Related Experiment Video
Updated: Jul 21, 2026

Infection of Zebrafish Embryos with Intracellular Bacterial Pathogens
Published on: March 15, 2012
A standardized microinjection framework with hierarchical quantitative evaluation supports multi-genotype human
Ziwang Ouyang1, Yiqing Chen1, Ruiquan Xu1
1KingMed School of Laboratory Medicine, Institute of Medical Laboratory Big Data & Economics, Engineering Technology Research Center of Intelligent Diagnosis for Infectious Diseases in Guangdong Province, Guangdong Provincial Engineering Research Center for Early Warning and Diagnosis of Respiratory Infectious Diseases, Guangzhou Key Laboratory for Clinical Rapid Diagnosis and Early Warning of Infectious Diseases, Guangzhou Medical University, Guangzhou 511436, China.
Aims:
To establish a reproducible and consistent zebrafish embryo model for multi-genotype human norovirus (HuNoV) replication, by addressing the critical bottleneck of technical variability in microinjection and systematically characterizing the infection dynamics across genotypes.
Methods And Results:
We developed a standardized microinjection framework anchored by a hierarchical quantitative evaluation scheme (based on CLSI EP28-A3c) to minimize operator-dependent variability. This system enabled consistent, low-damage delivery of the viral inoculum. The framework's robustness was confirmed by a strong correlation between net injection efficiency and embryo survival (Pearson r = 0.67, P < 0.05). Leveraging this standardized approach, we successfully constructed stable replication models for five HuNoV genotypes (GII.2[P16], GII.4[P31], GII.4[P16], GII.17[P17], and GII.3[P12]), determining the minimum effective inoculum titer and defining the replication kinetics for each.
Conclusions:
Our work provides a comprehensive and standardized methodology that significantly enhances the reproducibility of the zebrafish embryo model for HuNoV research. By effectively decoupling technical variability from genuine biological effects, this framework establishes a robust platform for comparative studies of viral pathogenesis, host interactions, and antiviral efficacy across multiple norovirus genotypes.
More Related Videos
10:19Establishment and Optimization of a High Throughput Setup to Study Staphylococcus epidermidis and Mycobacterium marinum Infection as a Model for Drug Discovery
Published on: June 26, 2014
09:07Using Zebrafish Models of Human Influenza A Virus Infections to Screen Antiviral Drugs and Characterize Host Immune Cell Responses
Published on: January 20, 2017
Related Concept Videos
In-vitro Mutagenesis
In vitro Mutagenesis