PubMed Health⌕ Search

Biomedical subjects

A Spada

Publications and source records attributed to A Spada.

At least 127 records · Page 7Linked to original sources

Dopamine inhibits cytosolic Ca2+ increases in rat lactotroph cells. Evidence of a dual mechanism of action.

Single rat lactotroph cells were studied after loading with the cytosolic free Ca2+ concentration ([Ca2+]i) indicator fura-2 either 1 or 3 days after cell dispersion. Under unstimulated conditions, two groups of lactotrophs were observed, the first (predominant at day 1) with large [Ca2+]i fluctuations (peaks up to 300 nM) probably due to spontaneous action potentials and the second (predominant at 3 days) with stable [Ca2+]i (values variable between 65 and 200 nM). The effect of dopamine on the resting [Ca2+]i was different in the two groups. Even at high dopamine concentrations, no change occurred in the second group; whereas in the first, disappearance of fluctuations and marked decrease of [Ca2+]i were observed. These effects of dopamine appear to be due to hyperpolarization that was demonstrated by the use of a specific fluorescent indicator, bis(oxonol). Two types of triggered [Ca2+]i transients were studied in detail: those due to redistribution of Ca2+ from the intracellular stores (induced by thyrotropin-releasing hormone) and those due to Ca2+ influx through voltage-gated Ca2+ channels (induced by high [K+]). Dopamine (1 microM) markedly inhibited both these transients by the action of D2 receptors (blocked by 1-sulpiride and domperidone). All effects of dopamine were prevented by treatment of the cells with pertussis toxin, indicating the involvement of one (or more) GTP-binding protein(s). Another consequence of D2 receptor activation is the inhibition of adenylate cyclase. Treatments (cholera toxin, forskolin), known to raise cAMP levels, were found to dissociate the effects of dopamine on [Ca2+]i inasmuch as they markedly relieved the inhibition of the redistributive transients by thyrotropin-releasing hormone but left hyperpolarization and inhibition of K+ transients unaffected. The spectrum of intracellular signals elicited by the activation of D2 receptors is therefore complex and includes at least two mechanisms that involve [Ca2+]i, one related and the other independent of the decrease of cAMP levels.

Adenylate Cyclase Toxin↗

Effect of calcium on adenylate cyclase of rat anterior pituitary gland.

The effect of free calcium (Ca2+) on adenylate cyclase (AC) activity of rat anterior pituitary gland have been investigated in order to shed some light on the interrelationships between the two second messengers (cAMP and calcium) which operate in pituitary cells. Anterior pituitary homogenates or crude membranes preparations (obtained using buffers free of divalent cation chelators) were assayed and the concentrations of Ca2+ in the assay mixture containing EGTA were calculated by a computer program for each addition of CaCl2. A wide range of Ca2+ concentrations (from 2 X 10(-9) to 6 X 10(-4)M) was spanned. Ca2+ was found to markedly inhibit pituitary AC and the mathematical analysis of data indicated the presence of two inhibition The two KiS were: 1.78 +/- 0.48 X 10(-7) M and 2.47 +/- 0.52 X 10(-4) M for the homogenates and 1.71 +/- 0.45 X 10(-7) M and 3.15 +/- 0.85 X 10(-4) M for the membrane preparations. No stimulation of the enzyme could be detected at any Ca2+ concentration tested. Furthermore, because of our experimental conditions it is unlikely that there was substantial loss of endogenous calmodulin, or other calcium binding protein(s) required to mediate AC stimulation by calcium. The lack of a calcium-calmodulin stimulation of pituitary AC was confirmed by experiments with anticalmodulin drugs (trifluoperazine and calmidazolium, R24571) and experiments with EGTA-washed membranes in the presence of exogenous calmodulin. At any Ca2+ concentration, the same AC activity was observed in the presence and in the absence of anticalmodulin drugs or added calmodulin. The mechanism of pituitary AC inhibition by Ca2+ was investigated focusing on a range of Ca2+ concentrations near the Ki for the high affinity calcium site and thus similar to the intracellular Ca2+ concentrations. Ca2+ was found to act as a competitive inhibitor of the Mg2+ activation of AC and as a noncompetitive inhibitor with respect to the MgATP2-, the substrate of the enzyme. The effects of Ca2+ on AC were also studied in cell populations and tissues extremely rich in PRL-secreting cells (cell fractions purified from rat anterior pituitaries and human prolactinomas). The pattern of Ca2+ action was found to be nearly superimposable on that observed in total pituitary.(ABSTRACT TRUNCATED AT 400 WORDS)

Adenosine Triphosphate↗

Lack of desensitization of adenomatous somatotrophs to growth-hormone releasing hormone in acromegaly.

