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S R Bloom

Publications and source records attributed to S R Bloom.

At least 127 records · Page 7Linked to original sources

Glucagon-like peptide 1 has a physiological role in the control of postprandial glucose in humans: studies with the antagonist exendin 9-39.

Glucagon-like peptide 1(7-36) amide (GLP-1) is postulated to be the major physiological incretin in humans, but evidence is indirect. We report the first studies examining the physiological role of GLP-1 in the postprandial state in humans using the GLP-1 antagonist exendin 9-39. Exendin 9-39 completely blocked GLP-1-induced glucose-stimulated insulin release from perifused human islets of Langerhans. In healthy fasted volunteers, intravenous infusion of exendin 9-39 at 500 pmol x kg(-1) x min(-1) in the hyperglycemic state abolished the insulinotropic effect of a physiological dose of GLP-1 and fully reversed the glucose-lowering effect of GLP-1. Nine healthy subjects consumed a 150-g oral glucose tolerance test and were infused with 500 pmol x kg(-1) x min(-1) exendin 9-39 or saline. Exendin 9-39 increased the peak postprandial glucose level (exendin 9-39, 8.67 +/- 0.35 vs. saline, 7.67 +/- 0.35 mmol/l, P < or = 0.005) and increased postprandial plasma glucose incremental area under the curve by 35% (exendin 9-39, 152 +/- 19 vs. saline, 113 +/- 16 mmol x min x l(-1), P < or = 0.05). This could be explained as partly secondary to the blockade of glucose-induced suppression of glucagon and maybe also to an increased rate of gastric emptying. Thus, in humans exendin 9-39 acts as an antagonist of GLP-1 both in vitro and in vivo. When infused alone, exendin 9-39 causes a deterioration in postprandial glycemic control, suggesting that GLP-1 may be important for maintenance of normal postprandial glucose homeostasis in humans.

Cytokines↗

The role of nitric oxide in mediating pancreatic endocrine responses to insulin-induced hypoglycaemia in the conscious calf.

The role of nitric oxide (NO) in mediating pancreatic endocrine responses to moderate hypoglycaemia has been investigated in conscious unrestrained calves. The synthesis of endogenous NO was inhibited by the administration of N-nitro-L-arginine methyl ester (L-NAME; 100 mg kg-1 I.A.), while sodium nitroprusside was infused continuously (2-4 microg min-1 kg-1 I.V.) to mimic the tonic production of NO. This effectively abolished the rise in plasma pancreatic polypeptide (PP) concentration during moderate hypoglycaemia (0.7 nmol kg-1 insulin I.V.) and significantly reduced the response to more intense hypoglycaemia (2.0 nmol kg-1 insulin I. V.). In contrast, the glucagon response was not significantly affected in either group, although consistently higher plasma glucagon values were obtained in response to the higher dose of insulin following the administration of L-NAME. It is concluded that, in the absence of L-NAME, production of NO contributes to the PP response, but not the glucagon response to hypoglycaemia in this species under physiological conditions.

Animals↗

Targeted disruption of the murine galanin gene.

The 29 amino acid neuropeptide galanin is widely distributed in the nervous and endocrine systems; highest levels of galanin synthesis and storage occur within the hypothalamus in the median eminence, but it is also abundantly expressed in the basal forebrain, the peripheral nervous system, and gut. To further define the role played by galanin in the peripheral nervous and endocrine systems, a mouse strain carrying a loss-of-function germ-line mutation of the galanin locus, engineered by targeted mutagenesis in embryonic stem cells, has been generated. The mutation removes the first five exons containing the entire coding region for the galanin peptide. Germ-line transmission of the disrupted galanin locus has been obtained, and the mutation has been bred to homozygosity on the inbred 129O1aHsd background. Phenotypic analysis of mice lacking a functional galanin gene demonstrate that these animals are viable, grow normally, and can reproduce. A marked reduction in both the anterior pituitary prolactin content and in circulating plasma levels of the hormone is evident. Lactation is abolished along with abrogation of the proliferative response of the lactotroph to estrogen. The responses of sensory neurons to injury in the mutants are markedly impaired. Peripheral nerve regeneration is reduced with associated long-term functional deficits. There is a striking reduction in the development of chronic neuropathic pain. These two phenotypic changes may be explained, in part, by the observation that a subset of dorsal root ganglion neurons is lost in the mutant animals, implying a role for galanin as a trophic cell survival factor. These initial findings have important implications for our understanding and potential therapeutic treatment of (a) sensory nerve regeneration and neuropathic pain and (b) disordered pituitary proliferation and the development of prolactinoma.

