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Biomedical subjects

M Giachetti

Publications and source records attributed to M Giachetti.

7 recordsLinked to original sources

Blood zinc status and zinc treatment in human immunodeficiency virus-infected patients.

We investigated the zinc concentration in blood and the effect of zinc supplementation in 11 male outpatients seropositive for human immunodeficiency virus at stage 5 according to the Walter Reed classification. Zinc concentration was measured in serum, platelets, mononuclear and polymorphonuclear cells, and erythrocytes. There was a significant increase in serum zinc concentration after zinc administration, but the zinc level in blood cells remained unchanged. All patients showed a progressive gain in body weight and a slight elevation in levels of CD4+ cells. No adverse side-effects were noticed.

Adolescent

Use of FRTL-5 for the study of thyroid antibodies involved in goitrogenesis.

Some authors have suggested a role of autoimmunity in the pathogenesis of iodine deficiency disorders (IDD). For this purpose we have searched for thyroid adenylate cyclase stimulating antibody (TSAb) and thyroid growth stimulating antibody (TGSAb) in patients with endemic goiter (EG) and endemic cretinism (EC). Immunoglobulins G preparations (IgGs) were tested in FRTL-5 cells. TSAb were calculated as percent of cAMP increase over basal production and TGSAb were expressed as percent of increase of 3H-thymidine incorporation and DNA content in FRTL-5 cells. Our results show that IgGs from goitrous patients were devoid of TSAb and TGSAb activities, while in the same conditions IgGs from patients with Graves' disease had the ability to stimulate cAMP production and 3H-thymidine incorporation in FRTL-5 cells. These data argue against a direct role of TSAb and TGSAb in the pathogenesis of IDD.

Adenylyl Cyclases

Thyroid autoimmunity and thyroid autonomy.

While it is well established that autoimmune factors are the cause of goiter and hyperthyroidism in Graves' disease, these factors are not yet considered relevant in the development of thyroid autonomy. While an increased overall frequency of anti-Tg and anti-TPO antibodies has been found in moderate iodine-deficient areas, where thyroid autonomy is more frequently observed, there was evidence indicating that thyroid autoimmune phenomena were the consequence rather than the cause of the goiter. Thyroid Stimulating Antibodies (TSAb) have been reported in sera of patients with nodular autonomous goiter, but their pathogenetic relevance is uncertain, since these findings could not be confirmed by others. In our experience TSAb were detected in few cases with multinodular nontoxic goiter and were always associated with anti-TG and anti TPO antibodies, indicating that these patients have the nodular variant of Graves' disease. Besides TSAb, Thyroid Growth Stimulating Antibodies (TGAb) have been detected by different techniques in several goitrous conditions, including Graves' disease and sporadic or endemic nontoxic goiter. The precise nature of TGAb remains to be clarified, and particularly the relationship between TGAb and TSAb is still a matter of controversy. However, data indicating that TGAb cannot be dissociated from TSAb in Graves' sera suggest that these antibodies can be regarded as a sufficient pathogenetic agent for the development of both goiter and thyroid hyperfunction in Graves' disease. The relevance of TGAb in euthyroid goitrous conditions is uncertain, since conflicting results have been reported.(ABSTRACT TRUNCATED AT 250 WORDS)

Autoantibodies

Enzymatic assay of magnesium through glucokinase activation.

We describe an improved enzymatic method for assaying magnesium in serum, plasma, or urine. Magnesium participates as an Mg.ATP complex in a reaction catalyzed by glucokinase (EC 2.7.1.2) coupled to an NADP+-dependent glucose-6-phosphate dehydrogenase (EC 1.1.1.49) reaction. The increase of absorbance at 340 nm, due to the NADPH produced, is proportional to the amount of the activated glucokinase, which in turn is related to the concentration of magnesium in the sample. The method is characterized by a zero-order reaction kinetics, affording a simple and rapid assay with good sensitivity and linearity (up to 2.06 mmol/L) and by working solutions that are stable (refrigerated) for one month. The method is reliable, produces test results that compare closely with those of the atomic absorption spectrophotometry (r greater than or equal to 0.99), is suitable for routine work, and lends itself to automation.

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