study the tissue-intrinsic processes preceding the loss of metabolic homeostasis. While the small size of zebrafish is advantageous in many aspects, it also has shortcomings such as the difficulty to obtain sufficient amounts for biochemical analyses in response to metabolic challenges. A workshop at the European Zebrafish Principal Investigator meeting in Trento, Italy, was dedicated to discuss the advantages and disadvantages of zebrafish to study metabolic disorders. This perspective article by the participants highlights strategies to achieve improved tissue-resolution for read-outs using "nano-sampling" approaches for metabolomics as well as live imaging of zebrafish expressing fluorescent reporter tools that inform on cellular or subcellular metabolic processes. We provide several examples, including the use of reporter tools to study the heterogeneity of pancreatic beta-cells within their tissue environment. While limitations exist, we believe that with the advent of new technologies and more labs developing methods that can be applied to minimal amounts of tissue or single cells, zebrafish will further increase their utility to study energy metabolism.
在过去几年中,有证据表明,利用基因、药理学或饮食干预手段,可以在斑马鱼身上再现人类代谢紊乱的特征。与其他“低等生物”相比,在斑马鱼身上模拟代谢疾病的一个优势在于,它具有脊椎动物的身体结构,这使得研究代谢稳态丧失之前的组织内在过程成为可能。虽然斑马鱼体型小在很多方面具有优势,但也有缺点,比如在应对代谢挑战时,难以获取足够数量的样本用于生化分析。在意大利特伦托举行的欧洲斑马鱼首席研究员会议上,有一个研讨会专门讨论了斑马鱼在研究代谢紊乱方面的优缺点。与会者撰写的这篇观点文章强调了一些策略,这些策略利用代谢组学的“纳米采样”方法以及对表达荧光报告工具的斑马鱼进行实时成像,以实现更高的组织分辨率读数,这些荧光报告工具能够反映细胞或亚细胞水平的代谢过程。我们提供了几个例子,包括使用报告工具研究胰腺β细胞在其组织环境中的异质性。尽管存在局限性,但我们相信,随着新技术的出现以及越来越多的实验室开发出可应用于微量组织或单细胞的方法,斑马鱼在研究能量代谢方面的实用性将进一步提高。