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Biomedical subjects

S Patel

Publications and source records attributed to S Patel.

At least 505 records · Page 28Linked to original sources

Functional expression of human D3 dopamine receptors in differentiated neuroblastoma x glioma NG108-15 cells.

This study describes the depression of calcium currents caused by activation of human D3 dopamine receptors which have been stably expressed in the neuroblastoma x glioma NG108-15 cell line. Transfected cells, which had been differentiated with prostaglandin E1 and isobutylmethylxanthine, exclusively expressed D3 receptor mRNA, which was demonstrated by reverse transcription polymerase chain reaction techniques. Transfected cells had high affinity binding sites for iodosulpiride, with a Kd of 0.8 nM and receptor density of 240 fmol mg-1 protein. Calcium currents were recorded using nystatin-perforated patch clamp techniques. In contrast to untransfected cells that had been differentiated, high-threshold calcium currents in differentiated hD3-NG108-15 cells were depressed by application of dopamine and quinpirole. These responses were abolished by the dopamine receptor antagonist S-(-)-sulpiride (1 microM), demonstrating that they were caused by the activation of the transfected dopamine receptors. Coupling of human D3 receptors to calcium currents was sensitive to the action of pertussis toxin, suggesting the involvement of G-proteins of the Gi and/or G(o) subtype. These results demonstrate that human D3 receptors represent a functional class of dopamine receptor.

Brain Neoplasms↗

Production of PGE2 by bovine cultured airway smooth muscle cells and its inhibition by cyclo-oxygenase inhibitors.

1. Prostaglandin E2 (PGE2) is thought to be an important inhibitory modulator of inflammatory processes in the airway. It inhibits inflammatory cell function and cholinergic neurotransmission in vitro and roles have been postulated in vivo in refractoriness and in the mechanism of action of the diuretic agent, frusemide. 2. The production of PGE2 by bovine cultured airway smooth muscle cells has been studied under a range of conditions. The effects of cyclo-oxygenase inhibitors (flurbiprofen, indomethacin, acetyl salicylic acid) on serum-induced production of PGE2 were assessed over a range of concentrations (10(-7)-10(-4) M). 3. Serum-stimulated production of PGE2 in control wells ranged from 350 to 800 ng PGE2 ml-1 in cells from different animals. All three cyclo-oxygenase inhibitors inhibited PGE2 production with an order of potency, flurbiprofen > indomethacin > acetyl salicylic acid. Log IC50 values were -6.24 for flurbiprofen, -5.23 for indomethacin and -3.50 for acetyl salicylic acid. 4. PGE2 production was stimulated by arachidonic acid (10(-5) M) or addition of the proinflammatory mediator, bradykinin (10(-8)-10(-5) M). 5. Incubation of cells for 24 h with 5 bromo deoxyuridine (BRDU) (10(-4) M) to prevent DNA synthesis did not alter PGE2 production in response to serum, suggesting that it was not a function of proliferation per se. 6. Our study suggests that airway smooth muscle may be an important source of PGE2. Production of PGE2 may be a novel feedback mechanism whereby airway smooth muscle cells can negatively modulate airways inflammation. The differing potencies of the cyclo-oxygenase inhibitors may explain the contrasting effect of these drugs in recent studies in asthma.

Animals↗

Depression of high-threshold calcium currents by activation of human D2 (short) dopamine receptors expressed in differentiated NG108-15 cells.

