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Zebrafish as a model system for studying reproductive diseases.

Wenwen Zha1, Weitao Hu2, Chenkai Ge2

  • 1Jiangxi Engineering Laboratory of Zebrafish Modeling and Drug Screening for Human Diseases, Jiangxi Key Laboratory of Developmental Biology of Organs and Epigenetics, College of Chinese Medicine, Clinical Research Center of Affiliated Hospital of Jinggangshan University, Jinggangshan University, Ji'an, China.

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Summary

Zebrafish offer a cost-effective and rapid animal model for studying reproductive diseases, overcoming limitations of traditional mouse models. This review highlights their advantages for high-throughput drug screening and understanding disease mechanisms.

Keywords:
CRISPRanimal modelsgerm cellsreproductive diseaseszebrafish

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Area of Science:

  • Reproductive biology
  • Comparative medicine
  • Animal modeling

Background:

  • Reproductive system diseases pose significant health challenges.
  • Mouse models are common but costly and time-consuming.
  • Zebrafish present a viable alternative animal model for reproductive disease research.

Purpose of the Study:

  • To review the advantages and applications of zebrafish as a model for reproductive diseases.
  • To clarify the pathological mechanisms of zebrafish in reproductive disease modeling.
  • To provide insights for human reproductive disease treatment.

Main Methods:

  • Review of literature from PubMed over the past 10 years.
  • Analysis of zebrafish models induced by chemical, physical, and genetic methods.
  • Examination of zebrafish's genetic conservation, reproductive cycle, and embryonic transparency.

Main Results:

  • Zebrafish exhibit high genetic conservation with humans and rapid development.
  • Transparent embryos and short reproductive cycles facilitate high-throughput screening.
  • Various methods effectively induce reproductive system damage in zebrafish for study.

Conclusions:

  • Zebrafish are a promising model for studying reproductive diseases and identifying treatments.
  • This model offers unique advantages for drug discovery and understanding disease pathogenesis.
  • Insights from zebrafish research can advance human reproductive medicine.