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C Mammoli

Publications and source records attributed to C Mammoli.

35 records · Page 2Linked to original sources

Evaluation of L-thyroxine replacement therapy in children with congenital hypothyroidism.

The outcome of L-thyroxine (L-T4) replacement therapy in children with congenital hypothyroidism (CH) remains to be completely evaluated. In this paper the overall pattern of response to L-T4 replacement therapy was studied in a group of 19 children with CH diagnosed by neonatal screening (10 with hypoplastic/aplastic thyroid disease, group H/A; 9 with gland ectopy, group E) who were followed-up for 60 +/- 27 months (mean +/- SD). With 1 exception serum T4 at diagnosis was greater than 2 micrograms/dl in children of group E and less than 2 micrograms/dl in those of group H/A. The initial dose of L-T4 (8-10 micrograms/kg BW/day) was modified in relation to age and weight in order to maintain serum TSH less than or equal to 5 microU/ml and FT3 in the normal range. A general inverse correlation between serum TSH and FT4 or FT3 concentrations was found, and the mean levels of serum FT4 and FT3 were significantly higher according to the following order of TSH results: low TSH (0-0.5 microU/ml) greater than normal (greater than 0.5-5 microU/ml) greater than elevated TSH (greater than 5 microU/ml). TSH levels less than or equal to 5 microU/ml were associated with FT4 values in the upper half of the normal range (54% of observations) or even higher (46%). Elevation of serum FT4 alone with FT3 values in the normal range did not result in clinical thyrotoxicosis, alteration of growth or premature craniosynostosis.(ABSTRACT TRUNCATED AT 250 WORDS)

Child↗

The nocturnal serum thyrotropin surge is abolished in patients with adrenocorticotropin (ACTH)-dependent or ACTH-independent Cushing's syndrome.

TSH secretion was evaluated in 10 patients with ACTH-dependent (pituitary microadenoma, n = 5) or ACTH-independent [adrenal adenoma (n = 4) or carcinoma (n = 1)] Cushing's syndrome, and in 12 normal controls matched for age and sex. Serum TSH concentration was assayed at night, from 2200-0200 h, and in the morning, both basally and 30 min after iv injection of 200 micrograms synthetic TRH. Patients with hypercortisolism showed significantly reduced serum total T4 and T3 and free T3 concentrations and increased serum reverse T3 levels. Their mean baseline serum TSH concentration in the morning, albeit slightly lower, did not significantly differ from those of controls. The mean peak TSH value after TRH was significantly reduced, and a blunted TSH response to TRH was found in 4 out of 10 patients. At variance with normal controls, who showed nighttime TSH values 63-228% higher than morning values, 9 out of 10 patients had nighttime levels not different from or even lower than those in the morning; the remaining patient had nighttime TSH values marginally (33%) higher than in the morning. An inverse relationship (r = 0.80, P less than 0.001) was found between serum cortisol and TSH values both at night and in the morning. No differences were found either in the pattern of TSH secretion or in the TSH response to TRH between patients with ACTH-dependent and those with ACTH-independent Cushing's syndrome. These results show a substantial impairment of TSH secretion, and in particular the loss of the nocturnal surge of the hormone, in patients with Cushing's syndrome. Although the origin of the nocturnal TSH rise is probably multifactorial, cortisol, at least when secreted in excess, appears to play an important role in its regulation.

Adrenocorticotropic Hormone↗

Lack of nocturnal serum thyrotropin surge after surgery.

The effects of surgery on TSH secretion, with particular regard to the nocturnal TSH surge, were evaluated in 10 consecutive patients followed for 6 days after surgery. Surgical trauma was associated in all patients with significant decreases in serum total and free T3 and a significant increase in serum rT3 levels, with no variations in serum total and free T4 concentrations. A marked increase in serum cortisol levels was observed, with higher values at night than in the morning. Serum cortisol levels and circadian rhythm normalized on the fifth day. Serum TSH values in the morning significantly decreased on the first day after surgery and returned to normal on the second day. Serum TSH values at night (2400-0200 h) were higher than in the morning preoperatively, but the nocturnal surge was abolished from days 1-5 after surgery and was restored only on the sixth day. Thus, surgery was associated with a prolonged loss of the nocturnal serum TSH surge. This effect on TSH secretion was more marked than predictable on the basis of serum TSH measurements in the morning alone. An inverse relationship was found between serum cortisol and serum TSH values at night, suggesting that the excessive endogenous cortisol secretion might play a role in the derangement of TSH secretion.

