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Implantation and Monitoring by PET/CT of an Orthotopic Model of Human Pleural Mesothelioma in Athymic Mice
Published on: December 21, 2019
Pleural mesothelioma
Dean A Fennell1,2, Yoshitaka Sekido3, Paul Baas4,5
1University of Leicester, Leicester, UK. df132@leicester.ac.uk.
Abstract:
Mesothelioma is a lethal cancer caused by exposure to asbestos, which arises predominantly in the pleural lining of the thoracic cavity or, less commonly, in the peritoneum, pericardium or tunica vaginalis. The incidence of mesothelioma increased globally during the late twentieth century, correlating with the use of asbestos, and it continues to rise in some regions. Asbestos tumorigenesis involves fibre persistence that leads to DNA damage mediated by chronic inflammation. The genomic landscape of mesothelioma is predominantly characterized by tumour suppressor alterations, most frequently occurring in BAP1, CDKN2A, CDKN2B, MTAP, NF2 and TP53. Patients with mesothelioma commonly present with fatigue, dyspnoea and/or cough caused by pleural effusion, pain and reduced appetite with weight loss. Imaging, cytology, histology and immunohistochemistry are used in diagnosis and support tumour staging. Genetic tests are relevant to reveal disease predispositions. Mesotheliomas are classified on the basis of histology into three distinct subtypes: epithelioid (the most common subtype with the best prognosis), biphasic and sarcomatoid (worst prognosis). Chemotherapy has been the standard of care for the past two decades but immune checkpoint inhibition targeting PD1 and CTLA4 is now considered to be the first-line treatment, showing improvement compared with chemotherapy. Few randomized trials have investigated the role of surgery and radiotherapy and none has found a clear benefit over systemic therapies. Mesothelioma is associated with considerable negative effects on quality of life in physical and emotional domains and also substantially affects patients' families and caregivers.
Insights
Mesothelioma, a cancer linked to asbestos exposure, is diagnosed through various methods and classified by histology. Immune checkpoint inhibitors now lead treatment, improving outcomes over chemotherapy.
Area of Science:
- Oncology
- Environmental Health
Background:
- Mesothelioma is a rare but aggressive cancer primarily caused by asbestos exposure.
- Its incidence rose globally with asbestos use and is linked to chronic inflammation and DNA damage.
- Key genetic alterations involve tumor suppressor genes like BAP1, CDKN2A, and TP53.
Purpose of the Study:
- To provide a comprehensive overview of mesothelioma, including its causes, diagnosis, subtypes, and current treatment strategies.
- To highlight the shift in first-line treatment from chemotherapy to immune checkpoint inhibitors.
Main Methods:
- Review of existing literature on mesothelioma epidemiology, pathogenesis, diagnosis, and treatment.
- Analysis of diagnostic tools including imaging, cytology, histology, and immunohistochemistry.
- Examination of genetic predispositions and tumor suppressor alterations.
Main Results:
- Mesothelioma presents with symptoms like dyspnea and fatigue, often due to pleural effusion.
- Histological subtypes (epithelioid, biphasic, sarcomatoid) correlate with prognosis.
- Immune checkpoint inhibitors (PD1, CTLA4) demonstrate improved efficacy over traditional chemotherapy.
Conclusions:
- Mesothelioma diagnosis relies on integrated clinical, imaging, and pathological findings.
- Emerging immunotherapies represent a significant advancement in mesothelioma treatment.
- Further research is needed to clarify the roles of surgery and radiotherapy.
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