1. This study examined the regulation of calcium currents in differentiated NG108-15 cells that had been stably transfected with cDNA encoding the short isoform of the human D2 dopamine receptor. Whole cell calcium currents were recorded by nystatin-perforated patch clamp recording. 2. Transient low-threshold calcium currents elicited by depolarizations from -100 mV to -20 mV were reversibly depressed by NiCl2 (84 +/- 8% at 30 microM; n = 3) and by omega-agatoxin IVA (15 +/- 5%; 100 nM, n = 7). These currents were unaffected by hD2 receptor activation. 3. High-threshold calcium currents elicited by depolarizations from -80 mV to 0 mV were partly blocked by omega-conotoxin GVIA (67 +/- 6% at 100 nM, n = 4) and by the subsequent addition of the dihydropyridine, nisoldipine (94 +/- 3% at 1 microM). Consistent with the presence of at least two distinct types of high-threshold calcium channels, nisoldipine alone (38 +/- 15% at 1 microM, n = 6) did not preclude the inhibition caused by omega-conotoxin GVIA (69 +/- 13% at 100 nM, n = 4). The residual current was completely blocked by 100 microM CdCl2 (98.8 +/- 0.4%, n = 7). 4. In hD2-transfected cells, but not untransfected cells, high-threshold currents were depressed by quinpirole (30 +/- 4% at 100 nM; n = 15) with a pEC50 of 8.61 +/- 0.22 (n = 5), as well as by (-)-noradrenaline (28 +/- 5% at 1 microM, n = 9). Responses to both agonists were selectively antagonized by S-(-)sulpiride (100 nM) but not by the alpha-adrenoceptor antagonist, phentolamine (1O microM). The depression caused by (-)-noradrenaline was positively correlated with that of quinpirole for each cell(r2 = 0.91, slope = 0.99).5. hD2-receptor-mediated inhibition of high-threshold calcium currents was abolished by pretreatment of cells with omega-conotoxin GVIA (100 nM; n = 4). However, a component of the high-threshold current was reversibly depressed by omega-conotoxin GVIA (67% to 45% depression after 10 min wash). This current was also depressed by hD2 receptor activation (59 +/- 9% depression in 100 nM quinpirole, n = 3),and was completely blocked by nisoldipine (95 +/- 2% at 1 MicroM).6. These data demonstrate that activation of hD2(short) dopamine receptors can regulate both wconotoxinGVIA, and dihydropyridine-sensitive high-threshold calcium currents in neuroblastoma cells.Morever, the ability of human D2 dopamine receptors to regulate more than one type of calcium current supports the notion that these receptors have a diverse functional role in the central nervous system.

Animals↗

Antinociceptive and toxic effects of (+)-epibatidine oxalate attributable to nicotinic agonist activity.

1. Epibatidine is an analgesic substance, isolated from the skin of the poisonous frog Epipedobates tricolor, for which the mechanism of action was previously unknown. 2. The IC50 of synthetic (+)-epibatidine oxalate (the naturally occurring isomer) for [3H]-nicotine binding to rat whole-brain membranes was 0.1 nM. The (-)-isomer also exhibited high affinity (IC50 = 0.2 nM). 3. (+)- and (-)-Epibatidine exhibited much lower affinity for displacement of the muscarinic ligand [3H]-N-methylscopolamine binding to rat cortical membranes (Kapp = 6.9 microM and 16.0 microM respectively). The (+)-enantiomer of epibatidine had an antagonist/agonist (NMS/oxo-M) binding ratio of 4.2 This is consistent with a muscarinic antagonist profile. 4. (+)-Epibatidine oxalate (10 microM) did not cause significant (> 30%) displacement of radioligand binding to opioid, excitatory amino acid, benzodiazepine, 5-HT, dopamine, adrenaline or peptide receptors. 5. (+)- and (-)-Epibatidine (5-20 micrograms kg-1 s.c.) doubled response latency in the mouse hot-plate test. Antinociception and behavioural depression induced by (+)-epibatidine (5 micrograms kg-1) was fully blocked by the nicotinic antagonists mecamylamine (2 mg kg-1 s.c.) or dihydro-beta-erythroidine (2 mg kg-1 s.c.). The muscarinic antagonist scopolamine (0.4 and 10 mg kg-1 s.c.) caused partial reversal of antinociception induced by (+)-epibatidine in mice, but not in rats. 6. These findings demonstrate that (+)-epibatidine oxalate salt is a highly selective and potent nicotinic analgesic agent.

