Search PubMed⌕ Search

Biomedical subjects

R Vigneri

Publications and source records attributed to R Vigneri.

At least 145 records · Page 8Linked to original sources

Insulin binding sites on the nuclear envelope: potential relationship to mRNA metabolism.

Insulin regulates the growth and metabolism of most tissues. The hormonal potency of insulin results, to a large extent, from its ability to regulate target cells at a variety of subcellular sites. For many years, the effects of insulin on membrane transport, enzyme activity, and protein synthesis have been studied extensively. Less attention, however, was given to how insulin regulates nuclear functions. Recently the presence of specific binding sites for insulin on nuclei and nuclear envelopes have been documented and characterized. These binding sites have biochemical characteristics that are different from insulin binding sites on the plasma membrane. Moreover, direct in vitro effects of insulin on messenger RNA (mRNA) metabolism have recently been reported. These effects include the stimulation of mRNA efflux from intact nuclei, and stimulation of nucleoside triphosphatase activity (NTPase), the enzyme that regulates mRNA efflux. Thus, significant insight is now being gained concerning the action of insulin on the cell nucleus.

Animals↗

Effect of metformin on insulin binding to receptors in cultured human lymphocytes and cancer cells.

The effect of the biguanide metformin (dimethyl-biguanide) on insulin binding in vitro to IM-9 lymphocytes and MCF-7 human breast cancer cells was studied. Metformin significantly increased insulin binding to both cell types: maximum increment was 47.1 +/- 7.0% greater than control in IM-9 and 38.0 +/- 6.1% in MCF-7 cells. The dose-response curves indicated that the latter cell line was more sensitive to metformin, with a significant effect apparent at a metformin concentration of 7.7 x 10(-6) mol/l, similar to the levels reached in patients treated with this drug. When compared with phenformin, metformin was less active in increasing insulin binding to cultured cells, the ratio between the two drug responses being similar to that of their therapeutic dosage in patients. Insulin binding increment due to metformin was reversible, was not dependent on new protein synthesis and was evident also in IM-9 lymphocytes that had been down-regulated by pre-incubation with insulin (10(-7) mol/l). This effect of metformin on insulin binding to receptors may contribute to the hypoglycaemic effect of this agent in patients.

Breast Neoplasms↗

Phenformin has opposite effects on insulin and growth hormone binding to IM-9 lymphocytes.

We studied simultaneously the effect of various concentrations of phenformin on insulin and growth hormone binding to IM-9 lymphocytes, a cell type known to have receptors for both these hormones. After 24 hr preincubation with phenformin at 2 x 10(-5) M, insulin binding to IM-9 cells was increased by 80.4 +/- 10.5% over control (mean +/- SE of 10 experiments). In parallel experiments HGH binding was decreased by 43.1 +/- 2.2% (mean +/- SE). This effect of phenformin was dose-dependent for both HGH and insulin binding over the concentration range 1.5 x 10(-6) M to 5 x 10(-5) M, and was already detectable 3 hr after phenformin addition. These data indicate that phenformin has an opposite effect on insulin and growth hormone binding to IM-9 cells. Several possible mechanisms might be suggested for the decrease of HGH binding sites induced by phenformin: the simultaneous opposite effect on HGH and insulin receptors raises the possibility that some metabolic event triggered by the drug is able to induce opposite changes in the binding of these two hormones with different biological activities.

Cell Line↗

Comparison of the in vitro effect of biguanides and sulfonylureas on insulin binding of its receptors in target cells.

