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Generation and Expansion of Primary, Malignant Pleural Mesothelioma Tumor Lines
Published on: April 21, 2022
The genetic susceptibility in the development of malignant pleural mesothelioma
Ombretta Melaiu1, Federica Gemignani1, Stefano Landi1
1Department of Biology, University of Pisa, Pisa, Italy.
Abstract:
Malignant pleural mesothelioma (MPM) is a cancer of the pleural cavity whose main risk factor is exposure to asbestos. However, it has been shown that only a minority of exposed people develops MPM. In fact, the incidence among professionally exposed workers was shown to vary between 0.5% and 18.0%. Various hints suggested that other important cofactors could play a role, in particular the genetic susceptibility. Impressive is the case of Cappadocians families exposed to erionite and affected by an "epidemic" of MPM with about half of the inhabitants dying for the disease. However, no results for a "Cappadocia" gene of susceptibility to MPM have been obtained yet and more studies are needed. Among asbestos-exposed workers, several studies reported familial cases of MPM, suggesting that heredity could be important in the tumor development. However, large studies on familial clusters showed only weak increased risks that could be attributable also to indirect exposures in a contaminated household. Moreover, the risk of developing MPM is increased of a limited extent among people exposed to asbestos with a positive history of familial cancers. A particular is represented by carriers of germline mutations within BAP1 gene. In families and in animal models, mutations within BAP1 are strongly predisposing to develop MPM. However, also other types of cancer (such as uveal melanoma) are present, thus BAP1 mutations are considered as responsible for a hereditary form of a multi-cancer syndrome. In any case, among sporadic MPM, the prevalence of germline BAP1 mutations is negligible. Finally, genetic studies highlighted the presence of low-risk susceptibility alleles, such as those within XRCC3, NAT2 or GSTM1. Two different genome-wide association studies could not find positive associations reaching the genome-wide statistical significance threshold, however, both were concordant in showing a weak signal within the SDK1 gene region. Overall, it could be concluded that, as for other types of sporadic cancers, the susceptibility to develop MPM following asbestos exposure is modulated moderately by the individual genetic background. Further studies on larger series could help in a better characterization of more genes predisposing to MPM, being this tumor a rare disease.
Insights
Genetic susceptibility plays a moderate role in asbestos-exposed individuals developing malignant pleural mesothelioma (MPM). Further research is needed to identify specific genes that influence MPM risk.
Area of Science:
- Oncology
- Genetics
- Environmental Health
Background:
- Malignant pleural mesothelioma (MPM) is a rare cancer primarily linked to asbestos exposure.
- Only a fraction of asbestos-exposed individuals develop MPM, suggesting other contributing factors.
- Genetic susceptibility is hypothesized to be a key cofactor in MPM development.
Purpose of the Study:
- To investigate the role of genetic factors in the susceptibility to malignant pleural mesothelioma.
- To review existing evidence on familial cases, specific gene mutations (e.g., BAP1), and low-risk alleles.
- To understand how individual genetic background modulates MPM risk after asbestos exposure.
Main Methods:
- Review of epidemiological studies on asbestos-exposed workers and familial mesothelioma cases.
- Analysis of genetic studies, including germline mutations (BAP1) and susceptibility alleles (XRCC3, NAT2, GSTM1).
- Examination of genome-wide association studies (GWAS) for MPM susceptibility loci.
Main Results:
- Familial studies show a weak increased risk, potentially due to shared household exposures.
- Germline BAP1 mutations strongly predispose to MPM and other cancers, but are rare in sporadic MPM.
- Low-risk alleles (XRCC3, NAT2, GSTM1) and a weak signal in the SDK1 region were identified.
Conclusions:
- Individual genetic background moderately influences susceptibility to MPM following asbestos exposure.
- While BAP1 mutations are significant, they are not prevalent in sporadic MPM cases.
- Further large-scale genetic studies are necessary to fully characterize genes predisposing to MPM.
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