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March 26, 2026Animal Models and Experimental Medicine0 citationsOpen Access

Zebrafish and CRISPR —A synergistic approach to decipher and cure human diseases

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MSManikandan SivaprakasamAJAashika Raagavi JeanpierreSMSalma Mohammed

Key Points

  • This review aims to explore how zebrafish and CRISPR technology can be used together to advance the understanding and treatment of human diseases.
  • Reviewed existing applications of zebrafish in disease modeling.
  • Discussed the integration of CRISPR/Cas9 for gene modification.
  • Evaluated methodological advancements and limitations in current research.
  • Provided best-practice recommendations for combining zebrafish and CRISPR.
  • Highlighted the translational benefits of zebrafish in modeling genetic disorders.
  • Described the efficiency of CRISPR in generating genetic modifications.
  • Identified key challenges like allele validation and off-target effects.

Abstract

Rapidly emerging infectious and genetic diseases demand robust vertebrate models to investigate pathogenesis and accelerate therapeutic discovery. Zebrafish (Danio rerio) offer substantial translational value owing to their conserved physiology, optical transparency, rapid reproduction, and the presence of orthologs for approximately 70% of human genes and approximately 82% of disease-associated genes. The integration of CRISPR/Cas9 technology has transformed zebrafish research, enabling efficient generation of targeted knockouts, knockins, and high-throughput mutagenesis screens. This synergy supports mechanistic dissection and modeling of cardiovascular, oncologic, viral, and other genetic disorders. Despite these advantages, rigorous allele validation, consideration of paralog redundancy, maternal contribution, and off-target analysis remain essential to ensure translational accuracy. This review summarizes current applications, methodological advances, limitations, and best-practice recommendations for combining zebrafish models with genome editing to improve understanding and treatment of human diseases.

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Cite This Study

Sivaprakasam et al. (2026) studied this question.

synapsesocial.com/papers/69c4cc85fdc3bde448917e1ehttps://doi.org/10.1002/ame2.70141
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