CNRS, Ifremer, IRD, UM, Marbec, University of Montpellier, Montpellier, France.
LPHI, CNRS, University of Montpellier, Montpellier, France.
Zebrafish. 2022 Feb;19(1):1-6. doi: 10.1089/zeb.2021.0075. Epub 2022 Feb 4.
The zebrafish is a teleost model species widely used in developmental genetics, biomedical studies, toxicology, and drug screening. Despite the interest of this species in research, little is known through indirect observations about its blood osmolality, which is a key parameter for diverse experiments. In this study, we directly measured blood osmolality using nano-osmometry at different stages of zebrafish postembryonic development. We found that blood osmolality is close to 240 mOsm·kg in early larvae. It progressively increased to ∼270 mOsm·kg during the larval development before reaching ∼300 mOsm·kg after metamorphosis in juveniles and later in adults. These ontogenetic changes in blood osmolality illustrate the physiological changes in osmoregulation associated with postembryonic development, including metamorphosis. These values are of practical interest for adjusting the osmolality of fixatives and cell and tissue culture media for research using zebrafish as a model.
斑马鱼是一种硬骨鱼类模式物种,广泛应用于发育遗传学、生物医学研究、毒理学和药物筛选。尽管人们对这种鱼类在研究中的应用很感兴趣,但通过间接观察,人们对其血液渗透压知之甚少,而血液渗透压是各种实验的关键参数。在这项研究中,我们使用纳米渗透压计在斑马鱼胚胎后发育的不同阶段直接测量了血液渗透压。我们发现,在早期幼虫中,血液渗透压接近 240mOsm·kg。在幼虫发育过程中,它逐渐增加到约 270mOsm·kg,然后在幼鱼变态后达到约 300mOsm·kg,之后在成鱼中进一步增加。血液渗透压的这种发育变化说明了与胚胎后发育相关的渗透压调节的生理变化,包括变态。这些值对于调整使用斑马鱼作为模型的固定剂以及细胞和组织培养基的渗透压具有实际意义。