Adult↗

Incidence of antibodies blocking thyrotropin effect in vitro in patients with euthyroid or hypothyroid autoimmune thyroiditis.

Autoantibodies blocking the TSH-dependent production of cAMP in thyroid cells (TSH-BAb) have been described in atrophic thyroiditis (AT; idiopathic myxedema) and in neonates with transient hypothyroidism, but their incidence in autoimmune thyroiditis in relation to thyroid status remains to be completely established. To this purpose TSH-BAb were evaluated in a group of 140 consecutive patients with autoimmune thyroiditis, which included 26 cases of AT and 114 subjects with goitrous Hashimoto's thyroiditis (HT); among the goitrous group 27 were euthyroid (HT-E), 32 had subclinical hypothyroidism (HT-SH), and 55 had clinical hypothyroidism (HT-H). TSH-BAb were measured in immunoglobulin G prepared by DEAE-Sephadex A-50 by determining their ability to inhibit TSH-dependent cAMP production in a differentiated strain of cultured rat thyroid cells (FRTL-5). Using this sensitive and reproducible method, TSH-BAb were detected in 12 of 26 (46%) patients with AT, in 1 of 27 (3.7%) subjects with HT-E, in 3 of 32 (9.4%) with HT-SH, and in 20 of 55 (36%) with HT-H. The prevalence of TSH-BAb was higher in AT vs. HT-H (P less than 0.001), HT-SH (P less than 0.001), or HT-E (P less than 0.001), and in HT-H vs. HT-SH (P less than 0.001) or HT-E (P less than 0.001). Mean TSH-BAb levels in AT were higher than those in HT-H (P less than 0.005) and HT-SH (P less than 0.025); the difference was not significant between HT-H and HT-SH. An inverse correlation was found between TSH-BAb levels and estimated goiter weight (P less than 0.005). The results of the present study indicate that 1) in autoimmune thyroiditis TSH-BAb are detectable almost exclusively in hypothyroid patients, their prevalence being higher in overt hypothyroidism than in subclinical thyroid failure; 2) the prevalence of TSH-BAb and their mean levels are higher in hypothyroid patients with AT than in those with HT; and 3) therefore, the presence of circulating TSH-BAb appears to be related to the development of hypothyroidism and thyroid atrophy.

Adult↗

Lack of nocturnal serum thyrotropin (TSH) surge in patients with chronic renal failure undergoing regular maintenance hemofiltration: a case of central hypothyroidism.

Thyrotropin (TSH) secretion was evaluated in a group of patients with chronic renal failure (CRF) undergoing regular maintenance hemofiltration and in normal controls. The study group included 68 patients (39 males and 29 females, age range 39-73 years, mean: 53 years). In all patients blood was drawn at 08:30-09:00 h; in 20 patients the nocturnal (24:00-02:00 h) serum TSH peak was also evaluated; 12 patients underwent stimulation test with synthetic TSH-releasing hormone (TRH). TSH was measured by an ultrasensitive immunoradiometric assay. CRF patients showed a significant decrease in serum total and free thyroxine and triiodothyronine concentrations, which in a substantial proportion of subjects were below the lower normal limit. Serum reverse triiodothyronine and thyroxine-binding globulin values did not differ in the two groups. Despite this trend of thyroid hormones to decrease, no patient had supranormal TSH values as in primary hypothyroidism. While the mean morning TSH concentrations of CRF patients did not differ from those of controls, the mean nocturnal values were significantly reduced in CRF (1.0 +/- 0.2 vs 3.2 +/- 0.4 mU/l, p less than 0.0005) and the nocturnal serum TSH surge was not observed in 18 of the 20 patients (90%) in whom it was evaluated. The mean serum TSH peak value after TSH-releasing hormone (TRH) administration was also reduced in CRF patients, and the TSH response to TRH was blunted in 3 out of 12 patients (25%). The results of this study demonstrate a major impairment of TSH secretion in CRF, which baseline TSH measurements in the morning and the evaluation of the TSH response to TRH may not reveal.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Simultaneous assay of thyroid adenylate cyclase- and growth-stimulating antibodies using FRTL-5 cells. Evidence suggesting their identity in patients with Graves' disease.