Amino Acid Sequence↗

Galanin regulates prolactin release and lactotroph proliferation.

The neuropeptide galanin is predominantly expressed by the lactotrophs (the prolactin secreting cell type) in the rodent anterior pituitary and in the median eminence and paraventricular nucleus of the hypothalamus. Prolactin and galanin colocalize in the same secretory granule, the expression of both proteins is extremely sensitive to the estrogen status of the animal. The administration of estradiol-17beta induces pituitary hyperplasia followed by adenoma formation and causes a 3,000-fold increase in the galanin mRNA content of the lactotroph. To further study the role of galanin in prolactin release and lactotroph growth we now report the generation of mice carrying a loss-of-function mutation of the endogenous galanin gene. There is no evidence of embryonic lethality and the mutant mice grow normally. The specific endocrine abnormalities identified to date, relate to the expression of prolactin. Pituitary prolactin message levels and protein content of adult female mutant mice are reduced by 30-40% compared with wild-type controls. Mutant females fail to lactate and pups die of starvation/dehydration unless fostered onto wild-type mothers. Prolactin secretion in mutant females is markedly reduced at 7 days postpartum compared with wild-type controls with an associated failure in mammary gland maturation. There is an almost complete abrogation of the proliferative response of the lactotroph to high doses of estrogen, with a failure to up-regulate prolactin release, STAT5 expression or to increase pituitary cell number. These data further support the hypothesis that galanin acts as a paracrine regulator of prolactin expression and as a growth factor to the lactotroph.

Alleles↗

Neuropeptide Y (NPY) actions on the corticotroph cell of the anterior pituitary gland are not mediated by a direct effect.

Neuropeptide Y has been implicated in the activation of the hypothalamic-pituitary-adrenal (HPA) axis, the regulation of growth and sexual function, and is the most potent stimulant of feeding yet reported. The actions of NPY on the HPA axis are thought to be mediated via an activation of the corticotrophin releasing hormone (CRH) neurones within the paraventricular nucleus of the hypothalamus. The ability of NPY to directly influence the corticotroph cell is currently controversial. These studies investigated whether NPY could have a direct influence on anterior pituitary adrenocorticotrophic hormone (ACTH) release. In dispersed male rat anterior pituitary cells, NPY (1-1000 nM) had no effect on either basal or CRH (1 nM) stimulated ACTH release. Basal release, NPY (1000 nM) 111 +/- 6% vs. control 103 +/- 5%. CRH stimulated release, CRH (1 nM) with NPY (1000 nM) 226 +/- 23% vs. CRH (1 nM) alone 228 +/- 20%. In addition, NPY (1000 nM) had no effect on either basal or CRH (1 nM) stimulated ACTH release in the mouse corticotroph cell line, AtT-20. Thus, in two models of the anterior pituitary corticotroph NPY had no effect on ACTH release. NPY induced activation of the HPA axis is likely to be mediated via a modulation of hypothalamic CRH and not via a direct action at the level of the anterior pituitary.

Adrenocorticotropic Hormone↗

Leptin modulates the T-cell immune response and reverses starvation-induced immunosuppression.

