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E Nisoli

Publications and source records attributed to E Nisoli.

At least 37 records · Page 2Linked to original sources

Effects of nitric oxide on proliferation and differentiation of rat brown adipocytes in primary cultures.

1. In the present work, we study the effect of NO on the proliferation and differentiation of brown fat cells in primary cultures. 2. Brown fat precursor cells isolated from rat brown adipose tissue were cultured for 8 days until confluence and treated daily with the NO donating agents, S-nitroso-acetyl penicillamine (SNAP) or S-nitroso-L-glutathione (GSNO). Both agents (300 microM) decreased cell proliferation approximately 8 fold on day 8. The inhibitory effect of NO was unlikely to be due to cytotoxicity since (i) cells never completely lost their proliferation capacity even after 8 days of exposure to repeated additions of SNAP or GSNO, and (ii) the inhibitory effect was reversible after removal of the media containing NO donors. 3. Daily treatment with nitric oxide synthase inhibitors, such as NG-nitro-L-arginine methyl ester (L-NAME, 300 microM), led to the stimulation of cell proliferation by 44+/-5%, n=3, suggesting that NO, endogenously produced in brown adipocytes, may be involved in modulating cell growth. 4. Daily treatment with both SNAP or GSNO induced significant mitochondriogenesis, measured as the mitochondrial conversion of 3-[4,5-dimethylthiazol-2-yl-]-2,5-diphenyl tetrazolium bromide (MTT) to formazan, whilst daily treatment with L-NAME was without effect. 5. The inhibition of cell proliferation by NO donors was accompanied by the expression of two genes coding for peroxisome proliferator activated receptor-gamma and uncoupling protein-1, which are upregulated during differentiation. 6. Increasing cyclic GMP in cells by 8-bromo-cyclic GMP (100-1000 microM) did not reproduce the observed NO effects on either cell number or gene expression. On the other hand, chronic treatment with the inhibitor of the NO-stimulated guanylyl cyclase, 1H-[1,2,4]oxadiazole[4,3-a]quinoxalin-1-one (ODQ), reduced the expression of peroxisome proliferator activated receptor-gamma and uncoupling protein-1.

Adipose Tissue, Brown↗

Advances in pharmacotherapy for obesity.

Anorectic drugs are increasingly being used in obesity to induce and/or maintain weight loss. We have focused on the development of metabolic enhancers. These compounds increase energy expenditure, which is important because weight loss is associated with metabolic re-adjustment to reduce energy output. Thus, metabolic enhancers ensure that energy expenditure is maintained when food intake is reduced. Beta3-adrenoceptor agonists are thermogenic agents that increase energy output by stimulating heat generation. Early selective beta3-agonists were effective in producing weight loss in obese rats, but were largely ineffective in humans. In addition, many interacted with other types of beta receptor to produce side-effects. The development of a Chinese hamster ovary cell (CHO) transfection system, using the human beta3-adrenoceptor gene, resulted in potential new selective human beta3-agonists being identified. However, the in vitro activity of these agents does not necessarily reflect their action in vivo, due to the presence of other receptor types and G proteins in the target cells, and interactions between them. The characterization of a selective beta3-antagonist, SR59230A, has allowed us to examine beta3-agonist activity in different experimental systems. The CHO transfection system has been used to show that SR59230A is effective in blocking agonist activity against both the rat adrenoceptor, and three human beta3-receptor isoforms. In addition, SR59230A shows competitive inhibition of agonist activity in both rat and human model systems. This antagonist may therefore provide a pharmacological tool for the functional study of by newly identified beta3-receptor agonists.

Adrenergic beta-Agonists↗

Tumor necrosis factor-alpha induces apoptosis in rat brown adipocytes.

Accumulating evidence demonstrates that adipose tissue is a major site of tumor necrosis factor-alpha (TNF-alpha) gene expression, which is markedly high in obese animals and may contribute to obesity-linked insulin resistance. We now report that recombinant murine TNF-alpha triggers the apoptotic degeneration of brown adipocytes differentiated in culture. Moreover, noradrenaline, which has been described as having trophic effects on brown fat and accelerating the differentiation of brown adipocytes, is capable of dose-dependently preventing the TNF-alpha-induced apoptosis of brown fat cells. Since obesity is characterized by greatly increased TNF-alpha production and reduced catecholaminergic activity, apoptosis was studied in the brown fat of genetically obese animals. In situ DNA fragmentation analysis revealed a larger number of apoptotic cells in the brown fat of obese (fa/fa) than in that of lean (+/+) Zucker rats. The exposure of obese rats to low temperatures for 7 days, which increases the sympathetic activity of brown adipose tissue, significantly reduces the number of apoptotic brown adipocytes. We hypothesize that TNF-alpha may play a significant role in the control of brown fat homeostasis.