The in vitro effects of two biguanides (phenformin and metformin) and four sulfonylureas (tolbutamide, glyburide, gliclazide, and glisolamide) on insulin binding to its receptors were studied in four cultured cell lines: human skin fibroblasts, IM-9 lymphoblasts, MCF-7 human mammary carcinoma, and H35 rat hepatoma. After a 24-h preincubation with maximal stimulatory concentrations of phenformin, specific [125I] insulin binding to its receptors in the four different cell lines were increased over control by 67.2 +/ 17.0%, 101.3 +/- 11.5%, 65.1 +/- 8.0%, and 44.0 +/- 12.1%, respectively (mean +/- SE). Phenformin was effective in IM-9 cells that were down-regulated by unlabeled insulin, and the effect of phenformin on insulin binding was not affected by inhibition of protein synthesis with cycloheximide. In concert with this observation. Scatchard plots indicated that phenformin increased the insulin receptor's affinity rather than the number of insulin-binding sites on IM-9 cells. Metformin was also effective in significantly enhancing insulin binding in both IM-9 and MCF-7 cells. In contrast to the effects of biguanides, none of the four sulfonylureas tested had any significant influence on insulin binding to any of the four cell lines. These agents were also ineffective in IM-9 cells that were down-regulated by insulin. Therefore, these studies suggest that: 1) in vitro, biguanides enhance insulin binding to its receptors in a variety of cell types; 2) this effect of biguanides doesn't depend on new receptor synthesis; it is a result of changes in the affinity of the insulin receptor; and 3) in contrast to the biguanides, the sulfonylureas do not have a major direct effect on insulin binding to its receptors in most cell types.

Animals↗

Regenerating rat liver: insulin and glucagon serum levels and receptor binding.

Serum insulin and glucagon levels and liver plasma membrane receptor binding were studied in rats after partial hepatectomy. To clarify whether the surgical stress and decreased food intake that accompanies partial hepatectomy influenced these parameters, sham-operated rats were also studied. When sham-operated rats were compared to nonoperated controls, there was a 30% fall in insulin levels and a significant rise in the number of insulin receptors. In contrast, glucagon levels and glucagon receptor binding were unchanged. When partially hepatectomized rats were compared to sham-operated rats, there was no significant change in either insulin levels or the number of plasma membrane insulin receptors. Insulin degradative activity, however, was decreased in liver plasma membranes from partially hepatectomized animals, causing an apparent increase in [125I]iodoinsulin binding to this organelle. Bacitracin, an inhibitor of insulin degradation, abolished this difference in insulin binding. Glucagon levels rose by 65% after partial hepatectomy, whereas the number of glucagon receptors decreased significantly. The studies demonstrate, therefore, that after partial hepatectomy, serum insulin levels and insulin receptor binding in liver are altered, and these alterations are due to surgical stress and decreased food intake. Glucagon levels and glucagon receptor binding are also altered after partial hepatectomy, but these alterations are due to liver regeneration per se.

5'-Nucleotidase↗

Serum thyroglobulin levels in the newborn.

To study the pattern of thyroglobulin (Tg) serum concentrations in the first days of life, Tg, TSH, T3, and T4, were measured in both maternal and cord blood at delivery and 1, 6, 12, 24, 48, 72, and 96 h after birth in 16 newborns. Tg levels at birth wee higher in cord blood than in maternal blood. After birth, a prolonged Tg rise occurred. The increased levels became significant at 6 h and were maintained throughout the study. Tg levels were not correlated with serum levels of T3, T4, and TSH. We conclude that either a reduced Tg MCR or an increased thyroidal secretion of Tg after endogenous TSH stimulation in the newborn is a possible explanation for the elevated Tg levels occurring during the first days of life.

Female↗

Rapid regulation of plasma membrane insulin receptors.

Injection IP of insulin at a dosage of 1 microgram/g body weight into normal rats produced a rapid rise in serum insulin levels from < 1 to 298 ng/ml, and a rapid decrease in specific 125I-insulin binding to its receptors in purified liver plasma membranes. A fall in binding was seen as early as 10 minutes after injection and binding remained decreased for up to 60 min. At 10 min, 125I-insulin binding had fallen to 59% of controls; in contrast, 125I-glucagon binding remained unchanged. Extraction of these plasma membrane followed by radioimmunoassay for insulin did not reveal appreciable amounts of exogenous insulin. The 125I-insulin dissociation rate from plasma membranes of control and insulin treated rats was the same, also indicating a lack of exogenous insulin. Scatchard analyses indicated that the decreased binding seen after insulin injection was due primarily to a change in the number of insulin receptors and not their affinity. These studies suggest, therefore, that high doses of insulin in vivo can rapidly regulate the number of plasma membrane insulin receptors in liver.

Animals↗

Measurement of reverse triiodothyronine in dried blood spot: methodology and clinical application as a screening procedure for detection of congenital hypothyroidism.