The study was undertaken to investigate whether GHRH causes desensitization in GH-secreting adenomas in analogy to the normal situation. For this purpose, GH secretion after repeated GHRH administration to acromegalic patients in vivo and cultured adenomatous somatotrophs in vitro was studied. Six acromegalic patients and 6 normal subjects received 3 consecutive 50 micrograms GHRH rapid iv injections at 2-h intervals. Blood samples were drawn at 0, 15, 30, 60, and 120 min after each dose. The acromegalic patients had variable responses to the first injection and in each patient the second and third injections elicited serum GH responses that were quite similar to those after the first one. The GH increment, evaluated as net incremental area under the curve (mean +/- SE; nanograms per ml/120 min) was 2660 +/- 1501 after the first injection, 2176 +/- 1378 after the second injection, and 1978 +/- 1191 after the third injection; P = NS. On the contrary, in normal subjects a marked elevation of GH was observed only after the first injection (net incremental area under the curve, mean +/- SE after the first injection: 710 +/- 154; after the second injection: 6 +/- 39 and after the third injection: 108 +/- 28, P less than 0.01 vs. the first dose). The effect of in vitro GHRH pretreatment on the subsequent response to GHRH was evaluated in monlayer cultures from 12 GH-secreting adenomas. At 10(-8) M, GHRH significantly stimulated GH release from 8 adenomas. The GHRH pretreatment that was effective in inducing desensitization in cultured rat anterior pituitary cells, i.e. preexposure of the cultured cells to 10(-8) M GHRH for 4 h at 37 C, did not abolish the GH response to the subsequent challenge with GHRH (mean percent stimulation: 150 +/- 14% in untreated cells vs. 153 +/- 30% in pretreated cells; P = NS). Only in one adenoma, did GHRH-promoted desensitization occur. No modification was found in GHRH unresponsive adenomas. In the adenomas, not only the efficacy but also the potency of GHRH on GH release after GHRH pretreatment was of the same order of magnitude as in untreated cells. No desensitization to GHRH action occurred when the pretreatment time was prolonged up to 8 h and the GHRH concentration in the preincubation medium was increased to 10(-7) M.(ABSTRACT TRUNCATED AT 400 WORDS)

Acromegaly↗

Microvasculature of human micro- and macroprolactinomas. A morphological study.

A morphological study has been undertaken on the capillaries of 9 microprolactinomas and 9 macroprolactinomas, surgically removed from untreated patients. The study was carried out utilizing light and electron microscopic techniques and electron microscopic morphometry. The frequency of the capillaries and their structural appearance were taken into account. The frequency of capillaries was found to be very different in micro- and macroadenomas. In microadenomas 51.1 capillaries/0.1 mm2 of tissue section were observed; this value was not significantly different from that found in normal human pituitaries (62.0/0.1 mm2). In contrast, in macroprolactinomas a much lower degree of vascularization was found (9.3 capillaries/0.1 mm2 of tissue section). The capillary abnormalities previously reported for pituitary adenomas (endothelial thickening, swelling and blebbing, loss of fenestration, multilayered basal membrane, etc.) were observed in all prolactinomas studied, but no differences were found between the two types of tumors. In both types of tumors, the capillaries generally looked mature. Very rare sprouting capillaries were observed. Angiogenesis is likely to be slow, in agreement with the low frequency of capillaries in the more rapidly proliferating tumors such as macroprolactinomas. The different frequency of capillaries in micro- and macroprolactinomas could have some important consequences as to the regulation of the hormonal secretion. In fact, the different blood supply to the small and large tumors could result in a different availability of regulatory factors for the two types of tumors.

