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Biomedical subjects

A Perri

Publications and source records attributed to A Perri.

11 recordsLinked to original sources

Thyroid resistance to TSH complicated by autoimmune thyroiditis.

In this report we describe a 47-yr-old woman who was referred to our department for elevated serum TSH associated with normal free thyroid hormone levels, suggesting subclinical hypothyroidism. When first seen she was clinically euthyroid, and her thyroid gland was normal in size both at palpation and by ultrasound. The ultrasound of the thyroid showed a normoechogenic pattern. Serum thyroid hormone levels were confirmed to be within the normal range, whereas the serum TSH concentration was moderately elevated (13.4 microU/ml). Tests for antithyroperoxidase, antithyroglobulin, and anti-TSH receptor antibodies gave negative results. The only son of the proband, a clinically euthyroid 23-yr-old man, had a slightly elevated serum TSH concentration (5.2 microU/ml) with normal free thyroid hormone levels. The entire coding regions of the TSH receptor gene were sequenced in the proband, the son, and the father of the son. Genetic analysis in the proband showed a homozygous inactivating mutation of the TSH receptor. The mutation consisted of the substitution of an alanine in place of proline at position 162 in the extracellular portion of the receptor. The son was heterozygous for Pro(162)Ala. Only the wild-type sequence was found in the father. Both the proband and her son were considered to have compensated TSH resistance and were not treated. After 2 yr of follow-up, new thyroid tests were performed in the proband and showed a marked increase in the serum TSH concentration (61 microU/ml) compared with the initially observed value; serum free T(4) and T(3) levels were in the low normal range. At that time, tests for antithyroglobulin and antithyroperoxidase antibodies gave positive results, and thyroid echography showed a gland of normal size, but with a diffuse hypoechogenic pattern. In conclusion, we describe the first case of compensated TSH resistance evolving to mild hypothyroidism due to the appearance of a chronic autoimmune thyroiditis.

DNA↗

Sporadic nonautoimmune congenital hyperthyroidism due to a strong activating mutation of the thyrotropin receptor gene.

The de novo occurrence of germline-activating thyrotropin receptor (TSHR) gene mutations has been reported as the cause of sporadic nonautoimmune neonatal hyperthyroidism in eight children. We report the case of an Italian infant girl who presented at birth with severe hyperthyroidism and goiter. Ultrasonografic examination of the infant's thyroid showed a diffuse goiter with a normal echogenic pattern. Serum antithyroglobulin, antithyroperoxidase, and antithyrotropin receptor antibodies were undetectable. Treatment with propylthiouracyl, propranolol, and saturated potassium iodide solution started at 44 days of life with the resolution of thyrotoxic symptoms. Once euthyroidism was achieved, the dose of propylthiouracyl was tapered, but hyperthyroidism recurred. Auxological parameters showed an acceleration of linear growth and bone age. DNA was extracted from peripheral white blood cells of the patient, the sister, and the two parents. All of exon 10 of the TSHR gene was amplified by polymerase chain reaction (PCR) and subjected to direct sequencing. In the thyrotoxic infant girl, a substitution of cytosine to thymine was detected, changing isoleucine 568 into a threonine (1568T), located in the second extracellular loop. The normal sequence could also be detected, indicating heterozygosis of the mutated allele. This mutation was previously described as a somatic mutation in a patient with toxic thyroid adenoma. The sister and the parents of the propositus, all euthyroid, showed the wild-type TSHR gene. In conclusion, we describe a case of a de novo germinal mutation of the TSHR causing severe congenital hyperthyroidism.

Adenoma↗

Congenital hypothyroidism with impaired thyroid response to thyrotropin (TSH) and absent circulating thyroglobulin: evidence for a new inactivating mutation of the TSH receptor gene.

Congenital hypothyroidism due to impaired thyroid response to TSH was originally described by Stanbury. A diagnosis of congenital hypothyroidism with thyroid unresponsiveness to TSH is accepted if the patient has congenital hypothyroidism, the thyroid gland is in the normal position in the neck, the size of the thyroid is either normal or atrophic, the serum TSH level is increased, the bioactivity of TSH is intact, and the response of the thyroid gland to TSH stimulation is decreased. In all originally described cases serum thyroglobulin was undetectable. We describe a 22-yr-old female patient who was severely hypothyroid and mentally retarded. Serum T4 and T3 concentrations were below the sensitivity of the methods, with elevated serum TSH levels. Serum thyroglobulin was undetectable. A normally shaped hypoplastic gland located in the appropriate anatomical position in the neck was found at scintiscan. The gland did not respond after administration of bovine TSH in terms of 131I uptake, serum thyroid hormones, and thyroglobulin secretion. A diagnosis of congenital hypothyroidism due to TSH unresponsiveness was formulated. Genetic analysis in the propositus showed a homozygous inactivating mutation of the TSH receptor that had not been previously described. The mutation consisted of the substitution of an isoleucine in place of a highly conserved threonine at position 477 in the first extracellular loop of the receptor (T477I). The brother, one sister of the father (whose DNA was not available), the mother of the propositus, one sister, and the brother were heterozygous for T477I. All the heterozygous persons were unaffected. After transfection in COS-7 cells, the mutant receptor displayed an extremely low expression at cell surface. At variance with cells transfected with the wild-type TSH receptor, cells transfected with the mutant T477I did not show constitutive activity for the adenylyl cyclase pathway. A dramatic reduction in the amount of cAMP accumulation after bovine TSH challenge was observed in cells transfected with the mutant T477I receptor. A structural defect in the mutant TSH receptor protein was probably responsible for the poor routing of the receptor to the cell membrane. This is the first time that a loss of function mutation of the TSH receptor is described in a patient with severe congenital hypothyroidism and absent circulating thyroglobulin due to TSH unresponsiveness and the first time that an inactivating mutation of the TSH receptor is described in the first extracellular loop.