Nutritional deprivation suppresses immune function. The cloning of the obese gene and identification of its protein product leptin has provided fundamental insight into the hypothalamic regulation of body weight. Circulating levels of this adipocyte-derived hormone are proportional to fat mass but maybe lowered rapidly by fasting or increased by inflammatory mediators. The impaired T-cell immunity of mice now known to be defective in leptin (ob/ob) or its receptor (db/db), has never been explained. Impaired cell-mediated immunity and reduced levels of leptin are both features of low body weight in humans. Indeed, malnutrition predisposes to death from infectious diseases. We report here that leptin has a specific effect on T-lymphocyte responses, differentially regulating the proliferation of naive and memory T cells. Leptin increased Th1 and suppressed Th2 cytokine production. Administration of leptin to mice reversed the immunosuppressive effects of acute starvation. Our findings suggest a new role for leptin in linking nutritional status to cognate cellular immune function, and provide a molecular mechanism to account for the immune dysfunction observed in starvation.

Adult↗

Glucagon-like peptide-1 stimulates luteinizing hormone-releasing hormone secretion in a rodent hypothalamic neuronal cell line.

To examine the influence of the putative satiety factor (GLP-1) on the hypothalamo-pituitary-gonadal axis, we used GT1-7 cells as a model of neuronal luteinizing hormone- releasing hormone (LHRH) release. GLP-1 caused a concentration-dependent increase in LHRH release from GT1-7 cells. Specific, saturable GLP-1 binding sites were demonstrated on these cells. The binding of [125I]GLP-1 was time-dependent and consistent with a single binding site (Kd = 0.07+/-0.016 nM; binding capacity = 160+/-11 fmol/mg protein). The specific GLP-1 receptor agonists, exendin-3 and exendin-4, also showed high affinity (Ki = 0.3+/-0.05 and 0.32+/-0.06 nM, respectively) as did the antagonist exendin-(9-39) (Ki = 0.98+/-0.24 nM). At concentrations that increased LHRH release, GLP-1 (0.5-10 nM) also caused an increase in intracellular cAMP in GT1-7 cells (10 nM GLP-1: 7.66+/-0.4 vs. control: 0.23+/-0.02 nmol/mg protein; P < 0.001). Intracerebroventricular injection of GLP-1 at a single concentration (10 microg) produced a prompt increase in the plasma luteinizing hormone concentration in male rats (GLP-1: 1.09+/-0.11 vs. saline: 0.69+/-0.06 ng/ml; P < 0.005). GLP-1 levels in the hypothalami of 48-h-fasted male rats showed a decrease, indicating a possible association of the satiety factor with the low luteinizing hormone levels in animals with a negative energy balance.

Animals↗

Effects of keratinocyte growth factor (KGF) on gut growth and repair.

Keratinocyte growth factor (KGF) is a mitogen found throughout the gastrointestinal tract, but its role in gastrointestinal pathophysiology is unclear. The effect of recombinant KGF on gut growth and repair has been examined using a variety of in vivo models. Rats receiving total parenteral nutrition had co-infusions of KGF or control for 6 days. Changes in gut growth (wet weight and vincristine-induced metaphase arrest) were then assessed. The effects of KGF on gastric repair and acid secretion in rats were determined using an indomethacin (20 mg/kg)/restraint model and animals fitted with chronic gastric fistulae. KGF at 0.1, 1, and 3 mg/kg increased gut growth as assessed by wet weight throughout the gastrointestinal tract and increased vincristine-induced accumulation of metaphases in the stomach and small intestine but not in the colon. Plasma gastrin, peptide YY, enteroglucagon, and glucagon-like peptide-1 were all increased, whereas insulin was lowered by KGF (all P < 0.01). KGF was ineffective in reducing indomethacin-induced gastric damage but caused a reduction in basal acid secretion of about 35 and 50 per cent when administered at 0.2 or 5 mg/kg (P < 0.05). These studies support the idea that KGF is involved in the control of proliferation of the gastrointestinal tract. They do not provide evidence, however, for a role in the early reparative process invoked during short-term models of gastrointestinal injury.

Animals↗

Inhibition of glucose stimulated insulin secretion by neuropeptide Y is mediated via the Y1 receptor and inhibition of adenylyl cyclase in RIN 5AH rat insulinoma cells.

