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Carney complex--an unexpected finding during puerperium.

Carney complex is an extremely rare, autosomal dominant, multi-system disorder characterized by multiple neoplasias and lentiginosis. The genetic defect responsible for this complex has been localized to the short arm of chromosome 2 (2p16). The most prevalent clinical manifestations in patients with Carney complex are spotty skin pigmentation, skin and cardiac myxomas, Cushing's syndrome and acromegaly. Here we report the case of a 31-year-old woman with a spontaneous pregnancy. At 32 weeks of gestation, she was admitted to our Department of Obstetrics with hypertension and severe back pain. In addition, she had unusual pigmentation and typical cushingoid features. One day after admission, the pregnancy was terminated by emergency cesarian section because of preeclampsia and pathological CTG. During the postoperative period the severe back pain persisted, and radiographic evaluation revealed a collapse of L(2)/L(3) with severe osteopenia. A CT scan showed a mass in the right suprarenal area. Histopathological examination revealed a primary pigmented nodular adrenocortical disease. After biochemical confirmation of the diagnosis of Cushing's syndrome, it was recognized that the patient met the diagnostic criteria for Carney complex.

Acromegaly↗

Sex-linked sudanophilic leukodystrophy with adrenocortical atrophy (so-called Schilder's disease). Report of a case and review of the literature.

We report the clinical and pathologic features of a case of sex-linked sudanophilic leukodystrophy in an 8-year-old boy. Our survey of the pertinent literature on this disease supports the current view that it is not limited to the central nervous system, but is a generalized process, probably caused by an unknown metabolic defect, with a definitive genetic pattern and varying expressions. Although the disease was originally described by Schilder as a single entity, cases like ours show that the term "sudanophilic leukodystrophy" represents a better classification than the usually misinterpreted eponym, "encephalitis periaxialis diffusa."

Adrenal Cortex↗

Cushing's syndrome resulting from primary pigmented nodular adrenocortical disease.

In a 10-year-old boy with Cushing's syndrome, the dexamethasone suppression test, the metyrapone test, and both basal and corticotropin-releasing factor-stimulated corticotropin levels all indicated a primary adrenal disorder. However, a computed tomographic scan failed to detect an adrenal tumor. At surgery, the adrenal glands were not enlarged but were studded with small pigmented nodules composed of enlarged nonmalignant adrenocortical cells. This unusual abnormality, referred to as primary pigmented nodular adrenocortical disease, is associated with autonomous hypersecretion of cortisol primarily in children and young adults. Our patient was cured by total bilateral adrenalectomy and corticosteroid replacement therapy, the treatment of choice for this condition.

Adolescent↗

Carney's complex with primary pigmented nodular adrenocortical disease and spotty pigmentations.

Carney's complex is composed of myxoma, spotty pigmentation and endocrine overactivity. A 27-year-old male was diagnosed to have Carney's complex on the basis of intense spotty pigmentations on his face, soles and palms, and bilateral adrenal nodular hyperplasia on computed tomography scanning (CT) and magnetic resonance imaging (MRI). Total bilateral adrenectomy was done; histological findings were compatible with primary pigmented adrenocortical disease (PPNAD). Recently, his sister and one of his brothers were suspected to have Carney's complex with PPNAD. We report the first familial case of Carney's complex with PPNAD and spotty pigmentations in Japan.

Adrenal Cortex Diseases↗

[Adrenocortical diagnosis in ambulatory practice].

The determination of plasma cortisol concentrations is a valuable aid in the diagnosis of some important adrenocortical diseases. Since cortisol is secreted episodically, the diagnostic value of diurnal profiles of plasma cortisol is often limited. On the other hand, a simple ACTH test or an overnight dexamethasone suppression test permit, in most instances, definite diagnosis or exclusion of adrenocortical insufficiency and Cushing's syndrome respectively.

Adrenal Cortex Diseases↗

Unexpected death of endocrine origin.