Journal Article↗

Inducible nitric oxide synthase in rat brown adipocytes: implications for blood flow to brown adipose tissue.

Exposure of rat brown adipocytes differentiated in culture to norepinephrine (NE) results in the production of nitrites (NO2-), the breakdown product of nitric oxide (NO). This production, which is blocked by actinomycin D1 is directly related to the duration of exposure to and dose of NE. Cytosol from NE-treated brown fat cells, but not from untreated cultures, catalyzed the Ca(2+)-independent conversion of L-arginine to L-citrulline, which could be significantly blocked by the specific nitric oxide synthase (NOS) inhibitor NG-nitro-L-arginine methyl ester. Reverse transcriptase-PCR demonstrates that the addition of NE; selective beta 1-, beta 2-, or beta 3-adrenergic receptor agonists; or agents increasing cAMP production, such as forskolin, to brown adipocytes stimulates inducible NOS (iNOS) messenger RNA, which is present within 4 h after exposure. That iNOS is synthesized in brown fat cells is confirmed by immunoblotting using an antibody to the iNOS of mouse macrophages, Finally, in both brown adipose tissue (BAT) and brown adipocyte preparations from animals exposed to low temperature, iNOS messenger RNA and protein were expressed, and NOS activity was detectable; these findings were unlikely for room temperature-acclimated rats. We conclude that brown fat cells can express an inducible form of NOS similar to the iNOS of macrophages, and that its production is directly dependent on sympathetic activity in physiological conditions. NO generated by stimulation of iNOS in brown adipocytes may represent an important mechanism to modulate different BAT functions, among which is vasodilation of the BAT microcirculation.

Adipocytes↗

Salbutamol antagonizes insulin- and sodium mercaptoacetate-induced but not 2-deoxy-D-glucose-induced hyperphagia.

The role of beta-adrenoreceptors in modulating feeding in glucoprivation- and lipoprivation-induced hyperphagias was studied in rats by measuring the efficacy of the selective beta2-adrenoreceptor agonist salbutamol to antagonize the hyperphagic response induced by injection of 2-deoxy-D-glucose (2-DG), insulin, or sodium mercaptoacetate (MA). 2-DG and insulin are blockers of glucose utilization, and their administration stimulates receptor cells that are selectively sensitive to central glucose availability. MA stimulates feeding in rats maintained on a fat-supplemented diet, by blocking fatty acid oxidation at different levels in the metabolic pathway. We found that salbutamol dose-dependently antagonized both the insulin- and MA-induced hyperphagia, with reductions in food intake up to 100% compared with rats treated with insulin or MA alone. On the contrary, salbutamol, even at the highest dose (15 mg/kg, IP), was completely ineffective against 2-DG-induced hyperphagia. The present results support the previously proposed notion that there are different neuronal or humoral circuits underlying the hyperphagic responses to the metabolic stimuli induced by glucoprivation (i.e., 2-DG and insulin administration), and they extend our knowledge on the effects of salbutamol on glucoprivic and lipoprivic control of feeding.

Adrenergic beta-Agonists↗

Increase of aldosterone secretion following acute haloperidol administration: possible clinical implications.

The present study was designed to investigate the effect of haloperidol on plasma corticosteroid levels in a small sample of unmediated psychiatric patients requiring acute care. Seven young male normotensive subjects in metabolic balance received a single dose of haloperidol (2 mg i.v.). Blood samples were collected for the radioimmunoassay of plasma renin activity, cortisol and aldosterone concentration at baseline and 3, 6, 12 and 24 h after injection. In five out of seven patients a significant, transient elevation of plasma aldosterone level was observed within 12 h from administration. In contrast, plasma renin activity and cortisol concentration were unchanged. Possible clinical implications of the neuroleptic-associated aldosterone elevations are discussed.

Adult↗

Expression of nerve growth factor in brown adipose tissue: implications for thermogenesis and obesity.

The presence of nerve growth factor (NGF) and the ability of adrenergic stimulation to affect the rate of its synthesis in mouse, rat, and human brown adipose tissue (BAT) were investigated. Addition of conditioned medium, obtained from preconfluent and confluent brown adipocytes, to PC12 cells induced typical morphological changes similar to those due to NGF itself. Anti-NGF antibodies blocked this action. Moreover, NGF mRNA was detected by RT-PCR both in BAT and in brown adipocyte preparations. That NGF is synthesized in and released from brown fat cells was confirmed by immunoblotting. When the animals were exposed to low temperatures, NGF production declined. The effect of cold exposure could be mimicked by the addition of norepinephrine (NE) at day 4 or 8 (preconfluent and confluent cells, respectively). NE depletion obtained by reserpine injection induced a drastic increase of BAT NGF production. In both rat and human BAT, immunohistochemistry identified distinct anatomical structures that express the low affinity neurotropin receptor, termed p75NGFR. BAT production of NGF was higher in genetically obese rats and mice than in their lean counterparts, a difference that becomes more evident with age. Prolonged exposure to low temperature significantly decreased the BAT NGF synthesis also in obese animals. We conclude that NGF is synthesized in and released from brown fat cells, its production being inversely dependent on sympathetic activity, in both physiological and pathophysiological conditions, and increased in genetic animal models of obesity.