Neuropeptide Y (NPY) has been shown to inhibit insulin secretion from the islets of Langerhans. We show that insulin secretion in the insulinoma cell line RIN 5AH is inhibited by NPY. 125I-Peptide YY (PYY) saturation and competition-binding studies using NPY fragments and analogues on membranes prepared from this cell line show the presence of a single class of NPY receptor with a Y1 receptor subtype-like profile. Inhibition of insulin secretion in this cell line by NPY fragments and analogues also shows a Y1 receptor-like profile. Both receptor binding and inhibition of insulin secretion showed the same orders of potency with NPY > [Pro34]-NPY > NPY 3-36 >> NPY 13-36. The Y1 receptor antagonist, BIBP 3226, blocks NPY inhibition of insulin secretion from, and inhibits 125I-PYY binding to, RIN 5AH cells. Northern blot analysis using a Y1-receptor specific probe shows that NPY Y1 receptors are expressed by RIN 5AH cells. Y5 receptors are not expressed in this cell line. Neuropeptide Y inhibition of insulin secretion is blocked by incubation with pertussis toxin, implying that the effect is via a G-protein (Gi or Go) coupled receptor. Neuropeptide Y inhibits the activation of adenylyl cyclase by isoprenaline in RIN 5AH cell lysates, and the stimulation of cAMP by glucagon-like peptide-1 (7-36) amide (GLP-1). It also blocks insulin secretion stimulated by GLP-1, but not by dibutyryl cyclic AMP. Hence, we suggest that NPY inhibits insulin secretion from RIN 5AH cells via a Y1 receptor linked through Gi to the inhibition of adenylyl cyclase.

Adenylyl Cyclase Inhibitors↗

Plasma glucagon-like peptide-1 (7-36) amide (GLP-1) response to liquid phase, solid phase, and meals of differing lipid composition.

The gut hormone glucagon-like peptide-1 (7-36) amide (GLP-1) is a potent insulin secretagogue. It has been proposed to be a novel treatment for non-insulin-dependent diabetes mellitus (NIDDM). Postprandial plasma GLP-1, insulin, and glucose responses were measured in six healthy volunteers in response to a solid test meal and a liquid meal of identical composition. Responses to three isocaloric soups of identical macronutrient and energy content containing differing degrees of fat saturation were also measured. The liquid form of the meal released significantly more GLP-1 than the solid form (measured by incremental area under the curve 0-180 min: 2.5 nmol.min-1.L-1 [median]; range 1.4-3.7 versus 1.4 nmol.min-1.L-1 [median]; range 0.6-1.8) (P < 0.05) and this occurred earlier (15 min versus 60 min). The incremental area under the curve for insulin was significantly greater following the liquid meal (incremental area under the curve 0-180 min: 18.5 nmol.min-1.L-1 [median]; range 15.9-35.8 versus 17.6 nmol.min-1.L-1 [median]; range 13.7-25.5) (P < 0.05). The glucose response to each meal was not different. The type of fat in the soups produced no significant difference in GLP-1, insulin, or glucose levels. Our findings suggest that the physical form of a meal significantly alters the GLP-1 response, whereas fatty acid saturation has little effect.

Adult↗

Subcutaneous glucagon-like peptide-1 (7-36) amide is insulinotropic and can cause hypoglycaemia in fasted healthy subjects.

1.Glucagon-like peptide-1 (7-36) amide (GLP-1) is a gut hormone released postprandially that stimulates insulin secretion, suppresses glucagon secretion and delays gastric emptying. The insulinotropic action of GLP-1 is more potent under hyperglycaemic conditions. Several published studies have indicated the therapeutic potential of subcutaneous GLP-1 in non-insulin-dependent (Type 2) diabetes mellitus.2. We investigated whether subcutaneous GLP-1, at a dose shown to improve glycaemic control in early Type 2 diabetes, is insulinotropic at normal fasting glucose concentrations. A double-blind, randomized, crossover study of 10 healthy subjects injected with GLP-1 or saline subcutaneously after a 16 h fast was performed. The effect on cardiovascular parameters was also examined. 3.GLP-1 caused a near 5-fold rise in plasma insulin concentration. After treatment with GLP-1, circulating plasma glucose concentrations fell below the normal range in all subjects. One subject had symptoms of hypoglycaemia after GLP-1. A rise in pulse rate was found which correlated with the fall in plasma glucose concentration. An increase in blood pressure occurred with GLP-1 injection which was seen at the same time as the rise in plasma GLP-1 concentrations.4. This study indicates that subcutaneous GLP-1 can override the normal homoeostatic mechanism maintaining fasting plasma glucose in man, and is also associated with an increase in blood pressure.

