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C Jaffiol

Publications and source records attributed to C Jaffiol.

At least 19 recordsLinked to original sources

Thyroid hormone generalized resistance.

The syndromes of thyroid hormone resistance may affect overall or only some tissues. The generalized resistance is an inherited disease which involves a familial eumetabolic or hypometabolic goiter, increased free thyroid hormones with normal or elevated plasma TSH levels; children may present mental retardation, deafness, short stature and delayed bone age. The disease is frequently misdiagnosed. In vivo and in vitro tests may be used to assess the diagnosis. The defect of increment of sex hormone-binding globulin after administration of T3 may be useful in the demonstration of the disease. Therapy uses high T4 or T3 doses in hypometabolic patients. The generalized thyroid hormone resistance could be linked to abnormalities at the T3 receptor and c-erb A gene level, as a consequence of different point mutations or deletions involving the hormone-binding domain.

Drug Resistance

[Endemic goiter in the La Kara region (Togo). Analysis of etiologic factors].

Among 6,035 people living in 3 villages from the area of La Kara (Togo), 984 randomized subjects were investigated to evaluate goiter prevalence and related etiologic factors. Creatinine and thiocyanates (SCN-) were measured in urine, thyroid hormones and TSH in plasma. Iodine was evaluated in urine, water, salt, soil, millet and sorgho. The amount of cassava was evaluated in food. Mean goiter prevalence was 32%, reaching to 45.9% in one village; urinary iodine remained in a low range (27.2 +/- 2.18 micrograms/g creatinine in adults, 34.3 +/- 6.7 in children--m +/- SEM) independently of the presence of endemic goiter. Urinary SCN- was increased. Low iodine values were found in food, salt, soil and water which contained few mineral elements except flour which was increased in the samples collected in one of the 3 villages. Cretinism was absent, T4, T3, TSH remained in a normal range. This study confirms a high prevalence of endemic goiter in the area of La Kara with iodine deficiency, leading to an urgent iodine supplementation.

Goiter, Endemic

[Incidence of endemic goiter on Reunion Island. A search for etiological factors].

In an epidemiological study carried out in Reunion Island, 1,686 randomized school children aged from 11 to 15 years were examined for goitre by cervical palpation. A detailed questionnaire was fully completed by each child and his parents. The iodine level was measured in 168 urinary samples and in the salt and water consumed in the various places investigated. The overall incidence of goitre was 8.2 percent, rising up to 19.7 percent in the mountainous part of the island. The mean urinary iodine level was 40.2 +/- 2.7 micrograms I/g creatinine (m +/- SEM) and fell to 20.0 +/- 3.7 in the highlands. Water and salt contained little iodine. A significant relationship was noted between the presence of goitre on the one hand and sex, familial incidence of goitre, cassava consumption and distance from the coast on the other hand. This study demonstrates that endemic goitre and iodine deficiency are present in a limited area of Reunion Island.

Adolescent

[Thyroid nodules and non-functional goiters. Diagnostic contribution of nuclear resonance imaging].

The finding of a "cold" thyroid nodular or goiter raises the problem of its potential malignancy, usually resulting in systematic surgery. Ultrasonography and computerized tomography provide accurate information concerning the size, structure and connections of these abnormalities, but they have very little to say about their histological nature. We evaluated the contribution of magnetic resonance imaging (MRI) to the histological diagnosis by attempting tissue characterization before surgery in 97 patients with nonfunctional thyroid nodule or goiter. Comparisons with the pathological study of operative specimens showed a very small percentage (1.05 percent) of false negative results in terms of malignancy, and this was due to reliable arguments for benignity which we were able to collect from MRI signal intensity and structural analysis. Without these criteria, a decisive answer would have been very difficult, as shown by the significant rate of false positive results (14.73 percent) and a specificity of only 81.8 percent if every lesion interpreted as doubtful is considered malignant. Attention is drawn to the difficulties encountered in characterizing lesion with intracystic vegetations and in distinguishing between thyroiditis and lymphoma. The possibility of obtaining frontal and sagittal sections increases the usefulness of MRI. The operator's experience is essential in interpreting the signals and deciding on the therapeutic approach.

Adult

[Pathology of thyroid hormone receptors].

The syndrome of resistance to thyroid hormones may affect overall or only some tissues. The generalized resistance associates a familial eu or hypometabolic goiter, increased free thyroid hormones with normal or elevated plasma TSH levels. The inheritance of the disease is autosomal dominant in most of the patients. In vivo or in vitro tests may be used to assess the diagnosis. Therapy refers to high doses of T3 or T4. Pituitary resistance to thyroid hormones leads to hyperthyroidism with normal or high TSH levels. The treatment uses different TSH suppressive drugs. Peripheral resistance associates hypometabolism with normal T4-T3 secretion and needs high T3 doses for therapy. An inherited abnormality of T3 nuclear receptor seems to be the consequence of a mutant gene. Hypersensitivity to thyroid hormones associates hypermetabolism with low or normal free thyroid hormone levels and increased T3 nuclear receptors.

Drug Resistance

The TRG Test. Which is the best index of TSH release?.