Diseases of the endocrine glands may be silent or of little apparent consequence for long periods of time, but may nevertheless have an unexpected and acutely fatal termination. Some of these facets are explored in this paper. A full clinical history (including therapy) and thorough autopsy is necessary to exclude the endocrine causes of unexpected deaths.

Adrenal Cortex Diseases↗

Adrenocortical hemorrhagic necrosis: the role of catecholamines and retrograde medullary-cell embolism.

We investigated the pathogenesis of adrenal necrosis using animal models of the disease (induced by administration of acrylonitrile, cysteamine, or pyrazole) and human cases. Results of electron-microscopic and histochemical time-response studies with rat models revealed an early, retrograde embolization of medullary cells and cell fragments in the cortical capillaries that showed prominent endothelial injury. The experimental adrenal lesions were prevented by surgical removal of the medulla one month before administration of adrenocorticolytic chemicals, or by the administration of the alpha-adrenergic antagonist phenoxybenzamine hydrochloride. Histochemical staining for medullary (argyrophil) granules in human cases of adrenal necrosis demonstrated tissue fragments that stained positively for silver in vascular cortical spaces in nine of ten autopsy specimens and in all four surgical cases we reviewed. Thus, catecholamines released from the adrenal medulla and from the retrograde medullary emboli in the cortex may have a role in the pathogenesis of adrenocortical necrosis.

Acrylonitrile↗

Variations in adrenocortical responsiveness during severe bacterial infections. Unrecognized adrenocortical insufficiency in severe bacterial infections.

Plasma cortisol levels and their response to .25 mg synthetic A.C.T.H. (Cortrosyn) were studied in 26 septic patients. Four (15.4%) of these patients appeared to have greatly increased adrenocortical activity with plasma cortisol levels averaging 65.4 +/- 14.8 microgram/dl (normal = 8-18 microgram/dl. All four of these patients were agonal and died within five days. Seventeen (65.4%) of these 26 patients appeared to have an appropriate adrenocortical response to severe infection in that their plasma cortisol levels increased (averaging 19.2 +/- 6.0 microngram/dl) following synthetic A.C.T.H. The remaining five patients, who constituted 19.2% of the 26 patients studied, appeared to have some impairment of adrenocortical function. In spite of severe bacterial infections and no history to support Addison's disease, their plasma cortisol levels (averaging 13.8 +/- 3.3 microgram/dl) were not increased above normal and their response to Cortrosyn was much less than would be expected; the increase in plasma cortisol levels in these patients following the synthetic A.C.T.H. averaged 1.1 +/- 3.6 microgram/dl. It is reemphasized that patients with severe sepsis who are not responding adequately to standard therapy should be suspected of having adrenocortical insufficiency and treated accordingly.

Adrenal Cortex↗

Primary pigmented nodular adrenocortical disease: reevaluation of a patient with carney complex 27 years after unilateral adrenalectomy.

A 45-yr-old man with primary pigmented nodular adrenocortical disease (PPNAD) is described. This patient underwent unilateral adrenalectomy for ACTH-independent Cushing's syndrome (CS) in 1969. Although his daily urinary free cortisol (UFC) excretion rate normalized, and the major clinical manifestations of CS subsided, loss of a circadian cortisol rhythm persisted after surgery. Twenty-seven years later, the patient presented again with short stature, severe osteopenia, skeletal deformities, thinning of the skin, and myopathy.

Adrenal Cortex Diseases↗

Cyclical Cushing syndrome presenting in infancy: an early form of primary pigmented nodular adrenocortical disease, or a new entity?