Amenorrhea↗

Effect of thyrotropin-releasing hormone on growth hormone release in normal subjects pretreated with human pancreatic growth hormone-releasing factor 1-44 pulsatile administration.

Growth hormone (GH) increase after thyrotropin-releasing hormone (TRH) has been documented in many pathological conditions. In order to evaluate whether exposure to growth hormone-releasing factor (GRF) might contribute to this effect in normal subjects, we studied GH responses to placebo, TRH, GRF and GRF plus TRH either in basal condition or after GRF administration. Ten subjects received placebo, TRH, GRF and GRF plus TRH on four separate occasions. GRF induced a clear rise in plasma GH, statistically different from those obtained after placebo or TRH (p less than 0.01). TRH was completely ineffective in both stimulating GH release and amplifying the secretory GH response to GRF. Twenty subjects, subdivided in four groups, received 3 consecutive intravenous GRF boli at two-hour intervals. Two hours later they were given a fourth stimulus: 5 had another 25 micrograms GRF i.v., 5 had 200 micrograms TRH i.v., 5 were tested with simultaneous 25 micrograms GRF and 200 micrograms TRH i.v. injection, and 5 with 1 ml saline. GH secretory responses were quantitated by determining the net incremental area under the curve (nAUC) over 60 min after the administration of each stimulus. The pattern of GH secretion after 1-3 GRF boli was not statistically different among the four groups. Plasma GH nAUC was higher after the first GRF injection than after the following ones (p less than 0.01). The administration of a fourth GRF bolus also caused a GH increase which was significantly smaller than that after the first one (p less than 0.01), but greater than that after placebo (p less than 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Endocrine, biochemical, and morphological studies of a pituitary adenoma secreting growth hormone, thyrotropin (TSH), and alpha-subunit: evidence for secretion of TSH with increased bioactivity.

A 40-yr-old man who had acromegaly and hyperthyroidism due to a GH/TSH-secreting pituitary adenoma is described. Serum free T4 was 2.8 ng/dl, free T3 was 1.1 ng/dl, and TSH was 1.2-1.5 microU/ml; the latter was measured in an immunoradiometric assay with a sensitivity of 0.07 microU/ml. Serum TSH was immunologically identical to standard TSH and did not decrease during a T3 suppression test. Serum free alpha-subunit and the molar alpha-subunit to TSH ratio were high (6.1 ng/ml and 31.2, respectively). TRH administration induced significant increases in both GH (+129%) and alpha-subunit (+156%) levels. Conversely, dopamine infusion resulted in a decrease in serum GH (-66%) and alpha-subunit (-43%) levels, and subsequent administration of the dopamine antagonist sulpiride induced significant increases in both GH and alpha-subunit (+393% and +106%, respectively). Similarly, somatostatin infusion inhibited GH (-43%) and alpha-subunit (-61%) secretion. Serum TSH levels were not affected by TRH, dopamine, or somatostatin. The biological to immunological activity ratio of serum TSH purified by immunoaffinity chromatography and measured in an adenylate cyclase assay was significantly increased compared to that in serum from hypothyroid or euthyroid subjects [biological to immunological activity ratio, 6.9 +/- 0.2 (+/- SD) vs. 4.4 +/- 1.1; P less than 0.001]. In gel chromatography, the apparent mol wt of the patient's TSH was smaller than that of the controls. After adenomectomy, all of the altered parameters of pituitary function became normal. Double gold particle immunostaining of the adenomatous tissue showed that all of the cells contained secretory granules positive for GH and alpha-subunit, while very few cells were positive for TSH beta as well as GH and alpha-subunit. These data indicate that in this patient serum TSH had an apparent mol wt smaller than that of normal TSH and an increased biological activity which, along with the autonomous TSH secretion, account for hyperthyroidism in the presence of low normal TSH levels; alpha-subunit originated from the same adenomatous cells that secreted GH but not TSH, thus explaining the in vivo observation that alpha-subunit responses to several agents were dissociated from TSH responses and parallel to GH responses; and TSH and GH were colocalized in a minority of the neoplastic cells.

Adenoma↗

Morphological studies on mixed growth hormone (GH)- and prolactin (PRL)-secreting human pituitary adenomas. Coexistence of GH and PRL in the same secretory granule.