Analgesics↗

The shape of the corneal apical zone after excimer photorefractive keratectomy.

Applying an experimental photo-keratoscope, which assesses the shape of cornea within the pupillary region, to a group of subjects who have undergone excimer laser photorefractive keratectomy over a central 4 mm chord diameter of the cornea, we report the shape of the typical cornea within the ablated zone conforms to a steepening ellipse (average shape factor, 1.25). A statistically significant difference in the mean shape factor (asphericity) between the photoablated and the normal cornea (average shape factor 0.89) was not confirmed. However, there is more variability in the shape factors found in the photorefractive keratectomy group compared with normals, within the same distance from the corneal apex. Using the criterion of overlap within two standard deviations, averaging the vertical horizontal meridians, 75% of photorefractive keratectomy eyes fall within the shape factor limits of the normal eye group. In all cases the post-ablated corneal surface was found to be regular in terms of surface quality alone. The excimer photorefractive keratectomy technique is therefore a clinically acceptable method of refractive surgery.

Adult↗

Imaging variants of the liver, pancreas, and spleen.

The liver, spleen, and pancreas are three of the most frequently imaged intra-abdominal organs. Each organ is a complex structure affected by multiple pathologic processes. However, in order to recognize the pathologic changes that affect each organ, one must have a detailed knowledge of the broad spectrum of normal variants that can be seen when imaging the upper abdomen. This review explores the wide variability in appearance of the normal liver, spleen, and pancreas during cross-sectional imaging (CT, US, and MRI), stressing a thorough understanding of normal anatomy and the affect of physiologic variants.

Adult↗

Biological properties of the benzodiazepine amidine derivative L-740,093, a cholecystokinin-B/gastrin receptor antagonist with high affinity in vitro and high potency in vivo.

A novel series of 5-amino-1,4-benzodiazepin-2-one derivatives (amidines), which contain a cationic solubilizing group and which are antagonists for the cholecystokinin (CCK)-B receptor, have been identified. Optimization of this series led to the identification of an azabicyclononane amidine, L-740,093 [N-[(3R)-5-(3-azabicyclo[3.2.2]nonan-3-yl)-2,3-dihydro-1-methyl-2- oxo- 1H-1,4-benzodiazepin-3-yl]-N'-(3-methylphenyl)urea], that bound with high affinity of CCK-B receptors from guinea pig cerebral cortex (IC50 of 0.1 nM) and had a CCK-B/CCK-A receptor selectivity of 16,000. In comparison, L-365,260 had 85-fold lower affinity (8.5 nM) and was only 87-fold selective for CCK-B over CCK-A receptors. L-740,093 bound with high affinity to guinea pig gastrin receptors in vitro (IC50 of 0.04 nM). Electrophysiological studies on slices of rat ventromedial hypothalamic nucleus showed that L-740,093 produced rightward shifts of the concentration-response curve for the CCK-B receptor agonist pentagastrin (Kb of 0.06 nM). L-740,093 blocked pentagastrin-induced gastric acid secretion in anesthetized rats with a 50% inhibitory dose of 0.01 mg/kg, intraperitoneally, showing 100-fold greater activity, compared with L-365,260 (50% inhibitory dose of 1 mg/kg, intraperitoneally). An ex vivo binding assay in mice was used to investigate the interaction of L-740,093 with central CCK binding sites. After intravenous administration, L-740,093 inhibited ex vivo binding dose dependently, with a 50% effective dose of 0.2 mg/kg. These studies demonstrate that L-740,093 is the most potent and selective CCK-B antagonist yet described and that it has excellent central nervous system penetration.

Animals↗

Expression and pharmacological characterization of the human D3 dopamine receptor.