Adult↗

Activating thyrotropin receptor mutations are present in nonadenomatous hyperfunctioning nodules of toxic or autonomous multinodular goiter.

Toxic multinodular goiter, a heterogeneous disease producing hyperthyroidism, is frequently found in iodine-deficient areas. The pathogenesis of this common clinical entity is still unclear. The aim of the present study was to search for activating TSH receptor (TSHr) or Gs alpha mutations in areas of toxic or functionally autonomous multinodular goiters that appeared hyperfunctioning at thyroid scintiscan but did not clearly correspond to definite nodules at physical or ultrasonographic examination. Surgical tissue specimens from nine patients were carefully dissected, matching thyroid scintiscan and thyroid ultrasonography, to isolate hyperfunctioning and nonfunctioning areas even if they did not correspond to well-defined nodules. TSHr and Gs alpha mutations were searched for by direct sequencing after PCR amplification of genomic DNA. Only 2 adenomas were identified at microscopic examination, whereas the remaining 18 hyperfunctioning areas corresponded to hyperplastic nodules containing multiple aggregates of micromacrofollicules not surrounded by a capsule. Activating TSHr mutations were detected in 14 of these 20 hyperfunctioning areas, whereas no mutation was identified in nonfunctioning nodules or areas contained in the same gland. No Gs alpha mutation was found. In conclusion, activating TSHr mutations are present in the majority of nonadenomatous hyperfunctioning nodules scattered throughout the gland in patients with toxic or functionally autonomous multinodular goiter.

Adenoma↗

Panic disorder or temporal lobe epilepsy: A diagnostic problem in an adolescent girl.

Similarities in the clinical presentation of panic disorder and temporal lobe epilepsy suggest that the two disorders are related and can lead to difficulties in a differential diagnosis. We describe the case of a young girl suffering from paroxysmal anxiety, derealization-depersonalization and autonomic symptoms, lasting from seconds to several minutes; these episodes were very frequent and disabling. The interictal EEGs and MRI were normal. After having diagnosed panic disorder based mainly on the duration of the attacks and the family history, a pharmacological treatment was started.

Adolescent↗

Reduced spontaneous growth hormone secretion in patients with Turner's syndrome.

We evaluated growth hormone (GH) secretion in 81 patients with Turner's syndrome (TS) (mean age 10.7+/-3.6 y) with respect to karyotype, auxological characteristics and growth response to GH treatment (1 IU/kg/wk). None of the patients had spontaneous puberty or had started replacement therapy with estrogens. Thirty-nine patients (48%) had monosomia 45X, 29 (36%) structural abnormalities of the X chromosome and 13 (16%) X mosaicism. Before the start of GH therapy, each patient underwent an evaluation of mean nocturnal GH concentration (MGHC) and 75 patients also underwent 2 pharmacological tests. MGHC of the TS patients did not differ from that of 29 prepubertal GH-deficient girls (GH peaks < 8 microg/l after pharmacological tests) and both groups were lower (p < 0.0001 and p < 0.0005, respectively) than MGHCs of 27 short normal girls (GH peak > 8 microg/l). MGHC of the patients with TS was negatively correlated (p < 0.001) with bodyweight excess (BWE) at multiple regression analysis. MGHC of the TS patients with BWE < 20% was significantly higher (p < 0.02) than that of the TS patients with BWE > 20%, but again did not differ from that of the GH-deficient patients and was lower (p < 0.001) than that of the short normal girls. MGHC did not significantly differ between the 3 groups subdivided according to karyotype. Forty-four percent of the TS patients showed GH responses to pharmacological tests < 8 microg/l. Height velocity SDS at first and second year of therapy was not influenced by MGHC levels, chronological or bone age, target height or BWE. In conclusion, spontaneous secretion in our patients with TS was lower than that of the short normal prepubertal girls and did not differ from that of GH-deficient subjects, even if we excluded overweight patients. The level of GH secretion was unable to predict GH response to treatment.

Adolescent↗

Functioning and nonfunctioning thyroid adenomas involve different molecular pathogenetic mechanisms.

