# Micronucleus test

> Mediated Wiki article. Canonical URL: https://mediated.wiki/source/Micronucleus_test
> Markdown URL: https://mediated.wiki/source/Micronucleus_test.md
> Source: https://en.wikipedia.org/wiki/Micronucleus_test
> Source revision: 1161487650
> License: Creative Commons Attribution-ShareAlike 4.0 International (https://creativecommons.org/licenses/by-sa/4.0/)

A **micronucleus test** is a test used in toxicological screening for potential [genotoxic](/source/Genotoxic) compounds. The assay is now recognized as one of the most successful and reliable assays for genotoxic [carcinogens](/source/Carcinogen), i.e., carcinogens that act by causing genetic damage and is recommended by the [OECD](/source/OECD) guideline for the testing of chemicals.[1] There are two major versions of this test, one *[in vivo](/source/In_vivo)* and the other *[in vitro](/source/In_vitro)*.

The *in vivo* test normally uses mouse [bone marrow](/source/Bone_marrow) or mouse peripheral blood. When a bone marrow [erythroblast](/source/Erythroblast) develops into a polychromatic [erythrocyte](/source/Erythrocyte), the main nucleus is extruded; any [micronucleus](/source/Micronucleus) that has been formed may remain behind in the otherwise anucleated [cytoplasm](/source/Cytoplasm). Visualisation of [micronuclei](/source/Micronuclei) is facilitated in these cells because they lack a main [nucleus](/source/Cell_nucleus). An increase in the frequency of micronucleated [polychromatic](/source/Polychromatic) [erythrocytes](/source/Erythrocytes) in treated animals is an indication of induced [chromosome](/source/Chromosome) damage.[2]

[Micronuclei](/source/Micronuclei) were first used to quantify chromosomal damage by H.J. Evans et al., in root tips of the [Broad Bean](/source/Broad_Bean), *Vicia faba*. Subsequently, the *in vivo* assay was developed independently by W. Schmid and by J.A. Heddle and their colleagues. The mouse peripheral blood assay was developed by J.T. MacGregor and has now been adapted for measurement by [flow cytometry](/source/Flow_cytometry) by A. Tometsko and colleagues. The first use of [micronuclei](/source/Micronuclei) in [cultured cells](/source/Cell_culture) was by J.A. Heddle and colleagues in human [lymphocytes](/source/Lymphocytes). The assay has been improved by M. Fenech and colleagues for use in [lymphocytes](/source/Lymphocytes) and other cells in [culture cells](/source/Cell_culture).

Simple [Giemsa staining](/source/Giemsa_stain) was originally used for MN scoring. Later, the cytokinesis-block micronucleus (CBMN) method was established, where [Cyt-B](/source/Cytochalasin_B), an inhibitor of the spindle assembly, was used to prevent [cytokinesis](/source/Cytokinesis) occurring after nuclear division. The CBMN method is used for the assessment of chromosomal loss, breakage, and associated [apoptosis](/source/Apoptosis) and [necrosis](/source/Necrosis) induced by different [mutagens](/source/Mutagen).[3]

A **micronucleus** is the erratic (third) nucleus that is formed during the [anaphase](/source/Anaphase) of [mitosis](/source/Mitosis) or [meiosis](/source/Meiosis). Micronuclei (the name means 'small nucleus') are cytoplasmic bodies having a portion of acentric chromosome or whole chromosome which was not carried to the opposite poles during the anaphase. Their formation results in the daughter cell lacking a part or all of a chromosome. These chromosome fragments or whole chromosomes normally develop nuclear membranes and form as micronuclei as a third nucleus. After cytokinesis, one daughter cell ends up with one nucleus and the other ends up with one large and one small nucleus, i.e., micronuclei. There is a chance of more than one micronucleus forming when more genetic damage has happened. The micronucleus test is used as a tool for genotoxicity assessment of various chemicals. It is easier to conduct than the chromosomal aberration test in terms of procedures and evaluation. Using [fluorescent in situ hybridization](/source/Fluorescent_in_situ_hybridization) (FISH) with probes targeted to the [centromere](/source/Centromere) region, it can be determined if a whole chromosome, or only a fragment is lost.

## See also

- [Cancerous Micronuclei](/source/Cancerous_Micronuclei)
- [Micronucleus](/source/Micronucleus)

## References and notes

1. [http://www.oecd.org/document/35/0,3746,en_2649_34377_45773411_1_1_1_1,00.html](http://www.oecd.org/document/35/0,3746,en_2649_34377_45773411_1_1_1_1,00.html). [Archived](https://web.archive.org/web/20120118043013/http://www.oecd.org/document/35/0,3746,en_2649_34377_45773411_1_1_1_1,00.html) 2012-01-18 at the Wayback Machine

1. [http://www.oecd.org/dataoecd/18/34/1948442.pdf](http://www.oecd.org/dataoecd/18/34/1948442.pdf). [Archived](https://web.archive.org/web/20100705020008/http://www.oecd.org/dataoecd/18/34/1948442.pdf) 2010-07-05 at the Wayback Machine

1. Luzhna, Lidia; Kathiria, Palak; Kovalchuk, Olga (2013-01-01). "Micronuclei in genotoxicity assessment: from genetics to epigenetics and beyond". *Frontiers in Genetics*. **4**: 131. [doi:10.3389/fgene.2013.00131](https://doi.org/10.3389/fgene.2013.00131). [PMC 3708156](https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3708156). [PMID 23874352](https://pubmed.ncbi.nlm.nih.gov/23874352)

---
Adapted from the Wikipedia article [Micronucleus test](https://en.wikipedia.org/wiki/Micronucleus_test) by Wikipedia contributors ([contributor history](https://en.wikipedia.org/wiki/Micronucleus_test?action=history)). Available under [Creative Commons Attribution-ShareAlike 4.0 International](https://creativecommons.org/licenses/by-sa/4.0/). Changes may have been made.