Binding of dopamine receptor ligands to human D2 and D3 receptors was characterized in Chinese hamster ovary (CHO) cells using the dopamine D2 receptor antagonist [125I] iodosulpiride. Only limited binding selectivity was observed for known dopamine D2 receptor antagonists from a variety of chemical classes, which included haloperidol, chlorpromazine, sulpiride, pimozide and cis flupenthixol. The most selective compound from this group were (+)butaclamol and domperidone which showed 5-fold D3 selectivity. A number of high affinity dopamine receptor agonists, including apomorphine and bromocriptine, also failed to demonstrate selectivity. In contrast, the natural ligand dopamine and the efficacious synthetic agonists quinpirole, (+)4-propyl-9-hydroxynapthoxazine (PHNO), 2-amino-6,7-dihydroxy-1,2,3,4-tetrahydronaphthalene (6,7-ADTN), 7-OH DPAT and N-0434 showed marked apparent human dopamine D3 (hD3) receptor selectivity. In the aminotetralin series, this selectivity was observed preferentially with analogs of the 6,7-rotamer compared with compounds from the 5,6-rotamer series. Functional coupling of the hD3 receptor was investigated in a number of cell lines in which the hD3 receptor was stably expressed, including CHO cells, the neuroblastoma-glioma hybrid cell line NG108-15 and a rat 1 fibroblast cell line. There was no evidence of functional coupling of the hD3 receptor to adenylate cyclase, arachidonic acid release, phospholipase C activation, K+ currents or calcium mobilization in any of the cell lines examined. Furthermore, guanine nucleotides failed to inhibit the binding of [3H] N-0437 to hD3 receptors in any of the three cell lines. There may be a number of explanations for these results. These cell lines may not have the appropriate G-protein or secondary messenger systems that are coupled to the hD3 receptor in situ. Alternatively, this receptor may couple by a mechanism that is as yet undefined. The finding that a wide range of structurally diverse human dopamine D2 (hD2) receptor agonists have an apparent hD3 selectivity may imply that the hD3 receptor exists predominantly in a high affinity state.

Animals↗

Characterisation of a chimeric hD3/D2 dopamine receptor expressed in CHO cells.

The D2 dopamine receptor is known to be functionally coupled when expressed in CHO cells, whereas the effector systems for the D3 dopamine receptor remain unclear. A chimeric, human D3/D2 receptor (hD3/D2) was constructed containing the third intracellular loop region of the D2 receptor. CHO cells stably expressing the D2, D3, or hD3/D2 receptors were created and the pharmacology of the receptors was examined. The chimeric hD3/D2 receptor retained D3-like affinities for dopaminergic ligands. However, in contrast to the D2 receptor neither the D3 receptor nor the hD3/D2 receptor could functionally couple to the adenylate cyclase or arachidonic acid release mechanisms.

Adenylyl Cyclases↗

Novel HeLa topoisomerase II is the II beta isoform: complete coding sequence and homology with other type II topoisomerases.

DNA topoisomerase (topo) II mediates DNA strand passage in an ATP-dependent reaction. Human cell lines express at least two genetically distinct forms of the enzyme, topo II alpha (p170) and II beta (p180). Previously, we isolated a novel HeLa cDNA clone (CAA5) that partially encodes a protein homologous to topo II alpha (Austin, C.A. and Fisher, L.M. (1990) FEBS Lett. 266, 115-117). In this paper we show that CAA5 encodes a C-terminal segment of human topo II beta. We report here for the first time cDNA clones spanning the entire coding sequence. Overlapping clones specifying the 3' end of the cDNA have been isolated, mapped and sequenced. The missing 5' coding sequence was obtained by an inverse PCR protocol and from a specifically primed cDNA library. Human topo II beta is a 1621 amino acid protein which is closely homologous to topo II alpha in the N-terminal three quarters of its sequence. In contrast, the C-terminal segments of the alpha and beta sequences show considerable divergence suggesting these regions may mediate different cellular functions of the two isoforms. Southern blot analysis of yeast and Drosophila DNA using human alpha and beta specific probes detected a single topo II homologue in these lower eukaryotes. Comparison of the protein sequence for human topo II beta with other type II topoisomerases revealed several conserved motifs and has allowed identification of the likely ATPase- and DNA breakage-reunion domains.