The molecular biology of follicular cell growth in thyroid nodules is still poorly understood. Because gain-of-function (activating) mutations of the thyroid-stimulating hormone receptor (TShR) and/or Gs alpha genes may confer TSh-independent growth advantage to neoplastic thyroid cells, we searched for somatic mutations of these genes in a series of hyperfunctioning and nonfunctioning follicular thyroid adenomas specifically selected for their homogeneous gross anatomy (single nodule in an otherwise normal thyroid gland). TShR gene mutations were identified by direct sequencing of exons 9 and 10 of the TShR gene in genomic DNA obtained from surgical specimens. Codons 201 and 227 of the Gs alpha gene were also analyzed. At histology, all hyperfunctioning nodules and 13 of 15 nonfunctioning nodules were diagnosed as follicular adenomas. Two nonfunctioning thyroid nodules, although showing a prevalent microfollicular pattern of growth, had histological features indicating malignant transformation (a minimally invasive follicular carcinoma and a focal papillary carcinoma). Activating mutations of the TShR gene were found in 12 of 15 hyperfunctioning follicular thyroid adenomas. In one hyperfunctioning adenoma, which was negative for TShR mutations, a mutation in codon 227 of the Gs alpha gene was identified. At variance with hyperfunctioning thyroid adenomas, no mutation of the TShR or Gs alpha genes was detected in nonfunctioning thyroid nodules. In conclusion, our findings clearly define a different molecular pathogenetic mechanism in hyperfunctioning and nonfunctioning follicular thyroid adenomas. Activation of the cAMP cascade, which leads to proliferation but maintains differentiation of follicular thyroid cells, typically occurs in hyperfunctioning thyroid adenomas. Oncogenes other than the TShR and Gs alpha genes are probably involved in nonfunctioning follicular adenomas.

Adenoma↗

Barber-Say Syndrome: report of a new case.

We present a girl with lax, redundant skin, ectropion, bulbous nose, macrostomia, and absence of mammary glands. To our knowledge, she represents the fourth described case of Barber-Say Syndrome (BSS). BSS and ablepharon macrostomia syndrome (AMS) share common and distinctive clinical manifestations that involve the same structure of the skin and adnexa. We hypothesize that they may derive from a defective regulation of the same gene.

Abnormalities, Multiple↗

Pelvic ultrasonography in patients with Turner syndrome: age-related findings in different karyotypes.

Real-time ultrasonography was performed in 142 patients with Turner syndrome, aged 0.57 to 21 years, with different karyotypes (45,X [4896], X mosaicism [17%], and X structural abnormalities [35%]). Ovarian and uterine volumes were calculated and the data collected in a mixed longitudinal and cross-sectional mode. Thirty-eight patients were followed longitudinally during pubertal age (10 to 18 years bone age) for ovarian data. Patients with Turner syndrome were divided into two groups according to the presence or absence of detectable ovaries. Patients with Turner syndrome with detectable ovaries showed the first increase in ovarian volume at about 9 years of bone age; this increase was continuous and more evident only after 14 years of age and appeared later than in control subjects. When followed longitudinally during puberty, the ovaries showed a hormonal function in some cases. Girls with X mosaicism had the highest percentage of bilateral detectable ovaries and the greatest total ovarian volume; about 50% of them had spontaneous breast appearance and 38.5% had spontaneous menarche. They showed also the lowest gonadotropin levels, when bilateral ovaries were present during puberty. On the contrary, patients with the 45,X karyotype had the lowest percentage of detectable ovaries, ovarian volume, and spontaneous breast appearance. In our patients with Turner syndrome, uterine measures increased significantly with age and this was more evident in subjects with detectable ovaries after 13 years of bone age. Compared with control subjects, they showed significantly lower uterine measures, and patients with X mosaicism had greater and more progressive increments. In conclusion, pelvic ultrasonography in Turner syndrome is particularly useful in detecting ovaries and their possible increase in volume. These data, linked with karyotype pattern and gonadotropin levels, have prognostic value in predicting the future sexual development of these patients.

Adolescent↗

Turner's syndrome: cardiologic profile according to the different chromosomal patterns and long-term clinical follow-Up of 136 nonpreselected patients.

The preferential association between Turner's syndrome and congenital heart defects (CHD) have been well known since the first description by Morgagni. There are few studies about the different cardiologic problems stemming from different chromosomal patterns of X monosomies. We reviewed a large series of 136 patients with Turner syndrome without cardiologic preselection, 29 of whom had some kind of CHD (21.5%). Partial anomalous pulmonary venous drainage (PAPVD; 2.9%), aortic valve disease (stenosis and/or incompetence) (AoVD; 5. 1%), aortic coarctation (AoCo; 4.4%), and bicuspid aortic valve (BicAo; 14.7%) are much more frequent in Turner's syndrome than in the normal population, with the difference being statistically highly significant. In our cases, only the 45, X subjects showed severe CHD and multiple lesions, whereas the X-ring pattern was associated with an elevated prevalence of BicAo. Patients with X-deletion showed no signs of congenital heart malformations. Eleven patients, all with 45, X pattern, and significant CHD, underwent cardiac surgery at a mean age of 7.7 +/- 5.3 years (range 7 days-18 years) without complications. At follow-up of 3-18 years (8.6 +/- 5. 2), we were unable to observe any type of evolution of the remaining untreated cardiovascular anomalies.

Adolescent↗