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July 15, 2012American Journal Of Pathology170 citationsOpen Access

Progression to Adrenocortical Tumorigenesis in Mice and Humans through Insulin-Like Growth Factor 2 and β-Catenin

JHJoanne H. HeatonSt Helens and Knowsley Teaching Hospitals NHS TrustMWMichelle A. WoodUniversity of PittsburghAKAlex C. KimThe University of Texas Southwestern Medical Center

Key Result

Abnormal cytoplasmic or nuclear beta-catenin accumulation was present in 30% of adrenocortical carcinomas and was associated with poorer survival, though not independent of tumor grade.

Study Design

Type

Observational (n=118)

Multicenter

Yes

Structured PICO

Does the combination of WNT/β-catenin and IGF2 pathway dysregulation drive adrenocortical tumorigenesis and affect patient survival?

P
Population
118 adult patients with adrenocortical adenoma or carcinoma from the US and Brazil, evaluated for beta-catenin status and survival.
E
Exposure
Abnormal β-catenin accumulation (CTNNB1 mutations) and elevated IGF2 expression (loss of imprinting).
C
Comparator
Normal membranous β-catenin staining and normal IGF2 expression.
O
Outcome
Adrenocortical tumorigenesis (hyperplasia, adenoma, carcinoma formation) and patient survival.surrogate

Dysregulation of both WNT/β-catenin and IGF2 pathways cooperatively drives adrenocortical tumorigenesis, and abnormal β-catenin accumulation correlates with poor prognosis in adrenocortical carcinoma.

Main Result

Relative Risk: 1.54 (95% CI 0.7–3.41)

p-value: p=0.29

Limitations

  • Retrospective nature of the human cohorts
  • Variability in clinical diagnosis of hormone excess between the two populations

Abstract

Dysregulation of the WNT and insulin-like growth factor 2 (IGF2) signaling pathways has been implicated in sporadic and syndromic forms of adrenocortical carcinoma (ACC). Abnormal β-catenin staining and CTNNB1 mutations are reported to be common in both adrenocortical adenoma and ACC, whereas elevated IGF2 expression is associated primarily with ACC. To better understand the contribution of these pathways in the tumorigenesis of ACC, we examined clinicopathological and molecular data and used mouse models. Evaluation of adrenal tumors from 118 adult patients demonstrated an increase in CTNNB1 mutations and abnormal β-catenin accumulation in both adrenocortical adenoma and ACC. In ACC, these features were adversely associated with survival. Mice with stabilized β-catenin exhibited a temporal progression of increased adrenocortical hyperplasia, with subsequent microscopic and macroscopic adenoma formation. Elevated Igf2 expression alone did not cause hyperplasia. With the combination of stabilized β-catenin and elevated Igf2 expression, adrenal glands were larger, displayed earlier onset of hyperplasia, and developed more frequent macroscopic adenomas (as well as one carcinoma). Our results are consistent with a model in which dysregulation of one pathway may result in adrenal hyperplasia, but accumulation of a second or multiple alterations is necessary for tumorigenesis.

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Cite This Study

Heaton et al. (2012) conducted an observational in Adrenocortical tumors (adenoma and carcinoma) (n=118). Abnormal beta-catenin accumulation vs. Membranous beta-catenin (normal) was evaluated on Overall survival in adrenocortical carcinoma (multivariable analysis) (RR 1.54, 95% CI 0.70-3.41, p=0.29). Abnormal cytoplasmic or nuclear beta-catenin accumulation was present in 30% of adrenocortical carcinomas and was associated with poorer survival, though not independent of tumor grade.

synapsesocial.com/papers/6aa179701fe7c765783d44f6https://doi.org/10.1016/j.ajpath.2012.05.026
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