Base Sequence↗

Determinants of remission of Paget's disease of bone.

Bisphosphonates are a safe and effective treatment for Paget's disease of bone, but little information is available about the factors influencing the duration of remission so obtained. We assessed 60 patients with Paget's disease treated with disodium pamidronate (APD). The mean duration of remission was 9.5 months (range 3-25). The major influences were the initial pretreatment alkaline phosphatase (ALP; r = -4.6, p < 0.0001), minimum posttreatment ALP (r = -0.51, p < 0.0001), and the rate of response of bone turnover to the first dose of APD (r = 0.61, p < 0.0001). Multiple linear regression showed that the initial response to treatment was the most significant influence. Also, despite a minimum ALP within the normal range, the duration of remission varied considerably (4-25 months). This may be due to the difficulties in applying a population-based normal range to individuals.

Aged↗

Monocyte 1 alpha-hydroxylase regulation: induction by inflammatory cytokines and suppression by dexamethasone and uremia toxin.

Alveolar macrophages acquire 1 alpha-hydroxylase activity in inflammation, and thereby metabolize 25 hydroxyvitamin D3 (25 D3) to the active metabolite, 1 alpha,25-dihydroxyvitamin D3 (1,25 D3, calcitriol). Calcitriol is a potent differentiation agent that modulates mononuclear phagocyte activation and effector functions. The mediators that induce macrophage 1 alpha-hydroxylase activity are not well delineated. Furthermore, it is unclear whether calcitriol is a product only of terminally differentiated macrophages or whether less mature mononuclear phagocytes can produce it as well. The ability of newly recruited monocytes to produce calcitriol as an autocrine differentiation agent is particularly important in inflammation, as it may substantially expand the functional repertoire of these cells. To assess the effects of cytokines on 1 alpha-hydroxylase activity, blood monocytes were cultured in the presence and absence of human recombinant tumor necrosis factor alpha (TNF-alpha), interferon-gamma (IFN-gamma), and interleukins 1 and 2 and then incubated with 25 D3 substrate. The conditioned media were assayed for calcitriol by high-performance liquid chromatography and competitive receptor binding assay. No detectable calcitriol was produced by unstimulated monocytes. However, all the cytokines markedly increased monocyte calcitriol production (range 133-151 pg/mg protein; in all cases P < .001). We then determined whether calcitriol production was suppressed by preincubation with either dexamethasone or the putative uremia toxin guanidinosuccinic acid (GSA). Dexamethasone pretreatment significantly inhibited subsequent cytokine-induced calcitriol production by monocytes, as did GSA (average 69 and 63% of control, respectively).

Calcitriol↗

Isolation and characterization of a resistant core peptide of recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSF); confirmation of the GM-CSF amino acid sequence by mass spectrometry.

A trypsin-resistant core peptide of recombinant human granulocyte-macrophage colony-stimulating factor (rhGM-CSF) was isolated and analyzed by high-energy Cs+ liquid secondary-ion (LSI) mass spectrometric analysis. This analysis provided successful detection of the high-mass disulfide-linked core peptide as well as information confirming the existence of disulfide pairing. Similarly, LSI mass spectrometric analysis of the peptide fragments isolated chromatographically from a Staphylococcus aureus V8 protease digest of rhGM-CSF provided rapid confirmation of the cDNA-derived sequence and determination of the existing disulfide bonds between cysteine residues 54-96 and 88-121. Electrospray ionization mass spectrometry was employed to measure the molecular weight of the intact protein and to determine the number of the disulfide bonds in the protein molecule by comparative analysis of the protein before and after reduction with beta-mercaptoethanol.

Amino Acid Sequence↗