Keij Fleur M, Koch Bjørn E V, Lozano Vigario Fernando, Simons Sinno H P, van Hasselt Johan G C, Taal H Rob, Knibbe C A J, Spaink Herman P, Reiss Irwin K M, Krekels Elke H J
Erasmus MC Sophia Children's Hospital, Erasmus University Medical Center Rotterdam, Rotterdam, the Netherlands.
Division of Animal Sciences and Health, Institute of Biology Leiden, Leiden University, Leiden, the Netherlands.
J Clin Transl Sci. 2021 Jun 18;5(1):e140. doi: 10.1017/cts.2021.803. eCollection 2021.
Neonatal sepsis is a major cause of death and disability in newborns. Commonly used biomarkers for diagnosis and evaluation of treatment response lack sufficient sensitivity or specificity. Additionally, new targets to treat the dysregulated immune response are needed, as are methods to effectively screen drugs for these targets. Available research methods have hitherto not yielded the breakthroughs required to significantly improve disease outcomes, we therefore describe the potential of zebrafish (Danio rerio) larvae as preclinical model for neonatal sepsis. In biomedical research, zebrafish larvae combine the complexity of a whole organism with the convenience and high-throughput potential of methods. This paper illustrates that zebrafish exhibit an immune system that is remarkably similar to humans, both in terms of types of immune cells and signaling pathways. Moreover, the developmental state of the larval immune system is highly similar to human neonates. We provide examples of zebrafish larvae being used to study infections with pathogens commonly causing neonatal sepsis and discuss known limitations. We believe this species could expedite research into immune regulation during neonatal sepsis and may hold keys for the discovery of new biomarkers and novel treatment targets as well as for screening of targeted drug therapies.
新生儿败血症是新生儿死亡和残疾的主要原因。用于诊断和评估治疗反应的常用生物标志物缺乏足够的敏感性或特异性。此外,需要新的治疗免疫反应失调的靶点,以及有效筛选针对这些靶点的药物的方法。迄今为止,现有的研究方法尚未取得显著改善疾病预后所需的突破,因此我们描述了斑马鱼(Danio rerio)幼体作为新生儿败血症临床前模型的潜力。在生物医学研究中,斑马鱼幼体兼具整个生物体的复杂性以及方法的便利性和高通量潜力。本文表明,斑马鱼在免疫细胞类型和信号通路方面都展现出与人类极为相似的免疫系统。此外,幼体免疫系统的发育状态与人类新生儿高度相似。我们提供了斑马鱼幼体用于研究常见引起新生儿败血症的病原体感染的实例,并讨论了已知的局限性。我们相信,这个物种可以加快对新生儿败血症期间免疫调节的研究,并且可能为发现新的生物标志物和新的治疗靶点以及筛选靶向药物疗法提供关键线索。