Objectives and achievements of the HUMN project on its 26th anniversary

Michael Fenech1, Nina Holland2, Errol Zeiger3

  • 1Health and Biomedical Innovation, UniSA Clinical and Health Sciences, University of South Australia, Adelaide 5000, Australia; Genome Health Foundation, North Brighton, SA 5048, Australia.

Insights

Micronuclei (MN) are biomarkers of genotoxicity. The Human Micronucleus (HUMN) project standardized measurement methods and created global databases, advancing our understanding of MN in human health and disease risk.

Area of Science:

  • Cytogenetics and Molecular Biology
  • Biomarkers and Toxicology
  • Human Population Studies

Background:

  • Micronuclei (MN) are indicators of genomic instability, arising from errors in chromosome segregation during cell division.
  • Prior to the 1980s, standardized methods for measuring MN in humans and understanding their association with disease were limited.
  • The development of the cytokinesis-block MN (CBMN) assay and Buccal MN assay revolutionized human genotoxicity studies.

Purpose of the Study:

  • To describe the achievements of the Human Micronucleus (HUMN) project from its inception in 1997 to its 26th anniversary in 2023.
  • To highlight the harmonization and standardization of MN assay techniques.
  • To showcase the establishment and utilization of global MN frequency databases for disease risk assessment.

Main Methods:

  • International collaboration through the HUMN project.
  • Standardization of lymphocyte CBMN and Buccal MN assays.
  • Creation and analysis of worldwide databases on MN frequency, demographics, lifestyle, and genotoxin exposure.

Main Results:

  • Over 200 publications and 23 international workshops conducted.
  • Established standardized protocols for key human MN assays.
  • Compiled extensive databases facilitating research on MN frequency and disease associations.

Conclusions:

  • The HUMN project has significantly advanced the use of MN as biomarkers for genotoxicity and disease risk assessment.
  • Standardized methods and comprehensive databases are crucial for reliable human biomonitoring.
  • Continued international collaboration is vital for understanding genomic instability and its health implications.

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