Adipose Tissue, Brown↗

Functional studies of the first selective beta 3-adrenergic receptor antagonist SR 59230A in rat brown adipocytes.

The SS-enantiomer 3-(2-ethylphenoxy)-1-[(1S)-1,2,3,4-tetrahy dronaphth-1-ylaminol]-(2S)-2-propanol oxalate (SR 59230A) is proposed to be the first beta 3-adrenergic receptor antagonist. The present work shows that SR 59230A, unlike its inactive RR-enantiomer (SR 59483), antagonized a typical beta 3-adrenergic response in vitro, i.e., SR 58611A, the ethyl-[(7s)-7-[[(2R)-2-(3- chlorophenyl)-2-hydroxethyl]amino]-5,6,7,8-tetrahydronaphth- 2- yl]oxyacetate hydrochloride- or (-)-4-(3-t-butylamino-2-hydroxypropoxy)benzimidazol-2-one (CGP 12177)-stimulated synthesis of cAMP in rat brown adipose tissue membranes, with pKB values of 8.87 +/- 0.12 and 8.20 +/- 0.15. In addition, SR 59230A had no antagonistic effect on forskolin-induced cAMP accumulation in rat interscapular brown adipose tissue. SR 59230A, in contrast to the selective beta 1- and beta 2-adrenoceptor antagonists (+/-)[2-(3-carbamoyl-4-hydroxyphenoxy)-ethylamino]- 3-[4(1-methyl-4-trifluoromethyl-2-imidazolyl)-phenoxy]-2 propanol and erythro-(+/-)-1-(7-methylindan-4-yloxy)-3-isopropylaminob utan- 2-ol-hydrochloride did not counteract the cAMP production induced by (-)-isoprenaline or norepinephrine (NE) in rat brain areas rich in beta 1- or beta 2-adrenoceptors, such as frontal cortex and cerebellum. Moreover, in proliferating brown fat cells, in which the beta 1-adrenoceptor is the only beta-adrenergic subtype coupled to cAMP production, SR 59230A did not modify the production of cAMP induced by NE, whereas CGP 12177 did. In confluent brown fat cells, in which the beta 3-adrenoceptor is the functional beta-adrenergic subtype coupled to adenylyl cyclase, SR 59230A antagonized the NE-induced cAMP accumulation and glycerol release without affecting their basal values, whereas CGP 12177, which per se stimulated cAMP accumulation and glycerol release, did not change the NE-induced increase of either parameter. Finally, SR 59230A concentration-dependently counteracted the NE-stimulated synthesis of uncoupling protein gene in confluent brown fat cells, which is considered mainly a result of selective stimulation of beta 3-adrenoceptors. These results provide evidence that the new selective beta 3-adrenoceptor antagonist can contribute considerably to functional characterization of the beta 3-adrenoceptors.

Actins↗

Adaptive events.

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Adaptation, Physiological↗

Pharmacological antagonism of lipoprivic feeding induced by sodium mercaptoacetate.

Drugs, such as sodium mercaptoacetate and methylpalmoxirate, which block fatty acid oxidation at different levels in the metabolic pathway, stimulate feeding. It is well known that selective centrally induced stimulation of dopamine, serotonin (5-hydroxytryptamine, 5-HT) and beta-adrenoceptors, or inhibition of the opiatergic system substantially decrease food intake in rats trained to eat 4 h a day. The results of the present study show that centrally acting dopaminergic and serotoninergic anorectic drugs, the opiate receptor antagonist naloxone, the alpha-adrenoceptor blocking drug phentolamine, and peripherally administered 5-HT counteract the overeating induced by mercaptoacetate. Comparing these effects to those described in 2-deoxy-D-glucose- and insulin-induced feeding, our data support the proposition that distinct neural circuits are involved in the hyperphagic responses to diverse metabolic stimuli.

Animals↗

Rat frontal cortex beta 1-adrenoceptors are activated by the beta 3-adrenoceptor agonists SR 58611A and SR 58878A but not by BRL 37344 or ICI 215,001.