Prolonged (two hours) TRH tests were performed on 29 controls and 182 thyrotoxicosis patients of varying thyroid status after treatment with radioiodine. The object was to find which of the simple measurements of TSH from the TRH test most faithfully reflected the total amount of TSH (TTSH) released in response to the TRH. The simple indices compared were the absolute levels of TSH (ATSH) achieved at intervals during the test, and the increments in TSH (delta TSH) recorded at the same points in time. TTSH was measured by planimetry of the area beneath the response curve. Patients were classified as normo-responders, hyper-responders or hypo-responders according to normal limits for TTSH deduced from the controls. When each simple index of TSH response was substituted in turn for TTSH, the overall frequency of misclassification was considerably greater for ATSH than for delta TSH. This was largely due to the wide variability of passive or basal TSH secretion, which seriously confused the distinction between normally-responsive and hypo-responsive patients when ATSH was used. The delta TSH measured at 30 minutes gave the best overall results in terms of least classification error and closest correlation with TTSH.

Adult

[Hyperthyroidism].

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Graves Disease

[Chronologic study of free T3 and T4, of responses to TRH and of the suppression test during treatment of Basedow's disease].

32 patients with Graves' Disease were investigated before treatment, during ATD therapy and after recovery with a normal T3 suppression test. Before treatment, TRH response was negative with elevated values of plasma TT4, AFT4, TT3 and AFT3. The 3d, 6 - 9 and 12-18 months and after recovery, several patients remained unresponders to TRH despite normal AFT4 and AFT3 in serum. In an opposite way some patients were responders, 1 month after ATD withdrawal, at the 6-9 month, with elevated values of AFT4 or AFT3. The discrepancy between TRH response and T3 suppression test is pointed out after recovery. The unresponsiveness of TSH to TRH unexplained by serum AFT4 or AFT3 may be due to : 1) a decrease in pituitary TSH stores. 2) an unknown factor inhibiting TSH release during Graves' disease 3) an hypersensitivity of thyreotrop cells to T3.

Graves Disease

Short and long term effects of radioiodine and antithyroid drugs on T4 binding proteins, free T4 and T3, during Graves' disease therapy.

Ninety five patients with Graves' disease were studied before and at three months intervals after antithyroid drugs (ATD) (31 cases) or radioiodine (64 cases) therapy until recovery. Before treatment, the T4 maxima binding capacity of TBPA was significantly decreased 253.5 +/- 11.4 mug/100 ml)(mean + se) (control values: 287 +/- 10.4 mug/100 ml) (alpha = 0.04), especially in 53.7% of patients (m = 177 +/- 8 mug/100 ml). The mean of TBG (m = 20.7 +/- 0.9 mug/100 ml) was not different from euthyroid subjects (m = 19.7 +/- 1.7 mug/100 ml) except in 51.2% of patients who had a low TBG (m = 14.3 +/- 1.1 mug/100 ml). An inverse linear correlation was found between TBG-DFT4 (alpha = 0.05) and DF T 3 (alpha = 0.002), TBPA-log DF T4 (alpha = 0.05) but not between TBG and TBPA. The physiological relationship between DFT3, DFT4, TT3, TBG and TBPA was studied in vitro; after adding increased quantities of T4 to a pool of sera collected from eu, hypo or hyperthyroid patients, DFT4, DFT3, FT3 index increased in linear positive relationship with TT4 concentrations, the kinetic of this phenomena was inversely correlated with T4 maximal binding capacity of TBG or TBPA for T4. Addition of T3 to the same sera did not show any effect on the previous parameters. DFT3 depended on the level of T4 in serum more than T3 concentration and was in inverse relationship with the maximal binding capacity of TBG. This data might explain the paradoxal normal or slightly increased values of DFT3 found in T3 thyrotoxicosis. In patients treated with ATD or radioiodine, TBPA but not TBG increased significantly on year after. However, in subjects with an initial very low TGB or TBPA, this phenomenon occurred on the third month after radioiodine or ATD. During the same period, DF T4 and DF T3 were inversely correlated to TBG and TBPA. In conclusion, important changes in T4 binding proteins and free fractions of thyroid hormones were observed in Graves' disease but were corrected by antithyroid therapy. All these data were in good agreement with the normalisation of thyroid function.

Adolescent

HL-A antigens in insulin-dependent diabetes mellitus.

HLA antigen typing by lymphocytotoxicity was performed for 2 groups of unrelated caucasian subjects. The first group was composed of 100 subjects with insulin-dependent diabetes mellitus. The second group was composed of 270 healthy subjects without diabetes. Our study has shown that for the inhabitants of Languedoc the BW15 antigen is not the most frequently found (11% of the diabetics, 10% of the healthy subjects) contrary to findings reported by others. The B8 antigen was the most frequently found (20% of the diabetics, 16,3% of the healthy subjects), in agreement with the findings of the same authors. The frequency of BW15 and B8 found simultaneously was increased (observed 3%, expected 1.38%). The principal findings of our study were a significantly increased frequency of Da25 and B18 (23% and 25% for the diabetic subjects, 11.26% and 12.22% for the healthy subjects), and a significantly decreased frequency of A11 and B12 (6% and 18% for the healthy subjects). The association of Da25 and B18 was observed for HLA phenotypes, suggesting a higher incidence of the Da25-B18 haplotype. For the diabetics, the types BW15, BW40 and Da25-B18 have little hereditary character, and are rapidly insulin dependent individuals.

Adult