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Primary Culture of Rat Adrenocortical Cells and Assays of Steroidogenic Functions
Published on: March 12, 2019
Characterization of the mTOR pathway in human normal adrenal and adrenocortical tumors
Maria Cristina De Martino1, Richard A Feelders1, Wouter W de Herder1
1Department of Internal MedicineDivision of Endocrinology, Erasmus Medical Center, Rotterdam, The NetherlandsDipartimento di Medicina Clinica e ChirurgiaSezione di Endocrinologia, Università Federico II, Naples, ItalyDepartment of PathologyErasmus Medical Center, Rotterdam and Reinier de Graaf Gasthuis, Delft, The Netherlands.
Abstract:
The mTOR pathway has recently been suggested as a new potential target for therapy in adrenocortical carcinomas (ACCs). The aim of the current study is to describe the expression of the mTOR pathway in normal adrenals (NAs) and pathological adrenals and to explore whether there are correlation between the expression of these proteins and the in vitro response to sirolimus. For this purpose, the MTOR, S6K1 (RPS6KB1), and 4EBP1 (EIF4EBP1) mRNA expression were evaluated in ten NAs, ten adrenal hyperplasias (AHs), 17 adrenocortical adenomas (ACAs), and 17 ACCs by qPCR, whereas total(t)/phospho(p)-MTOR, t/p-S6K, and t/p-4EBP1 protein expression were assessed in three NAs, three AHs, six ACAs, and 20 ACCs by immunohistochemistry. The effects of sirolimus on cell survival and/or cortisol secretion in 12 human primary cultures of adrenocortical tumors (ATs) were also evaluated. In NAs and AHs, layer-specific expression of evaluated proteins was observed. S6K1 mRNA levels were lower in ACCs compared with NAs, AHs, and ACAs (P<0.01). A subset of ATs presented a moderate to high staining of the evaluated proteins. Median t-S6K1 protein expression in ACCs was lower than that in ACAs (P<0.01). Moderate to high staining of p-S6K1 and/or p-4EBP1 was observed in most ATs. A subset of ACCs not having moderate to high staining had a higher Weiss score than others (P<0.029). In primary AT cultures, sirolimus significantly reduced cell survival or cortisol secretion only in sporadic cases. In conclusion, these data suggest the presence of an activated mTOR pathway in a subset of ATs and a possible response to sirolimus only in certain ACC cases.
Insights
The mTOR pathway is activated in some adrenal tumors, but response to sirolimus therapy varies. Further research is needed to identify specific adrenocortical carcinoma (ACC) cases that may benefit from mTOR-targeted treatments.
Area of Science:
- Endocrinology
- Oncology
- Molecular Biology
Background:
- The mechanistic target of rapamycin (mTOR) pathway is a potential therapeutic target for adrenocortical carcinomas (ACCs).
- Understanding mTOR pathway expression in normal and pathological adrenal tissues is crucial for developing targeted therapies.
Purpose of the Study:
- To investigate the expression of mTOR pathway components (mTOR, S6K1, 4EBP1) in normal adrenals (NAs) and various adrenal tumors (AHs, ACAs, ACCs).
- To correlate protein expression with in vitro response to sirolimus in adrenocortical tumors (ATs).
Main Methods:
- Quantitative PCR (qPCR) to assess mRNA levels of MTOR, S6K1, and 4EBP1.
- Immunohistochemistry to evaluate total and phosphorylated protein expression of mTOR, S6K1, and 4EBP1.
- In vitro assessment of sirolimus effects on cell survival and cortisol secretion in primary AT cultures.
Main Results:
- S6K1 mRNA levels were significantly lower in ACCs compared to NAs, AHs, and ACAs.
- While some ATs showed moderate to high protein expression, median t-S6K1 was lower in ACCs than ACAs.
- Phosphorylated S6K1 and 4EBP1 were detected in most ATs; however, sirolimus efficacy was limited to sporadic cases in vitro.
- ACCs with lower staining for these proteins exhibited higher Weiss scores.
Conclusions:
- The mTOR pathway is activated in a subset of adrenocortical tumors.
- Sirolimus shows potential therapeutic benefit only in specific adrenocortical carcinoma cases.
- Further investigation is warranted to identify predictive biomarkers for sirolimus response in ACCs.
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