The relationship between thyroid growth-stimulating antibodies (TGSAb) and thyroid adenylate cyclase-stimulating antibodies (TSAb) in patients with Graves' disease is still a matter of controversy. To investigate this problem, we have developed an assay for the simultaneous measurement of TSAb and TGSAb using FRTL-5 cells. TSAb was detected by its ability to stimulate iodide (I-) uptake and TGSAb by the 3H-thymidine ([3H]-Tdr) incorporation assay. Thirty-four immunoglobulin G (IgG) preparations from patients with active Graves' disease were selected from a previous series in order to include both TSAb-negative IgGs (n = 9) and TSAb-positive IgGs (n = 25) by the cAMP stimulation assay, with a wide range of stimulatory activity. With one exception, the TSAb-positive IgGs produced a significant stimulation of I- uptake; 20 of them were also TGSAb-positive. The nine IgGs negative in the cAMP assay, were also negative in the I-uptake and the [3H]-Tdr incorporation assays. The majority of samples had a similar potency in the two assays and a significant positive correlation was found (r = 0.76; P less than 0.001). Two IgGs previously shown to inhibit TSH-stimulated adenylate cyclase in FRTL-5 cells produced an almost complete inhibition (80-90%) of both TSH- and Graves' IgG-stimulated I- uptake and [3H]-Tdr incorporation. In conclusion, using a simultaneous assay for thyroid growth and adenylate cyclase stimulation, TGSAb in Graves' patients were found only in TSAb-positive IgGs; both Graves' IgG-stimulated activities were inhibited by antibodies blocking the TSH-dependent adenylate cyclase stimulation. Our data strongly suggest that the same antibody may be responsible for both goitre and thyroid hyperfunction of Graves' disease.

Adenylyl Cyclases↗

The expression of the microsomal/peroxidase autoantigen in human thyroid cells is thyrotrophin-dependent.

In the present report the mechanisms responsible for the expression of the thyroid microsomal autoantigen (M-Ag) were studied in primary cultures of human thyroid cells prepared from Graves' or non-toxic goitres. The indirect immunofluorescence (IFL) technique using human sera positive for anti-microsomal antibody (anti-MAb) was employed to detect M-Ag. Studies were performed to ascertain whether M-Ag recognized by anti-MAb could be identified with thyroid peroxidase (TPO). Preabsorption experiments showed that, similarly to solubilized thyroid microsomes, purified human TPO abolished the binding of anti-MAb to thyrocytes, while no inhibition was obtained with control human tissues. The identity of M-Ag and TPO was also demonstrated using a double layer IFL technique which allowed a simultaneous staining of the antigen(s) recognized by anti-MAb and by a monoclonal anti-TPO antibody. After 5-15 days of TSH withdrawal from the culture medium the M/TPO-Ag disappeared from the surface and the cytoplasm of human thyroid cells. Readdition of TSH (0.1-100 mU/ml) to cells lacking M/TPO-Ag elicited its reappearance within 48-72 h. This effect of TSH was prevented by 10 microM cycloheximide but not by methimazole (0.1-2 mM). Two stimulators of the adenylate cyclase-cAMP system, cholera toxin and forskolin, and 8-bromo-cAMP mimicked TSH in inducing M/TPO-Ag. Thyroid stimulating antibody (TSAb) of Graves' disease also reproduced the effect of TSH on M/TPO-Ag reexpression in human thyroid cells. By contrast, epidermal growth factor, oestradiol or NaI were ineffective in inducing M/TPO-Ag. The present data indicate that: (i) the expression of M/TPO-AG in human thyroid cells is dependent on TSH stimulation, through pathways which involve cAMP production and protein synthesis, (ii) TSAb reproduces this effect of TSH; (iii) oestradiol and NaI have no direct influence on the expression of M/TPO-Ag.

Autoantigens↗

Measurement of TSAb directly in serum using FRTL-5 cells.

FRTL-5 cells were shown to be suitable for the measurement of thyroid stimulating antibody (TSAb) present in sera of patients with Graves' disease. Current methods for the assay of TSAb require the separation of immunoglobulin G (IgG) from patient sera. In this report the possibility to measure TSAb directly on serum was evaluated using FRTL-5 cells. To this purpose cells were seeded in 96-well plates and cultured for 4 days in medium deprived of TSH. Using this system bovine TSH was able to produce a significant stimulation of cAMP production at 1 microU/ml. Whole normal serum completely inhibited the stimulation of TSH as well as that of TSAb, while diluted serum was devoid of any effect. Heat inactivated sera and IgGs, prepared by DEAE Sephadex separation, were diluted in hypotonic medium and incubated with cells for 1 h at 37 C. After incubation cAMP was measured in the assay medium by RIA. In some experiments the effects of graded dilutions of sera and IgGs with known TSAb activity were compared. Sera as well as IgGs increased the cAMP production, but, at the highest concentrations, an inhibitory effect was evident. For this reason sera were tested after appropriate dilution. Thirteen/27 (48%) sera and 22/27 (81%) IgGs from patients with Graves' disease were TSAb positive. The effect of Graves' sera on adenylate cyclase stimulation was completely inhibited by an anti-human IgG. The results of stimulation produced by Graves' sera and IgGs were highly correlated (r = 0.97, p less than 0.001). In conclusion it is possible to measure TSAb directly in serum using FRTL-5 cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Detection and characterization of autoantibodies blocking the TSH-dependent cAMP production using FRTL-5 cells.

