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Updated: Jan 27, 2026

Isolation, Identification, and Purification of Murine Thymic Epithelial Cells
Published on: August 8, 2014
Activation of the mTOR/ Akt pathway in thymic epithelial cells derived from thymomas
Jean-Michel Maury1,2,3, Claire Merveilleux du Vignaux1,4, Gabrielle Drevet1,2
1IVPC UMR754 INRA, Univ Lyon, Université Claude Bernard Lyon 1, EPHE, Lyon, France.
Abstract:
The pathogenesis of thymic epithelial tumors remains poorly elucidated. The PIK3/Akt/mTOR pathway plays a key role in various cancers; interestingly, several phase I/II studies have reported a positive effect of mTOR inhibitors in disease control in thymoma patients. A major limit for deciphering cellular and molecular events leading to the transformation of thymic epithelial cells or for testing drug candidates is the lack of reliable in vitro cell system. We analyzed protein expression and activation of key players of the Akt/ mTOR pathway namely Akt, mTOR, and P70S6K in eleven A, B and AB thymomas as well as in normal thymuses. While only Akt and phospho-Akt were expressed in normal thymuses, both Akt and mTOR were activated in thymomas. Phospho-P70S6K was expressed in all thymic tumors whatever their subtypes, and absent in normal thymus. Interestingly, we report the activation of Akt, mTOR and P70S6 proteins in primary thymic epithelial cells maintained for short period of time after their derivation from seven AB and B thymomas. Finally, we showed that rapamycin (100 nM) significantly reduced proliferation of thymoma- derived epithelial cells without inducing cell death. Our results suggest that the activation of the Akt/ mTOR pathway might participate to the cell proliferation associated with tumor growth. Ultimately, our data enhance the potential role of thymic epithelial cells derived from tissue specimens for in vitro exploration of molecular abnormalities in rare thymic tumors.
Insights
The PIK3/Akt/mTOR pathway is activated in thymic tumors, driving cell proliferation. Thymoma-derived cells show promise for in vitro studies of these rare cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- The pathogenesis of thymic epithelial tumors is not well understood.
- The PIK3/Akt/mTOR pathway is implicated in various cancers, with mTOR inhibitors showing promise in thymoma.
- A lack of reliable in vitro systems hinders research into thymic epithelial cell transformation and drug testing.
Purpose of the Study:
- To investigate the role of the Akt/mTOR pathway in thymic epithelial tumors.
- To establish and utilize an in vitro system using primary thymoma-derived epithelial cells.
Main Methods:
- Analysis of Akt/mTOR pathway protein expression and activation in normal thymuses and thymomas.
- Derivation and short-term culture of primary thymic epithelial cells from thymoma specimens.
- Assessment of rapamycin's effect on proliferation of thymoma-derived cells.
Main Results:
- Akt and mTOR were activated in thymomas, unlike normal thymuses.
- Phospho-P70S6K was present in all thymic tumors but absent in normal thymus.
- Rapamycin inhibited proliferation of thymoma-derived epithelial cells without causing cell death.
Conclusions:
- Activation of the Akt/mTOR pathway likely contributes to thymic tumor cell proliferation.
- Primary thymic epithelial cells from tumors are a valuable tool for in vitro research on rare thymic tumors.
- Targeting the Akt/mTOR pathway may offer therapeutic potential for thymic epithelial tumors.
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