A morphological study was carried out on five mixed GH- and PRL-secreting pituitary adenomas, surgically removed from acromegalic patients with hyperprolactinemia, in order to verify whether the two hormones were contained in the same cell or in different cells. Double labeling with the protein A-gold immunotechnique was used to visualize the ultrastructural localization of the two hormones on ultrathin sections of the tumors. By means of this high resolution technique we found in all adenomas the presence of numerous (from 50-80% of the whole cell population) mammosomatotrophs, i.e. cells containing simultaneously PRL and GH. The occurrence of cells producing only GH (in four tumors) or only PRL (in one tumor) was also observed. In mixed cells GH and PRL were segregated in the same mixed granule. In one tumor granules positive only for GH together with mixed granules were found in the same cell. Immunofluorescence studies, at the light microscopic level, allowed us to clearly identify mammosomatotrophs only in two tumors. Double labeling using the gold immunotechnique appears therefore to be the most suitable experimental approach to detect the existence of mixed cells in plurihormonal adenomas. Our results support the idea that the frequency of mixed adenomas with mixed cells may be higher than that believed previously. The simultaneous presence of two hormones in the same secretory granule could explain why, in patients having mixed tumors, factors able to stimulate or inhibit the release of one hormone can also stimulate or inhibit the secretion of the other.

Adenoma↗

In vitro studies on TSH secretion and adenylate cyclase activity in a human TSH-secreting pituitary adenoma. Effects of somatostatin and dopamine.

We have studied the in vitro TSH secretion and the adenylate cyclase (AC) activity of a human pituitary adenoma surgically removed from a hyperthyroid patient showing high serum TSH levels. The tumor appeared almost homogeneously constituted by cells positive for an anti-TSH-beta antiserum and showing the ultrastructural characteristics of the adenomatous thyrotrophs. Adenoma fragments released in vitro a large amount of TSH (148.4 microU/mg prot/30 min), alpha-subunit (35.5 ng/mg prot/30 min) and TSH-beta (10.1 ng/mg prot/30 min). The effects of somatostatin (GHRIH) and dopamine (DA) on the hormone release have been tested in vitro. Both agents markedly inhibited the release of intact TSH and TSH-beta whereas the release of alpha-subunit was less affected. The two agents were effective at concentrations higher than 10(-8)M. The ability of GHRIH and DA in modulating the AC activity was investigated in membrane fraction preparations. GHRIH inhibited AC at concentrations higher than 10(-7)M. The maximal inhibition was 32% at 10(-5)M. Conversely, DA slightly stimulated AC activity. This effects was not mimicked by the dopaminergic ergot CH 29-717, which was completely ineffective on the enzyme. These results suggest that: 1) in this TSH-secreting pituitary adenoma a normal secretory response to the inhibiting agents (GHRIH and DA) is present; 2) different mechanisms of transduction of the GHRIH and DA signals (cAMP dependent and cAMP independent) could be operating in this tumor.

Adenoma↗

Glycoprotein hormone alpha-subunit response to growth hormone (GH)-releasing hormone in patients with active acromegaly. Evidence for alpha-subunit and GH coexistence in the same tumoral cell.

Basal serum concentrations of glycoprotein hormone alpha-subunit and its response to GH-releasing hormone (GHRH) were studied in 22 acromegalic patients and in normal subjects. Four out of 22 patients had a basal alpha-subunit concentration (1.2-3.5 ng/ml) clearly above the upper limit of the normal range. GHRH injection (1 microgram/kg body weight, bolus dose iv) produced a clear alpha-subunit response [mean % increase: 120 +/- 37 (SD)] in the 4 patients with elevated basal alpha-subunit levels. No increase in serum glycoprotein hormones (TSH, LH, and FSH) occurred. Selective adenomectomy in 2 patients resulted in normalization of both serum GH and alpha-subunit levels, as well as disappearance of the abnormal alpha-subunit response to GHRH. In in vitro studies, only these 2 adenomas secreted alpha-subunit in large amounts (534 and 388 ng/mg protein . 30 min) and was it further stimulated by GHRH (% increase: 83 and 126). Morphological studies done with protein A-gold particle immunotechnique demonstrated that in these adenomas the great majority of the cells contained secretory granules positive for both GH and alpha-subunit. We conclude that: 1) alpha-subunit hypersecretion is present in some acromegalic patients (about 20%), 2) GHRH stimulates alpha-subunit release both in vivo and in vitro only in patients with elevated basal alpha-subunit levels, and 3) in these patients alpha-subunit derives from a common adenomatous cell secreting both alpha-subunit and GH molecules.