SR 58611A, a selective agonist of gut and brown adipose tissue beta 3-adrenoceptors (beta 3 ARs), has been reported to have antidepressant-like activity in rodents, by indicating brain beta 3ARs as the sites of this property. SR 58611A and its acid metabolite SR 58878A, as opposed to BRL 37344, ICI 215,001, and CGP 12177, increased cyclic AMP levels in rat frontal cortex. ICI 215,001, differently from BRL 37344, at concentrations in the millimolar range antagonized norepinephrine- or (-)-isoproterenol-stimulated adenylyl cyclase partially. The increase of cyclic AMP levels induced by SR 58878A was blocked selectively by beta 1AR antagonist CGP 20712A but not by beta 2AR antagonist ICI 118,551. In addition, PCR analysis did not reveal beta 3AR mRNA, and no specific beta 3AR binding sites were detected by [3H]CGP 12177 in rat frontal cortex. When down-regulation of the beta 1AR ligand binding and mRNA levels had been induced in frontal cortex by chronic administration of imipramine, SR 58878A as well as norepinephrine and (-)-isoproterenol inceased the cyclic AMP production less markedly. Our findings indicate that beta 3ARs are absent in the adult rat frontal cortex, and that various beta 3AR agonists differently affect the frontal cortex beta 1ARs, indicating that SR 58611A may exert its putative antidepressant effect acting on the frontal cortex beta 1ARS.

Adipose Tissue, Brown↗

SR 58611A: a novel thermogenic beta-adrenoceptor agonist.

N(2S)-7-carbethoxymethoxy-1,2,3,4-tetrahydronaphth-2-yl]-(2R )-2-hydroxy-2-(3-chlorophenyl)ethanamine hydrochloride (SR 58611A) increased cyclic AMP levels in membrane homogenates from rat interscapular brown adipose tissue with an EC50 of 20 +/- 2 nM. Substitution of GTP with the GDP analog, guanosine-5'-O[thiodiphosphate], in the incubation medium suppressed the stimulation of adenylyl cyclase activity by SR 58611A. This compound also stimulated glycerol release from the brown fat cells, with an EC50 of 11 +/- 0.4 nM. Only at doses higher than 10 microM did the non-selective beta-adrenoceptor antagonists, propranolol and alprenolol, as well as the selective beta 1- and beta 2-adrenoceptor antagonists, (+-)-[2-(3-carbamoyl-4-hydroxy-phenoxy)- ethylamino]-3-[4(1-methyl-4-trifluoromethyl-2-imidazolyl)-phenoxy]-2 propanol (CGP 20712A) and erythro-(+-)-1-(7-methylindan-4-yloxy)-3-iso-propylamino butan-2-ol-hydrochloride (ICI 118,551), antagonize the SR 58611A-induced stimulation of both adenylyl cyclase activity and lipid metabolism. Since, at high doses, all these beta-adrenoceptor antagonists lack selectivity for beta 1- or beta 2-adrenoceptors, these results suggest that the beta-adrenoceptor agonist, SR 58611A, activates thermogenesis by acting on brown fat cell beta 3-adrenoceptors. This implies that this compound might be useful for treatment of obesity.

Adenylyl Cyclases↗

A weighty problem.

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Adipose Tissue, Brown↗

Neurochemical and behavioral evidence that Ro 41-9067 is a selective presynaptic dopamine receptor agonist.

(-)-2,3,4a,5,6,10b-Hexahydro-7-hydroxy-2-methylbenzo(f)-quinoline 4(1H)-ethanol (Ro 41-9067) was compared with apomorphine, 2-amino-6-allyl-5,6,7,8-tetrahydro-4H-thiazolo-[4,5-d]-azepine (B-HT 920), lisuride and other dopamine (DA) receptor agonists in a series of tests designed to characterize its pharmacological activity on DA receptors. In vitro binding studies indicated that Ro 41-9067 bound selectively to DA D2 vs. D1 receptors. It also had a moderate affinity for serotonin1A and alpha-2 adrenergic receptors. Ro 41-9067 exhibited a marked agonistic component for the presynaptic DA autoreceptors. Indeed, it caused a dose-related reduction in locomotor activity over a wide dose range and prolonged periods of observation without stimulating locomotor activity, reflecting postsynaptic DA receptor activation, even at the highest doses. Ro 41-9067 inhibited the gamma-butyrolactone-induced increase in I-dopa accumulation in the rat striatum, an effect sensitive to haloperiodol. Ro 41-9067 inhibited K(+)-induced [3H]DA release and significantly reduced the striatal contents of the DA metabolites, dihydroxyphenilacetic acid and homovanillic acid. Furthermore, the compound counteracted stereotyped behavior and locomotor stimulation induced by amphetamine. Finally, Ro 41-9067 did not appear to act on postsynaptic D2 receptors because it, similarly to B-HT 920 but differently from bromocriptine, quinpirole and lisuride, did not change basal or forskolin-stimulated adenylate cyclase activity. Only at very high concentrations Ro 41-9067 increased adenylate cyclase activity, this effect being due to a D1 agonistic component.(ABSTRACT TRUNCATED AT 250 WORDS)

4-Butyrolactone↗