Cushing syndrome is uncommon in childhood and rare in infancy. We report the case of a 3-yr-old child who presented with symptoms of Cushing syndrome beginning shortly after birth. Her hypercortisolemia was cyclical, causing relapsing and remitting symptoms, which eventually led to suspicions of possible Munchausen syndrome by proxy. Investigation at the National Institutes of Health excluded exogenous administration of glucocorticoids and indicated ACTH-independent Cushing syndrome. Paradoxical response to dexamethasone stimulation (Liddle's test) suggested a diagnosis of primary pigmented nodular adrenocortical disease (PPNAD). After bilateral adrenalectomy, both glands showed micronodular adrenocortical hyperplasia, but histology was not consistent with typical PPNAD. DNA analysis of the coding sequences of the PRKAR1A gene (associated with PPNAD and Carney complex) and the GNAS gene (associated with McCune-Albright syndrome) showed no mutations. We conclude that hypercortisolemia in infancy may be caused by micronodular adrenocortical hyperplasia, which can be cyclical and confused with exogenous Cushing syndrome. A paradoxical rise of glucocorticoid excretion during Liddle's test may delineate these patients. Infantile micronodular disease has some features of PPNAD and may represent its early form; however, at least in the case of the patient reported here, micronodular hyperplasia was not caused by coding mutations of the PRKAR1A or GNAS genes or associated with typical histology or any other features of Carney complex or McCune-Albright syndrome and may represent a distinct entity.

Adrenal Cortex Diseases↗

[Spontaneous adrenal hemorrhage. Apropos of a case].

Spontaneous adrenal haemorrhages are rare but non exceptional. They mainly occur in elderly men (mean age: 61 years). The main risk factors are: anticoagulant therapy (prescribed for myocardial infarction, occlusive vascular ou thromboembolic disease), hypertension and chronic respiratory insufficiency, as in the present case. The clinical picture is one of abdominal of lumbar pain with abdominal distension, circulatory collapse, often delayed and sometimes preceeded by an hypertensive bout, quite often fever with leucocytosis. Hyponatraemia and hyperkalaemia, are not constant features. The diagnosis is often not made until laparotomy, and it even can be missed there. In fact, plasma cortisol level or, if unavailable, urinary corticosteroid measurements are the best diagnostic procedures, permitting adequate therapy and giving best chances of survival. They must always be made in a patient with abdominal signs falling into one of the above mentioned etiologic categories.

Adrenal Cortex Diseases↗

Adrenal cortical and medullary imaging.

Adrenal disease can be manifested by endocrine dysfunction or anatomic abnormalities detected by cross-sectional imaging modalities. With the advent of newer and more reliable in vitro assays and a better understanding of the spectrum of adrenal pathology, the physician can now adopt a more accurate and cost-effective approach to the diagnosis of adrenal disease. Both functional and anatomic imaging modalities can play an important role in the evaluation of the incidental adrenal mass, the early detection of adrenal metastases, differentiation of the various causes of Cushings's syndrome, selection of patients for potentially curative surgery in primary aldosteronism and adrenal hyperandrogenism, and localization of pheochromocytomas and neuroblastomas. The usefulness of the adrenal cortical radiopharmaceutical, 131I-6-beta-iodomethylnorcholesterol (NP-59), and the adrenal medullary radiopharmaceuticals, 131I and 123I-metaiodobenzylguanidine (MIBG), is detailed for these various clinical settings and the role of NP-59 and MIBG is contrasted to that of the cross-sectional modalities, computed tomography and magnetic resonance imaging (MRI). Incidental adrenal masses are common, but malignancies are few. Imaging studies select those patients who require a further evaluation by biopsy examination or adrenalectomy. In the hyperfunctioning endocrine states, such as Cushing's syndrome, primary aldosteronism, adrenal androgenism, and pheochromocytoma, correlation of biochemical findings with both functional and anatomic imaging is necessary to avoid inappropriate and ineffective surgical intervention, yet not miss an opportunity for curative resection. Lastly, MIBG and MRI are complementary in the detection and staging of neuroblastoma.

3-Iodobenzylguanidine↗

Secondary hypertension. A streamlined approach to diagnosis.