Acromegaly↗

Presence of an adenylate cyclase dually regulated by somatostatin and human pancreatic growth hormone (GH)-releasing factor in GH-secreting cells.

We have investigated the effects of SRIF and human pancreatic GH-releasing factor-44 (hpGRF-44) on adenylate cyclase (AC) activity of male rat anterior pituitaries (in which somatotrophs are present in large proportion) and of human GH-secreting pituitary adenomas (which are almost homogeneously constituted by somatotrophs). The adenoma's responsiveness to both agents in terms of secretion was previously demonstrated in in vitro experiments. SRIF inhibited in a dose-dependent fashion the GH release from monolayer cultures of the tumors. The inhibition ranged from 32-66% at the maximal effective concentration (10(-6) M). hpGRF-44 stimulated GH release in a dose-dependent fashion. The stimulation was 78-172% at 10(-7) M. SRIF and hpGRF-44 markedly affected AC activity in both systems. SRIF elicited a pronounced inhibition of the enzyme activity in a dose-dependent manner. The inhibition was about 40% in the rat and ranged from 16-49% in adenomas at the maximal effective concentration (10(-5) M SRIF). The inhibitory effect was GTP-dependent. hpGRF-44 markedly stimulated AC activity. The stimulation was dose dependent and GTP dependent. The stimulation was about 650% in the rat and 26-350% in adenomas at the maximal effective concentration (10(-6) M). These results suggest the presence of a dually regulated (by SRIF and hpGRF-44) AC in GH-secreting cells; an involvement of cAMP in the intracellular mechanisms transducing the signals of SRIF and hpGRF-44 in somatotrophs.

Adenylyl Cyclases↗

Bromocriptine treatment reduces the cell size in human macroprolactinomas: a morphometric study.

A morphological study was carried out on eight macroprolactinomas surgically removed from untreated patients and on nine macroprolactinomas removed from patients treated with bromocriptine (Brc; seven from patients treated for 6 weeks and two from patients treated for 1 yr). All treated patients had both serum PRL levels and tumor size (by computed tomographic scan) reduced. The study was carried out using light, immunofluorescence, and electron microscopic techniques and electron microscopic morphometry. By immunofluorescence microscopy, all tumors consisted of cells positive for PRL. In some treated tumors, the fluorescence was more marked than in untreated tumors. By light and electron microscopy and by morphometry, significant reductions in cell size were observed in the adenomas from Brc-treated patients. Both the cytoplasm and the nucleus shrank, but the reduction of the cytoplasm was much greater than that of the nucleus. The shrinkage of the cytoplasm was a consequence of marked involution of the rough endoplasmic reticulum and the Golgi complex in Brc-treated tumors. This effect may be related to inhibition of PRL synthesis by the drug. In some tumors from treated patients, the number of secretory granules was increased. No differences were observed between tumors from patients treated for 6 weeks and those from patients treated for 1 yr. The observed reduction in cell size by Brc could explain, at least in part, the well known size reduction of PRL-secreting adenomas in patients treated with the drug.

Adenoma↗

VIP stimulates ACTH release and adenylate cyclase in human ACTH-secreting pituitary adenomas.

The effect of vasoactive intestinal polypeptide (VIP) on in vitro ACTH release and adenylate cyclase activity was investigated in human ACTH-secreting pituitary adenomas from 4 patients with Cushing's disease and 2 patients with Nelson's syndrome. In all the tumors tested, VIP elicited a dose-dependent stimulation of hormone release from adenoma fragments (90-247% at 10-7 M VIP) and of cAMP formation in membrane preparations (75-140% at 3 X 10-6 M VIP). Therefore a role of VIP in the control of ACTH secretion in human ACTH-secreting adenomas is suggested; a cAMP-dependent mechanism of action can also be hypothesized.

Adenoma↗