A new sensitive radioimmunoassay method for measuring reverse triiodothyronine (rT3) concentrations in dried blood samples, designed to screen newborn infants for congenital hypothyroidism, has been developed. Paper strips are impregnated with cord blood and dried. Duplicate 5-mm diameter discs are punched from the paper strips and added directly to the radioimmunoassay reaction mixture. After incubation, bound and free hormone are separated by dextran-coated charcoal. The disc remains in the solution throughout the procedure and the assay can be completed within 24 hr. Recovery of rT3 is greater than 95% and coefficients of variation are 9.4% (intraassay) and 12.2% (interassay) at an rT3 concentration of 220 ng/dl. At very low rT3 concentrations (25 ng/dl), coefficients of variation are 14.2% (intraassay) and 18.7% (interassay). The method readily detects 12.5 ng/dl of rT3. With this paper disc method, rT3 was measured in 38 newborns and compared with serum rT3 measured in the same subjects by a standard radioimmunoassay method. The correlation between rT3 values measured in dried blood disc and in serum was very high (r = 0.918). The rT3 in dried blood discs from the cord blood of 745 normal newborns was 228.9 +/- 76.0 ng/dl (mean +/- SD). In contrast, two infants with proven congenital hypothyroidism had rT3 values of 35 and 75 ng/dl, respectively. This study indicates that rT3 can be easily measured in dried blood discs and suggests that the described method may be a useful screening procedure in a program for the detection of neonatal hypothyroidism.

Congenital Hypothyroidism↗

Thyroid-pituitary function in eight anencephalic infants.

The function of the thyroid pituitary axis was investigated in 8 anencephalic infants with no hypothalamus. Thyrotrophin (TSH), thyroxine (T4), 3,5,3'-triiodothyronine (T3) and 3,3',5'-triiodothyrone (reverse T3 and rT3) were measured in the cord blood in 5 cases and during the first 4 h of life in 3 cases. TSH response to synthetic thyrotrophin-releasing hormone (TRH) (200 microgram iv) was carried out in two cases and thyroid hormone response to bovine TSH (5 IU iv) was evaluated in 3 cases. The following results wre obtained: 1) The pituitary gland was found in all infants and the thyroid was normal both grossly and by microscopic sections. 2) TSH levels at birth were normal but there was no spontaneous post-delivery surge. 3) T4 and T3 values at delivery were within normal range, but no T3 increase was present after birth. rT3 levels at birth were higher than normal in 3 cases. 4) Administration of TRH caused a marked and rapid TSH release. 5) Thyroid hormone response to TSH was normal. The present findings suggest that in the anencephalic foetus both pituitary TSH-secreting cells and the thyroid gland do develop despite the absence of the hypothalamus and are able to function if adequately stimulated.

Anencephaly↗

Phenformin increases insulin binding to human cultured breast cancer cells.

The effect of the hypoglycemic biguanide, phenformin, on the binding of insulin to MCF-7 cells, an in vitro line derived from a human breast cancer, has been investigated. Cells incubated for 24 h in the presence of 1.0 micrograms/ml of phenformin bound 62.2 +/- 8.1% (mean +/- SE) more 125I-insulin than did controls. The phenformin effect was dose-dependent over the concentration range of 0.1 micrograms/ml to 10.0 micrograms/ml. The increased binding was due to an increase in receptor number without a change in binding affinity. This demonstration of increased receptor number in response to phenformin exposure provides support for the hypothesis that one action of phenformin is to enhance tissue sensitivity to insulin.

Breast Neoplasms↗

Insulin and glucagon receptors in Morris hepatomas of varying growth rates.

The binding of both insulin and glucagon to receptors in plasma membranes from five hepatomas of varying growth rates was diminished when compared to plasma membranes from normal liver. Scatchard analyses of the binding data suggested that the decrease in glucagon binding was due to a decrease in binding capacity, whereas the decrease in insulin binding was due either to a decrease in binding affinity or to site-site interactions. The decreased binding of insulin, but not of glucagon, showed a significant correlation with increasing growth rate of the tumors. These data suggest, therefore, that decreased binding of insulin to receptors could be a feature of increasing growth rate in hepatomas.

Adenosine Triphosphatases↗