Among the many potential causes of secondary hypertension are renal parenchymal disease, occlusive renal arterial disease, adrenocortical abnormalities, and pheochromocytoma. Renovascular hypertension can result from either renal parenchymal or occlusive renal arterial disease. Laboratory testing can help in identification and differentiation. Parenchymal diseases usually modify the urine substantially without producing urographic abnormalities, while occlusive arterial lesions produce urographic abnormalities but the urine remains normal. The diagnosis of renal occlusive arterial disease is best defined by arteriography. The only definite criterion for the existence of hypertension of renal origin is cure by either nephrectomy or renal revascularization. Adrenocortical causes of hypertension include enzymatic deficiencies, Cushing's syndrome, and primary aldosteronism. In enzymatic deficiencies, the physical findings provide the most important clues to the type of enzyme deficiency involved. In Cushing's syndrome, accurate determination of the cause of the hypercortisolism is important in terms of choice and success of treatment. The diagnosis of primary aldosteronism rests primarily on the demonstration of nonsuppressible aldosterone excretion rate during salt loading; the presence of inappropriate kaliuresis and/or suppressed plasma renin activity provides corroborative evidence of primary aldosteronism, but the absence of either or both does not preclude the diagnosis. Pheochromocytoma, although rare, is a serious and potentially fatal cause of hypertension. Definitive diagnosis depends on laboratory test results, and the tumor is usually localized by computed tomography.

Adrenal Cortex Diseases↗

Cushing syndrome due to primary pigmented nodular adrenocortical disease: findings at CT and MR imaging.

Primary pigmented nodular adrenocortical disease (PPNAD) is a rare cause of Cushing syndrome in infants, children, and young adults. It is characterized by non-adrenocorticotropic hormone-dependent hypersecretion of cortisol by multiple, pigmented nodules of hyperplastic adrenocortical cells. With a single exception, adrenal glands have been described as normal with computed tomography (CT) in all previous series. Eight patients had Cushing syndrome due to surgically proved PPNAD. Four of the eight patients had stigmas of Carney complex (lentigines, calcified Sertoli cell tumors of the testes, and cardiac and soft-tissue myxomas). CT and/or magnetic resonance (MR) imaging demonstrated unilateral or bilateral nodularity in five of six patients examined. Macronodules (greater than 10 mm) were seen in the two oldest patients. As the clinical presentation of Cushing syndrome in this group of patients may be atypical (severe osteoporosis or short stature), the detection of multiple, small adrenocortical nodules with CT or MR imaging supports, or may even suggest, the diagnosis of PPNAD.

Adolescent↗

Adrenal pathophysiology: lessons from the Carney complex.

The Carney complex (CNC) is a dominantly inherited syndrome responsible mainly for spotty skin pigmentation (lentiginosis), endocrine overactivity, and cardiac myxomas. Adrenocorticotropic hormone independent Cushing's syndrome due to primary pigmented nodular adrenocortical disease (PPNAD) is a main characteristic of CNC. PPNAD is a very rare cause of Cushing's syndrome due to a primary bilateral adrenal defect that can be also observed in some patients without other CNC manifestations nor familial history. One of the putative CNC genes, located on 17q22-24, has been identified as the regulatory subunit R1A of protein kinase A (PRKAR1A). Heterozygous inactivating mutations of PRKAR1A have been reported initially in about 45% of the CNC index cases and could be found in about 80% of the CNC families presenting mainly with Cushing's syndrome. PRKAR1A is a key component of the cyclic AMP signaling pathway that has been implicated in endocrine tumorigenesis and could, at least partly, function as a tumor suppressor gene. Interestingly, patients with isolated PPNAD and no familial history of CNC can also present a germline de novo mutation of PRKAR1A. Somatic mutations of PRKAR1A have been found in PPNAD as a mechanism of inactivation of the wild-type allele, in a patient already presenting a germline mutation, and in a subset of sporadic secreting adrenocortical adenomas with clinical, hormonal, and pathological features quite similar to PPNAD. This review will summarize the recent findings on CNC from the perspective of the pathophysiology of adrenal Cushing's syndrome and PPNAD.

Adrenal Cortex Diseases↗