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Updated: May 14, 2026

Repeated Blood Collection for Blood Tests in Adult Zebrafish
Published on: August 30, 2015
Documented and potential research impacts of subclinical diseases in zebrafish
Michael L Kent1, Claudia Harper, Jeffrey C Wolf
1Department of Microbiology, Oregon State University, Corvallis, OR 97331, USA. Michael.Kent@oregonstate.edu
Abstract:
The zebrafish (Danio rerio) has become a very important animal model in biomedical research. In contrast with other models, such as mice, there has been relatively little documentation or control of subclinical disease in zebrafish research facilities. Several infectious and noninfectious conditions are consistently detected by histopathology in apparently healthy D. rerio. The most commonly observed infectious agent in zebrafish is Pseudoloma neurophilia, which is a microsporidian organism that targets the central nervous system, peripheral nerves, and occasionally other tissues. Mycobacteriosis, caused by Mycobacterium chelonae and other species, is also a frequent finding. Less commonly encountered agents include Pseudocapillaria tomentosa, which can cause extensive proliferative enteritis, and a myxozoan (Myxidium sp.) that inhabits the urinary tract but appears to cause few if any pathological changes. Noninfectious diseases that are often clinically unapparent in zebrafish include hepatic megalocytosis, bile and pancreatic ductal proliferation, and neoplasms of the ultimobranchial gland, gastrointestinal tract, and testis. To date, there is little information on the degree to which these conditions may impact research in subclinically affected fish, but there is reason to believe that they should be considered as potentially significant causes of nonprotocol variation in experiments. Therefore, it is imperative that research facilities monitor their stocks for the presence of these occult diseases and be aware of their existence when interpreting study results. Furthermore, for underlying disease conditions that cannot be readily eradicated, it is essential to determine the physiological and immunological changes that they elicit in zebrafish. Understanding the cause, modes of transmission, and distribution of the pathogens would provide useful information for the development of control and prevention strategies.
Insights
Subclinical diseases in zebrafish (Danio rerio) are common and can impact research. Monitoring for these occult conditions is crucial for accurate experimental results in this vital animal model.
Area of Science:
- Biomedical Research
- Aquatic Animal Models
- Pathology
Background:
- Zebrafish (Danio rerio) are critical animal models in biomedical research.
- Subclinical diseases are poorly documented in zebrafish research facilities, unlike in other models like mice.
- Histopathology reveals common infectious and noninfectious conditions in apparently healthy zebrafish.
Purpose of the Study:
- To highlight the prevalence and impact of subclinical diseases in zebrafish.
- To emphasize the need for monitoring and awareness of these occult conditions in research settings.
- To inform the interpretation of experimental results by considering potential disease-related variations.
Main Methods:
- Histopathological examination of apparently healthy zebrafish.
- Identification of common infectious agents like Pseudoloma neurophilia and Mycobacterium chelonae.
- Detection of noninfectious conditions including hepatic megalocytosis and various neoplasms.
Main Results:
- Pseudoloma neurophilia (microsporidian) and Mycobacteriosis are frequent infectious agents.
- Noninfectious diseases such as hepatic megalocytosis and neoplasms are also commonly observed.
- These subclinical conditions can significantly cause non-protocol variation in research experiments.
Conclusions:
- Subclinical diseases in zebrafish represent a significant source of experimental variability.
- Research facilities must monitor zebrafish stocks for occult diseases.
- Understanding disease impact is essential for accurate interpretation of zebrafish research findings and for developing control strategies.