Adult↗

Changing trends in the management of phaeochromocytoma.

BACKGROUND: The recent experience of a specialist endocrine surgery unit in the management of phaeochromocytoma is reviewed. METHODS: Over a 14-year period (June 1978 to June 1992) 43 patients (14 men, 29 women) with a mean age of 42 years were referred with phaeochromocytoma. RESULTS: Biochemical confirmation was usually by measurement of 24-h urinary vallinylmandelic acid. From 1980 venous sampling was replaced by computed tomography as the primary localizing procedure. 131I-meta-iodobenzylguanidine scintigraphy was used in all patients between 1984 and 1987, but selectively after that. With regard to the operative approach used, between 1978 and 1983 midline or flank incisions were used, and from 1984 to 1992 subcostal or posterior approaches were used predominantly. There was one operative (30-day) death. One patient died 24 months after operation from recurrent malignant phaeochromocytoma, and three patient died during follow-up from unrelated causes. The remaining patients (mean follow-up 30 months) have no evidence of recurrent phaeochromocytoma, although four remain on antihypertensive medication. CONCLUSION: Improved imaging of phaeochromocytoma obviates the need for transperitoneal exploration, allowing selected phaeochromocytomas to be successfully managed using an extraperitoneal approach.

Adolescent↗

Serum leptin and insulin in paediatric end-stage liver disease and following successful orthotopic liver transplantation.

OBJECTIVE: Leptin, the product of the ob gene, is a postulated feedback regulator of adiposity with appetite suppressant and catabolic effects. Catabolic states are associated with decreased body fat mass as a result of both nutritional and metabolic perturbation. Low serum leptin has been described previously in a number of catabolic states. It has been unclear whether the observed changes in leptin are a cause or consequence of changes in adiposity. Paediatric end-stage liver disease (ESLD) is characterized by decreased body fat mass and poor linear growth. Successful treatment by orthotopic liver transplantation (OLT) is accompanied by increase in fat mass. We investigated the hypothesis that serum leptin would be low in paediatric ESLD and that increase in body fat mass post-OLT would result in increased serum leptin. DESIGN: Serum leptin and insulin were measured by radioimmunoassay in children with ESLD before and after successful OLT and in age-matched controls. PATIENTS: Twenty-four children with ESLD attending the outpatient department of King's College Hospital, London and 10 age-matched controls. MEASUREMENTS: Anthropometric measurements were performed according to standard techniques and standard deviation (SDS) derived from population standards. Serum leptin and insulin were measured by radioimmunoassay. RESULTS: Serum leptin pre-OLT, leptin (4.06 micrograms/l, [3.45, 5.68] median, with 25th and 75th interquartile ranges) was significantly lower than controls (6.62 micrograms/l, [4.33, 8.05], P = 0.02). Following OLT, serum leptin fell to levels which were significantly lower than pre-OLT values (3.32 micrograms/l, [2.30, 3.99], P = 0.01). There was no significant difference between boys and girls either pre-OLT (boys; 3.64 micrograms/l, [2.45, 5.57], girls; 4.14 micrograms/l, [3.18, 5.65]) or post-OLT (boys; 3.32 micrograms/l, [2.93, 3.62], girls; 3.69 micrograms/l, [2.23, 4.63]. Neither the age at OLT nor the age at the time of blood sampling was correlated with serum leptin pre-OLT or post-OLT. Pre-OLT the children were significantly malnourished with low measures of body fat mass (mid-arm circumference (MAC) SDS -1.90 [-4.67, -1.07]; triceps skinfold thickness (TSF) SDS -1.53, [-2.23, -0.23]; body mass index (BMI) 16.2, [15.5, 16.9]). Three months post-OLT, there were significant improvements in MAC SDS (-0.77, [-1.08, -0.20], P = 0.02) and TSF SDS (-0.41, [-1.95, -0.38], P = 0.003), but no significant change in BMI (15.9 [15.3, 16.7], P = 0.41. Pre-OLT, log serum leptin did not correlate with BMI, MAC SDS or TSF SDS. In contrast, post-OLT, there was a positive correlation between log serum leptin and BMI (r = 0.59, P = 0.003), MAC SDS (r = 0.49, P = 0.01) and TSF SDS (r = 0.41, P = 0.05). BMI also correlated with log serum leptin in the control children (r = 0.64, P = 0.04). CONCLUSIONS: Serum leptin is low in children with end-stage liver disease but does not show the expected correlation with measures of body fat mass. Surprisingly, following orthotopic liver transplantation serum leptin falls significantly despite significant increases in measures of body fat mass (triceps skinfold thickness standard deviation scores, mid-arm circumference standard deviation scores). Orthotopic liver transplantation restores the expected correlation of serum leptin with measures of body fat mass within the treatment group. The elevation of serum leptin above predicted levels in paediatric end-stage liver disease offers a mechanism for the anorexia and cachexia characteristic of this disease.