Autoantibodies blocking the TSH-stimulated cAMP production (TBkAb) were measured in immunoglobulin G (IgG) preparations from 38 patients with primary autoimmune hypothyroidism, using FRTL-5 cells. TBkAb were detectable in 15/23 IgG preparations from patients with untreated idiopathic myxedema, and in 2/15 IgGs from patients under L-thyroxine treatment. None of the IgG from 22 normal subjects or from 10 patients with nonautoimmune hypothyroidism following total thyroidectomy caused any significant effect on the TSH-stimulated cAMP production. No correlation was found between TBkAb and the thyroid microsomal antibody. Antibodies inhibiting the 125I-TSH binding to TSH receptor were detectable in only 3/20 patients; IgGs from these 3 patients were also positive in the TBkAb assay. One IgG with potent TBkAb activity inhibited the TSH-stimulated adenylate cyclase in a competitive manner, while it had no effect on the forskolin-stimulated cAMP production. The inhibiting action of this IgG was almost completely lost after preabsorption with human thyroid membranes. In conclusion, we describe a new practical and sensitive method for the measurement of TBkAb; TBkAb are distinct from the microsomal antibody, and are probably directed to the TSH receptor.

Adenylyl Cyclases↗

Serum TSH measurements by a sensitive enzyme immunoassay discriminate euthyroid from hyperthyroid subjects and avoid the need for TRH test during suppressive therapy with L-thyroxine.

Serum TSH was determined photometrically by a recently developed enzyme immunoassay (EIA) based on the use of a monoclonal antihuman TSH-beta antibody and a polyclonal antiTSH antibody coupled to horseradish peroxidase. The results obtained in patients with various thyroid disorders and in normal controls were compared with those achieved by conventional double antibody radioimmunoassay (RIA). In normal subjects, serum TSH was detectable in all cases by EIA (values ranging from 0.27 to 5.1 mU/L), but only in 76% by RIA. Ninety-two percent of hyperthyroids had undetectable serum TSH by EIA and the remaining 8% had values between 0.2 and 0.4 mU/L. In clinically euthyroid patients with nontoxic goiter, 9% had undetectable serum TSH by EIA, suggesting the presence of autonomously functioning areas within the thyroid. Serum TSH under basal conditions and after TRH stimulation was measured in 45 patients on L-thyroxine suppressive therapy. Undetectable basal serum TSH by EIA was associated with a lack of TSH response to TRH in 95% of cases. Conversely, 37.5% of patients with undetectable basal serum TSH by RIA had a normal or blunted response to TRH. Detectable basal values were predictive of a normal response to TRH by both methods. These data indicate that basal serum TSH measurement by EIA allows an almost complete differentiation of normal from thyrotoxic patients and can avoid the need of the TRH stimulation test.

Adolescent↗

Clinical usefulness and limitations of serum thyrotropin measurement by 'ultrasensitive' methods. Comparisons of five kits.

Five different ultrasensitive thyrotropin (TSH) assay kits (Boots-Celltech, Immunotech, ORIS-CIS, Travenol and Boehringer) have been used for TSH measurements in various conditions. All the kits were based on an immunometric method but differed with regard to components and procedure. The sensitivity appeared essentially the same for the five kits (0.10 microU/ml) as well as the intraassay precision (coefficient of variation less than 12%). In contrast, the interassay coefficients of variation in the low TSH range varied from 12.8 to 21.3%. Discrepancies from kit to kit were observed and accounted for by differences in the components and procedure of the kits. Basal serum TSH was determined in normal subjects (n = 261) and in patients with thyroid dysfunction (n = 392). No overlap was shown between normals and patients with overt hypothyroidism. In contrast, an overlap existed between normals and hyperthyroids for all the kits but one. Measurements in patients with nontoxic goiter showed that TSH may be undetectable in clinically euthyroid patients, whatever the kit used. After TRH stimulation, 95% of the 375 patients tested associated either an absence of response to TRH with undetectable basal TSH values, or a blunted response with low basal TSH levels or normal response with normal basal TSH concentrations. However, 9 patients with suppressed TSH showed a response to TRH and 7 patients with normal basal TSH levels presented an exaggerated response to TRH. Taken together, these results demonstrate that even though ultrasensitive measurements of TSH do not meet the expectation of completely discriminating euthyroid from hyperthyroid patients, ultrasensitive TSH assay kits represent a powerful tool in the diagnosis of thyroid dysfunction, which would eliminate, in most instances, the need for TRH test and diminish thyroid hormone assay requests.

