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Updated: Apr 29, 2026

Heterotypic Three-dimensional In Vitro Modeling of Stromal-Epithelial Interactions During Ovarian Cancer Initiation and Progression
Published on: August 28, 2012
Deregulation of microcephalin and ASPM expression are correlated with epithelial ovarian cancer progression
Rawiah Alsiary1, Anke Brüning-Richardson2, Jacquelyn Bond1
1Leeds Institute of Biomedical and Clinical Sciences, University of Leeds, Leeds, United Kingdom.
Abstract:
Mutations in the MCPH1 (Microcephalin) and ASPM (abnormal spindle-like microcephaly associated) genes cause primary microcephaly. Both are centrosomal associated proteins involved in mitosis. Microcephalin plays an important role in DNA damage response and ASPM is required for correct division of proliferative neuro-epithelial cells of the developing brain. Reduced MCPH1 mRNA expression and ASPM mRNA over-expression have been implicated in the development of human carcinomas. Epithelial ovarian cancer (EOC) is characterised by highly aneuploid tumours. Previously we have reported low Microcephalin and high ASPM protein levels and associations with clinico-pathological parameters in malignant cells from ascitic fluids. To confirm these previous findings on a larger scale Microcephalin and ASPM expression levels and localisations were evaluated by immunohistochemistry in two cohorts; a training set of 25 samples and a validation set of 322 EOC tissue samples. Results were correlated to the associated histopathological data. In normal ovarian tissues the Microcephalin nuclear staining pattern was consistently strong. In the cancer tissues, we identified low nuclear Microcephalin expression in high grade and advanced stage tumours (p<0.0001 and p = 0.0438 respectively). ASPM had moderate to high nuclear and low to moderate cytoplasmic expression in normal tissue. Cytoplasmic ASPM expression decreased with tumour grade and stage in the serous subtype of EOC (p = 0.023 and p = 0.011 respectively). Cytoplasmic ASPM increased with tumour stage in the endometrioid subtype (p = 0.023). Increasing tumour invasiveness (T3) and lymph node involvement (N1) also correlated with a decrease in cytoplasmic ASPM in EOC (p = 0.02 and p = 0.04 respectively). We have validated previous findings of deregulated expression of Microcephalin and ASPM in EOC by confirming associations for low nuclear Microcephalin levels and high cytoplasmic ASPM levels in a larger scale tumour tissue study. Microcephalin and ASPM may prove useful biomarkers in EOC.
Insights
Low nuclear Microcephalin and high cytoplasmic ASPM protein levels are associated with epithelial ovarian cancer progression. These findings suggest Microcephalin and ASPM may serve as useful biomarkers for EOC.
Area of Science:
- Oncology
- Cell Biology
- Genetics
Background:
- Mutations in MCPH1 and ASPM genes cause primary microcephaly.
- MCPH1 and ASPM are crucial for mitosis and DNA damage response.
- Deregulation of MCPH1 and ASPM is linked to human carcinomas.
Purpose of the Study:
- To validate and expand on previous findings of Microcephalin and ASPM protein levels in epithelial ovarian cancer (EOC).
- To investigate the association of Microcephalin and ASPM expression with clinico-pathological parameters in EOC tissue samples.
Main Methods:
- Immunohistochemistry was used to evaluate Microcephalin and ASPM expression in two cohorts of EOC tissue samples (n=347).
- Expression levels and localization were correlated with histopathological data, including tumor grade, stage, invasiveness, and lymph node involvement.
Main Results:
- Low nuclear Microcephalin expression was significantly associated with high-grade and advanced-stage EOC.
- Cytoplasmic ASPM expression showed differential correlations with tumor grade and stage across EOC subtypes (serous and endometrioid).
- Decreased cytoplasmic ASPM correlated with increased tumor invasiveness and lymph node involvement in EOC.
Conclusions:
- The study validates previous findings of deregulated Microcephalin and ASPM expression in EOC.
- Low nuclear Microcephalin and high cytoplasmic ASPM levels are associated with advanced EOC.
- Microcephalin and ASPM show potential as prognostic biomarkers for epithelial ovarian cancer.
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