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Published on: March 6, 2018
Characterization of Heterogeneous Prostate Tumors in Targeted Pten Knockout Mice
Hanneke Korsten1, Angelique C J Ziel-van der Made1, Wytske M van Weerden2
1Department of Pathology, Josephine Nefkens Institute, Erasmus Medical Center, Rotterdam, The Netherlands.
Abstract:
Previously, we generated a preclinical mouse prostate tumor model based on PSA-Cre driven inactivation of Pten. In this model homogeneous hyperplastic prostates (4-5m) developed at older age (>10m) into tumors. Here, we describe the molecular and histological characterization of the tumors in order to better understand the processes that are associated with prostate tumorigenesis in this targeted mouse Pten knockout model. The morphologies of the tumors that developed were very heterogeneous. Different histopathological growth patterns could be identified, including intraductal carcinoma (IDC), adenocarcinoma and undifferentiated carcinoma, all strongly positive for the epithelial cell marker Cytokeratin (CK), and carcinosarcomas, which were negative for CK. IDC pattern was already detected in prostates of 7-8 month old mice, indicating that it could be a precursor stage. At more than 10 months IDC and carcinosarcoma were most frequently observed. Gene expression profiling discriminated essentially two molecular subtypes, denoted tumor class 1 (TC1) and tumor class 2 (TC2). TC1 tumors were characterized by high expression of epithelial markers like Cytokeratin 8 and E-Cadherin whereas TC2 tumors showed high expression of mesenchyme/stroma markers such as Snail and Fibronectin. These molecular subtypes corresponded with histological growth patterns: where TC1 tumors mainly represented adenocarcinoma/intraductal carcinoma, in TC2 tumors carcinosarcoma was the dominant growth pattern. Further molecular characterization of the prostate tumors revealed an increased expression of genes associated with the inflammatory response. Moreover, functional markers for senescence, proliferation, angiogenesis and apoptosis were higher expressed in tumors compared to hyperplasia. The highest expression of proliferation and angiogenesis markers was detected in TC2 tumors. Our data clearly showed that in the genetically well-defined PSA-Cre;Pten-loxP/loxP prostate tumor model, histopathological, molecular and biological heterogeneity occurred during later stages of tumor development.
Insights
This study characterizes a Pten knockout mouse prostate tumor model, revealing significant histopathological and molecular heterogeneity. These findings highlight the complex processes driving prostate cancer development in this model.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- A preclinical prostate tumor model was generated using Pten inactivation driven by PSA-Cre.
- Homogeneous hyperplastic prostates in this model progressed to tumors at older ages.
Purpose of the Study:
- To molecularly and histologically characterize tumors in the PSA-Cre;Pten-loxP/loxP mouse model.
- To understand the processes associated with prostate tumorigenesis in this Pten knockout model.
Main Methods:
- Histopathological analysis of tumor morphologies and growth patterns.
- Gene expression profiling to identify molecular subtypes (TC1 and TC2).
- Analysis of functional markers for inflammation, senescence, proliferation, angiogenesis, and apoptosis.
Main Results:
- Tumors exhibited significant heterogeneity, including intraductal carcinoma (IDC), adenocarcinoma, undifferentiated carcinoma, and carcinosarcomas.
- Two molecular subtypes (TC1 and TC2) were identified, correlating with distinct histological patterns.
- TC1 tumors showed epithelial markers; TC2 tumors displayed mesenchymal markers and higher proliferation/angiogenesis.
- Increased expression of inflammatory response genes, senescence, proliferation, angiogenesis, and apoptosis markers were observed in tumors.
Conclusions:
- The PSA-Cre;Pten-loxP/loxP mouse model displays histopathological and molecular heterogeneity during later stages of prostate tumor development.
- Intraductal carcinoma (IDC) may represent a precursor stage to more advanced tumors.
- Distinct molecular subtypes correlate with specific histological features and biological activities, offering insights into prostate tumorigenesis.