Adolescent↗

Evaluation of the nocturnal serum thyrotropin (TSH) surge, as assessed by TSH ultrasensitive assay, in patients receiving long term L-thyroxine suppression therapy and in patients with various thyroid disorders.

Circadian variations of serum TSH concentrations have been reported, with higher values occurring in the late evening or early morning. In patients receiving long term L-T4 suppression therapy, it may be important to achieve suppression of TSH secretion throughout the day. To investigate whether undetectable serum TSH values in the morning are associated with undetectable serum TSH levels at night, serum TSH concentrations were measured by an ultrasensitive immunoradiometric assay in 16 normal subjects, 20 hyperthyroid patients, 10 patients with primary hypothyroidism (either untreated or inadequately treated with L-T4), 1 patient with central hypothyroidism, 10 patients with nontoxic nodular goiter, 5 patients with functioning thyroid adenoma, 20 patients receiving L-T4 replacement therapy, and 30 patients receiving L-T4 suppression. In 6 subjects blood was drawn at hourly intervals for 24 h; in 2 normal subjects a major TSH surge occurred between 2300-0100 h, with other minor peaks, and the same pattern was found in two patients receiving L-T4 replacement, whereas in 2 patients receiving L-T4 suppression, serum TSH was constantly below the limit of detection of the assay (i.e. less than 0.07 mU/L). In the remaining patients blood was drawn at hourly intervals between 2300-0200 h and on the next morning before (0830-0900 h) and 30 min after iv TRH administration. In normal subjects, in patients receiving L-T4 replacement therapy, and in hypothyroid patients, serum TSH values at night were higher than in the morning, with normal responses to TRH in the first 2 groups and exaggerated responses in the latter. The patient with central hypothyroidism had no nocturnal TSH surge and no TSH response to TRH. In all hyperthyroid patients, serum TSH was undetectable both at night and during the day, and none had a serum TSH response to TRH. Among patients with nontoxic goiter, 7 had detectable serum TSH in the morning, with higher values at night, and a normal response to TRH; the remainder had undetectable serum TSH both at night and in the morning, and subnormal or absent TSH responses to TRH. All 5 patients with a functioning thyroid adenoma had undetectable serum TSH levels in the morning and during the night, and subnormal or absent TSH responses to TRH. Of the 30 patients receiving long term (greater than 6 months) L-T4 suppression therapy, 28 had undetectable serum TSH both during the night and in the morning and unresponsiveness to TRH.(ABSTRACT TRUNCATED AT 400 WORDS)

Adenoma↗

Serum thyrotropin by ultrasensitive immunoradiometric assay and serum free thyroid hormones in pregnancy.

Variations of serum TSH, measured by an ultrasensitive immunoradiometric assay, of serum total and free thyroid hormones and of thyroxine-binding globulin (TBG) and sex hormone-binding globulin (SHBG) were investigated in a group of 18 normal women before and during pregnancy. A gradual increase of total thyroid hormones, TBG and SHBG was observed, while mean serum free thyroxine and free triiodothyronine progressively decreased. Serum TSH concentrations were comprised within the normal range throughout pregnancy, although a small but significant increase was found in the 2nd and 3rd trimester. These changes may represent a compensatory mechanism to meet the increased demand for thyroid hormones in pregnancy and must be taken into account for a correct evaluation of thyroid function during gestation.

Adult↗

Human serum thyrotrophin measurement by ultrasensitive immunoradiometric assay as a first-line test in the evaluation of thyroid function.

