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Martina De Martin

Publications and source records attributed to Martina De Martin.

4 recordsLinked to original sources

The dexamethasone-suppressed corticotropin-releasing hormone stimulation test and the desmopressin test to distinguish Cushing's syndrome from pseudo-Cushing's states.

OBJECTIVE: Cushing's syndrome (CS), when fully expressed, is easily diagnosed. Mild cases, however, may require careful distinction from pseudo-Cushing's states as may occur in depression, alcoholism, polycystic ovary disease and visceral obesity. The aim of the present study is a reappraisal of the diagnostic accuracy of the two tests most commonly used to differentiate CS from pseudo-Cushing's: corticotropin-releasing hormone (CRH) stimulation after low dose dexamethasone administration and desmopressin stimulation. DESIGN: The study population comprised 32 patients with CS and 23 with pseudo-Cushing's evaluated retrospectively. METHODS: Urinary free cortisol (UFC), serum cortisol at midnight and after low dose dexamethasone (1 mg overnight and 2 mg over two days) were measured. Further, patients were tested with dexamethasone + CRH and desmopressin and the diagnostic performances of the two tests were compared in the entire series as well as in patients with mild hypercortisolism only (i.e. UFC < 690 nmol/24 h). RESULTS: As expected, measurement of UFC, assessment of cortisol rhythmicity and inhibition after 1 mg/2 mg dexamethasone failed to clearly classify patients with pseudo-Cushing's. Administration of CRH following 2-mg dexamethasone achieved 100% sensitivity but 62.5% specificity. Conversely, desmopressin testing correctly classified all but two patients with pseudo-Cushing's (90% specificity) with 81.5% sensitivity. Diagnostic accuracy was comparable in the subgroup with mild hypercortisolism (21 CS, all 23 pseudo-Cushing's patients). Desmopressin offered an incremental diagnostic effectiveness of 35.8/million inhabitants compared with dexamethasone + CRH as a second-line test. CONCLUSIONS: Neither of the two tests guarantees absolute diagnostic accuracy. The specificity of dexamethasone + CRH is less brilliant than previously reported and appears to be inferior to desmopressin stimulation. The greatest diagnostic effectiveness results from the low-dose dexamethasone test combined with the desmopressin test. Skilful use of dynamic testing and balanced clinical judgement are necessary to distinguish between Cushing's syndrome and pseudo-Cushing's.

Adolescent↗

Cushing's disease.

Cushing's disease, i.e., pituitary ACTH-secreting adenoma causing excess glucocorticoid secretion, is a rare disease with significant mortality and morbidity. Timely diagnosis and appropriate treatment can alter the course of the disease and are therefore mandatory. First step of the diagnostic work-up is the endogenous glucocorticoid excess by measurement of urinary free cortisol, cortisol circadian rhythmicity or suppression by low doses of dexamethasone. In patients with equivocal results, second line tests, such as the dexamethasone-suppressed CRH test and desmopressin stimulation, usually enable the diagnosis to be confirmed. Measurement of plasma ACTH then allows the distinction between ACTH-dependent (e.g., pituitary or extrapituitary neuroendocrine tumors) and ACTH-independent causes (e.g., adrenal tumors). The last step in the diagnostic algorithm is often the most fraught with problems as the distinction between Cushing's disease and ectopic ACTH secretion relies on judicious interpretation of several diagnostic procedures. Positive responses to stimulation with CRH and inhibition by high doses of dexamethasone, if concurrent, enable a pituitary origin to be established whereas conflicting results call for inferior petrosal sinus sampling, the latter to be performed in experienced centres only. Visualisation of the tumor at pituitary imaging is helpful but not required for the diagnosis, as microadenomas often remain undectected by MRI and/or CT scan and, on the other hand, visualisation of a non-secreting incidentaloma may be misleading. Surgical removal of the pituitary tumor is the optimal treatment choice and should be attempted in every patient. Surgical failures as well as relapses can be treated by radiotherapy, medical therapy or, if necessary, bilateral adrenalectomy. Finally, patients cured of Cushing's disease require long-term monitoring given the risk of relapse and clinical burden of associated ailments.

ACTH Syndrome, Ectopic↗

Effects of treatment with somatostatin analogues on QT interval duration in acromegalic patients.

OBJECTIVE: Cardiovascular disease is a major contributor to the increased mortality of acromegalic patients. Prolongation of the QT interval is considered an established risk factor for potentially fatal cardiac arrhythmias, an event frequently observed in acromegaly. Changes in ventricular repolarization have been observed with the use of octreotide, one of the somatostatin analogues (SSA) currently used for the medical treatment of this disease. Furthermore, octreotide is listed among the drugs able to prolong the QT interval. Thus, we elected to study the effects of long-term SSA administration on QT duration and left ventricular mass (LVM) in a group of acromegalic patients. DESIGN AND PATIENTS: In a retrospective study, 30 acromegalic patients (19 women and 11 men, aged 25-77 years) were studied under basal conditions; 24 of them (15 women and nine men, aged 25-77 years) were studied again after 3-63 months of treatment (median 18 months) with SSA. Twenty-four healthy volunteers served as controls. MEASUREMENTS: Patients and controls underwent electrocardiographic (ECG) analysis, and QT interval duration corrected for heart rate (QTc) was established according to the Bazett formula. In 17 of the SSA-treated patients, M- and B-mode echocardiography for the assessment of LVM index (LVMi) was performed. RESULTS: Baseline QTc was significantly longer in patients than in controls. SSA administration was followed by a significant decrease in QTc, which reached a mean value similar to that measured in the controls. In particular, treatment with SSA normalized QTc in three out of the six patients with abnormally elevated values at baseline. After treatment, a significant reduction in heart rate was recorded, while LVMi displayed a slight but not significant decrease. CONCLUSIONS: Acromegalic patients frequently display an abnormally prolonged QT interval, a known risk factor for potentially fatal arrhythmias. Treatment of these patients with SSA is able to improve and even normalize this alteration, probably contributing to the beneficial effects of these drugs on cardiac rhythm in this endocrine disorder. The inclusion of octreotide in the list of drugs that may increase QTc should be reconsidered as regards its indication in acromegaly.

Acromegaly↗

Neurobiology of rhythmic motor entrainment.

Timing is extremely important for movement, and understanding the neurobiological basis of rhythm perception and reproduction can be helpful in addressing motor recovery after brain lesions. In this quest, the science of music might provide interesting hints for better understanding the brain timing mechanism. The report focuses on the neurobiological substrate of sensorimotor transformation of time data, highlighting the power of auditory rhythmic stimuli in guiding motor acts. The cerebellar role of timing is addressed in subjects with cerebellar damage; subsequently, cerebellar timing processing is highlighted through an fMRI study of professional musicians. The two approaches converge to demonstrate that different levels of time processing exist, one conscious and one not, and to support the idea that timing is a distributed function. The hypothesis that unconscious motor responses to auditory rhythmic stimuli can be relevant in guiding motor recovery and modulating music perception is advanced and discussed.

Auditory Perception↗