Anthropometry↗

Circulating gastrointestinal hormone abnormalities in patients with severe idiopathic constipation.

OBJECTIVE: This study aimed to determine if there is an abnormality of circulating gastrointestinal hormones in patients with severe idiopathic constipation. METHODS: Twelve patients, all female (median age 34 yr) and 12 healthy controls (eight female, median age 32 yr) were studied. A radioisotope-labeled solid/liquid meal was ingested, and the serum hormone response, as well as the relationship between serum hormones and rates of gastric emptying and small intestinal transit, were studied for 180 min postprandially. RESULTS: Somatostatin levels were higher in patients with constipation (basal level, controls vs patients, 31 vs 57 pmol/L, p < 0.05, median values; peak level, 48 vs 60, p < 0.05). Patients showed a significantly lower somatostatin integrated incremental meal response (2182 vs 104, p < 0.05). No correlation was found between the somatostatin levels and rates of upper gastrointestinal transit in patients. Pancreatic glucagon was significantly decreased (p=0.04). Enteroglucagon levels were significantly lower (p > 0.05) in patients between 30 and 60 min after the meal. The peak found after the meal in normal subjects was absent. Basal levels of pancreatic glucagon correlated with small bowel transit by two different measures: head of meal (r=0.69, p=0.03) and cecal filling at the time of 50% gastric emptying (r=0.84, p=0.002). No significant differences between the two groups could be found for basal and peak levels at different times and integrated incremental response to the meal for insulin, gastric inhibitory polypeptide (GIP), glucagon-like peptide-1 (GLP-1), cholecystokinin (CCK), gastrin, pancreatic polypeptide (PP), motilin, neurotensin, and peptide tyrosine tyrosine (PYY). CONCLUSION: Patients with severe idiopathic constipation have specific abnormalities of circulating gut hormones that most likely play a role in gastrointestinal motility and that may be of pathophysiological significance.

Acute Disease↗

Galanin is a paracrine inhibitor of gonadotroph function in the female rat.