An ultrasensitive immunoradiometric assay (IRMA) using two monoclonal anti-TSH antibodies has been used for TSH measurements in basal conditions and after TRH stimulation. The results have been compared with those obtained by conventional radioimmunoassay (RIA). The IRMA method had very high sensitivity (0.07 microU/ml). Detectable serum TSH concentrations were found in all normal subjects by IRMA, but in only 76% by RIA. No overlap was observed with the results obtained by IRMA in untreated overtly hyperthyroid patients, in whom serum TSH was below the limit of detection. The relationship between basal and TRH-stimulated serum TSH concentrations by IRMA and RIA was evaluated in 176 subjects including normals and patients with untreated and treated hyperthyroidism, functioning thyroid adenoma, nontoxic goitre and patients on L-thyroxine therapy. A normal TSH response to TRH was observed in virtually all patients with detectable basal serum TSH by both methods. When patients with undetectable basal serum TSH levels were considered, all but one (98%) had no TSH response to TRH by IRMA. On the contrary using RIA, an absent response was found only in 47% of subjects, a blunted responses in 10% and a normal response in 42%. These data indicate that basal serum TSH measurements by IRMA allows a complete discrimination of normal from hyperthyroid patients and can avoid the need for TRH stimulation tests.

Adenoma↗

[Thyroxine and triiodothyronine].

The value of measurements of serum thyroxine (T4) and triiodothyronine (T3) concentrations in the clinical evaluation of thyroid function is well established. In the present report the properties of the methods currently available for the assessment of circulating thyroid hormones are examined. Recent data indicate that results of measurements of serum T4 by radioimmunoassay (RIA) or by displacement analysis are qualitatively and quantitatively similar. Evidence has been provided from this and other laboratories that elevated or subnormal serum levels of total tt4 may be observed in several euthyroid physiologicmal serum levels of total T4 may be observed in several euthyroid physiological or pathological conditions associated with altered capacity of the thyroxine-binding protein; in these cases a normal free thyroxine index is usually found indicating its importance in the evaluation of thyroid function. Several physiological observations and the recent recognition of clinical conditions associated with changes in the T4/T3 ratio, justify the present interest in the measurement of serum T3. The advantages of RIA methods with respect to displacement techniques in the determination of this hormone are well documented. The AA. report here their experience with a simple RIA method for total T3, using a single Sephadex G25 column for extraction of T3 from serum and for separation of bound from free hormone. The mean (+/-SD) values of serum T3 found in 78 normal, 23 hyperthyroid and 25 hypothyroid subjects were as follows:160+/37ng/dl, 604+/195ng/dl and 35+/23ng/dl respectively. High values were found in 19 pregnant women at delivery (236+/29ng/dl), but not in 5 subjects on contraceptives (156+/42ng/dl). A relatively large variability is noted when normal values reported from different laboratories are compared. This may be related at least in part to geographical and/or ethnical factors, but methodolgical differences may also be involved. The normal range of circulating T3 should be established in each individual laboratory.

Antibody Formation↗

Measurement of cAMP accumulation in Chinese hamster ovary cells transfected with the recombinant human TSH receptor (CHO-R): a new bioassay for human thyrotropin.

Circulating TSH bioactivity may vary in several clinical and experimental conditions. Since the reliability of the current methods for the measurement of TSH bioactivity is limited, a new bioassay based on cAMP accumulation in Chinese Hamster Ovary cells transfected with recombinant human TSH receptor (CHO-R) was set up. The sensitivity was 0.3 +/- 0.1, 0.4 +/- 0.1 and 0.01 +/- 0.01 micrograms/L for TSH IRP 80/558, recombinant human TSH and bovine TSH, respectively. Standard curves were parallel, and the intra- and inter-assay coefficients of variation were 13 +/- 1.1% and 22 +/- 1.9%, respectively. LH, FSH, CG and TSH subunits did not stimulate cAMP accumulation up to high concentrations. Circulating TSH was partially purified by immunoaffinity separation and concentrated before being bioassayed. However, plain sera with high TSH levels, such as those from primary hypothyroid patients (PH), could be directly tested in CHO-R bioassay, provided that sera were added at concentrations lower than 10%. TSH from 6 normal subjects had biological to immunological ratio (B/I) ranging from 0.6 to 2.1 (mean +/- SD = 1.4 +/- 0.5). TSH from 6 patients with PH showed bioactivity significantly lower than in normals (B/I = 0.6 +/- 0.3; p < 0.001; range = 0.3-1.1). TSH from 5 patients with central hypothyroidism of hypothalamic origin (CH) had undetectable basal bioactivity (B/I < 0.2), which normalized in only one patient after acute TRH and in all patients after chronic TRH administration. In conclusion, CHO-R cells provide an excellent tool for evaluating TSH bioactivity, owing to high sensitivity, specificity, reproducibility and feasibility of the assay.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