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      Increased expression of ACTH (MC2R) and androgen (AR) receptors in giant bilateral myelolipomas from patients with congenital adrenal hyperplasia

      BMC Endocrine Disorders
      BioMed Central
      adrenal myelolipoma, congenital adrenal hyperplasia, acth, mc2r, androgen receptor, clonality analysis

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          Abstract

          Background Although chronic adrenocorticotropic hormone (ACTH) and androgen hyperstimulation are assumed to be involved in the pathogenesis of adrenal myelolipomas associated with poor-compliance patients with congenital adrenal hyperplasia (CAH), the expression of their receptors has not yet been demonstrated in these tumors so far. Methods We analyzed Melanocortin 2 receptor (MC2R), Androgen Receptor (AR), Leptin (LEP), and Steroidogenic factor 1 (SF1) expression using real-time qRT-PCR in two giant bilateral adrenal myelolipomas from two untreated simple virilizing CAH cases and in two sporadic adrenal myelolipomas. In addition, the X-chromosome inactivation pattern and CAG repeat numbers in AR exon 1 gene were evaluated in the 4 cases. Results The MC2R gene was overexpressed in myelolipomas from 3 out of 4 patients. AR overexpression was detected in 2 tumors: a giant bilateral myelolipoma in a CAH patient and a sporadic case. Simultaneous overexpression of AR and MC2R genes was found in two of the cases. Interestingly, the bilateral giant myelolipoma associated with CAH that had high androgen and ACTH levels but lacked MC2R and AR overexpression presented a significantly shorter AR allele compared with other tumors. In addition, X-chromosome inactivation pattern analysis showed a polyclonal origin in all tumors, suggesting a stimulatory effect as the trigger for tumor development. Conclusion These findings are the first evidence for MC2R or AR overexpression in giant bilateral myelolipomas from poor-compliance CAH patients.

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          The clinically inapparent adrenal mass: update in diagnosis and management.

          Clinically inapparent adrenal masses are incidentally detected after imaging studies conducted for reasons other than the evaluation of the adrenal glands. They have frequently been referred to as adrenal incidentalomas. In preparation for a National Institutes of Health State-of-the-Science Conference on this topic, extensive literature research, including Medline, BIOSIS, and Embase between 1966 and July 2002, as well as references of published metaanalyses and selected review articles identified more than 5400 citations. Based on 699 articles that were retrieved for further examination, we provide a comprehensive update of the diagnostic and therapeutic approaches focusing on endocrine and radiological features as well as surgical options. In addition, we present recent developments in the discovery of tumor markers, endocrine testing for subclinical disease including autonomous glucocorticoid hypersecretion and silent pheochromocytoma, novel imaging techniques, and minimally invasive surgery. Based on the statements of the conference, the available literature, and ongoing studies, our aim is to provide practical recommendations for the management of this common entity and to highlight areas for future studies and research.
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            High frequency of adrenal myelolipomas and testicular adrenal rest tumours in adult Norwegian patients with classical congenital adrenal hyperplasia because of 21-hydroxylase deficiency.

            Increased frequencies of adrenal tumours and testicular adrenal rest tumours (TART) have been reported in patients with 21-hydroxylase deficiency (21OHD). Patients, methods and design From a cross-sectional population-based study of 101 adult Norwegian patients with 21OHD, sixty-two participated in this study (23 men, 39 women; age range 18-75); thirty-two were salt wasting (SW) and 30 simple virilizing (SV); they were assessed with adrenal computed tomography (CT), testicular ultrasound and hormone measurement in the morning after overnight medication fast. Nine adrenal tumours were detected in seven (11%) patients (bilateral in 2); four were myelolipomas and one a phaeochromocytoma. Seventeen (27%) had normal adrenal size, whereas 36 (58%) had persisting hyperplasia, and seven (11%) adrenal hypoplasia. Abnormal adrenals were more common in SW than in SV. TART occurred exclusively in SW and was present in seven (57%) of these men. Testicular volumes were small compared with normative data. Morning ACTH and 17-hydroxyprogesterone levels correlated positively with adrenal dimensions and frequency of TART. In this unselected population of patients with classical 21OHD, we found high frequencies of adrenal tumours, particularly myelolipomas, and of hyperplasia and hypoplasia, and TART in SW. It is important that physicians are aware that benign adrenal and testicular tumours occur frequently in 21OHD. Furthermore, these findings may reflect inappropriate glucocorticoid therapy, making a case for the advancement of novel physiological treatment modalities. © 2011 Blackwell Publishing Ltd.
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              Adrenal myelolipomas in patients with congenital adrenal hyperplasia: review of the literature and a case report.

              To review the association between congenital adrenal hyperplasia (CAH) and adrenal myelolipomas and report a case of bilateral, giant adrenal myelolipomas in a patient with untreated CAH due to 21-hydroxylase deficiency. We describe the patient's clinical presentation, imaging findings, and laboratory test results and review the relevant English-language literature concerning patients with both CAH and myelolipomas. A 45-year-old man with untreated CAH due to 21-hydroxylase deficiency presented with increasing abdominal girth and abdominal pain. Computed tomography of the abdomen demonstrated very low-density adrenal masses (22 × 11 cm on the left side and 6 × 5.5-cm on the right side) consistent with adrenal myelolipomas. The left adrenal myelolipoma was resected (24.4 × 19.0 × 9.5 cm; 2557 g). The mass was composed of mature adipose tissue with areas of hematopoietic cells of myeloid, erythroid, and megakaryocytic cell lines. Islands of adrenal cortical cells were scattered between the adipose and hematopoietic tissue. Including the present case, we identified 31 patients with both CAH and myelolipomas who have been described in the English-language literature. The details of these cases were reviewed. Persons with CAH may be at increased risk of developing adrenal myelolipomas, particularly if their CAH is poorly controlled. How and whether chronic exposure of the adrenal glands to high corticotropin levels increases the risk of developing myelolipomas remains a matter of speculation.
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                Author and article information

                Journal
                4024625
                10.1186/1472-6823-14-42
                http://creativecommons.org/licenses/by/2.0

                Endocrinology & Diabetes
                adrenal myelolipoma,congenital adrenal hyperplasia,acth,mc2r,androgen receptor,clonality analysis

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