Recent evidence suggests that pituitary galanin synthesized in the lactotroph is a paracrine regulator of lactotroph proliferation and PRL secretion and that these effects are mediated via a pituitary-specific galanin receptor, GAL-R2(orig.). At this receptor subtype, the galanin fragment 3-29 is fully active, in contrast to both the cloned GAL-R1 and GAL-R2, at which this fragment is inactive. Since paracrine communication has been demonstrated between pituitary gonadotrophs and lactotrophs, we investigated the hypothesis that galanin is also a paracrine regulator of gonadotroph function. Galanin attenuated LHRH-stimulated LH release in a dose-dependent manner in monodispersed rat anterior pituitaries harvested at proestrus (LHRH 100 nM, 10.7 +/- 0.2 ng/ml(-1) x 4 h vs. LHRH 100 nM + 1 microM porcine galanin (pGal), 7.0 +/- 0.2 ng/ml(-1) x 4 h; P < 0.01; i.e. 37% reduction). Galanin had similar suppressive effects on FSH release. Galanin, also dose-dependently, attenuated the LHRH-stimulated LH release from perifused proestrous rat pituitary fragments. pGal (1 microM) reduced the stimulated LH release by 80%, [area under the curve (AUC), LHRH 100 nM, 713 +/- 149 vs. LHRH 100 nM + 1 microM pGal, 131 +/- 7 ng/min x ml(-1) x 4 h; P < 0.02]. In addition, galanin 3-29, the specific GAL-R2(orig.) receptor agonist, inhibited LHRH-stimulated LH release from perifused proestrous rat pituitary fragments [AUC, LHRH 100 nM, 642 +/- 77 ng/min x ml(-1) vs. LHRH 100 nM + pGal 1-29, 206 +/- 44 ng/min x ml(-1) (P < 0.02); and LHRH 100 nM + pGal 3-29, 310 +/- 19 ng/min x ml(-1) (P < 0.02)]. Immunoblockade with specific galanin antiserum potentiated the LHRH-stimulated release of LH by 48% from perifused proestrous rat pituitary fragments (AUC, LHRH 100 nM + galanin antiserum, 721 +/- 65 ng/min x ml(-1) vs. LHRH 100 nM alone or with nonimmune antiserum, 489 +/- 33 ng/min x ml(-1) or 545 +/- 46 ng/min x ml(-1), P < 0.05). This data suggests that galanin may act as a paracrine agent via the pituitary-specific GAL-R2(orig.) to inhibit gonadotroph function.

Animals↗

A C-terminal fragment of Agouti-related protein increases feeding and antagonizes the effect of alpha-melanocyte stimulating hormone in vivo.

Agouti-related protein (Agrp) is present in rat and human hypothalamus and is structurally related to agouti protein. Overexpression of either of these proteins results in obesity. However the effect of exogenous Agrp and its in vivo interaction with alpha-melanocyte stimulating hormone (alphaMSH), the likely endogenous melanocortin 3 and 4 receptor (MC3-R and MC4-R) agonist, have not been demonstrated. We report that 1 nmol of Agrp(83-132), a C-terminal fragment of Agrp, when administered intracerebroventricularly (ICV) into rats, increased food intake over a 24-h period (23.0+/-1.4 g saline vs 32.9+/-2.3 g Agrp, p<0.05). The hyperphagia was similar to that seen when 1 nmol of the synthetic MC3-R and MC4-R antagonist SHU9119 was given i.c.v. (19.6+/-1.8 g saline vs 32.5+/-1.7 g SHU9119, p<0.001). Both Agrp(83-132) and SHU9119 blocked the reduction in 1-h food intake of i.c.v. alphaMSH at the beginning of the dark phase. This effect occurred independently of whether the antagonists were administered simultaneously, or nine hours prior, to the alphaMSH. We have also shown Agrp(83-132) is an antagonist at the MC3-R and MC4-R, with similar inhibition of cAMP activation to that previously reported for the full length peptide. In conclusion, Agrp(83-132) administered i.c.v. increases feeding with long lasting effects and is able to inhibit the action of alphaMSH. This interaction may be mediated by the MC3-R and/or MC4-R.

Agouti Signaling Protein↗

State variations in supplemental security income enrollment for children and adolescents.

OBJECTIVES: The purpose of this study was to determine the effects of poverty, program generosity, and health on state variations in enrollment of children and adolescents in the Supplemental Security Income (SSI) program during recent program expansions. METHODS: The relationship of state SSI rates for 1989 and 1992 to child poverty, health, and program generosity were determined by multiple regression. RESULTS: The mean percentage of children enrolled grew from 0.36% (1989) to 0.75% (1992). Poverty rates accounted for 78% of the variance among states in 1989 and 53% in 1992. Other indicators accounted for little variance. CONCLUSIONS: Differences in state poverty levels explained almost all variation in SSI enrollment.

Adolescent↗