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Chlorhexidine resistance in methicillin-resistant Staphylococcus aureus or just an elevated MIC? An in vitro and in vivo assessment.

Chlorhexidine (Hibiscrub; ICI) is generally accepted to be effective as an antiseptic hand wash for methicillin-susceptible Staphylococcus aureus (MSSA), but there is dispute whether the chlorhexidine MIC for methicillin-resistant S. aureus (MRSA) strains is higher than that for MSSA strains and, indeed, whether it is relevant. In addition, the link between resistance to chlorhexidine, gentamicin, and "nucleic acid-binding" compounds (NAB; which code, in particular, for propamidine isethionate and ethidium bromide) requires clarification. We performed chlorhexidine MIC and rate of kill tests on a number of MSSA and MRSA isolates. Two gentamicin-resistant MRSA isolates without NAB plasmids were more susceptible (0.25 and 0.5 microgram/ml) than four of eight MSSA that we tested (range, 0.25 to 2 microgram/ml). Chlorhexidine MICs were higher (4 to 8 micrograms/ml) for seven distinct MRSA isolates with plasmids conveying resistance to gentamicin and NAB (GNAB). Curing of the GNAB plasmid from MRSA strains resulted in a fall in the MIC (1 to 3.3 micrograms/ml), but no consistent fall in killing by chlorhexidine was observed. No effect on the chlorhexidine MIC or killing was observed when we cured strains of methicillin resistance. GNAB plasmid transfer resulted in a rise in the chlorhexidine MIC for the strains but not consistent fall in killing by chlorhexidine. Ethical approval was granted for 10 volunteers to each have a methicillin-susceptible, GNAB-resistant, derived transcipient and its GNAB-susceptible isogenic parent applied to separate sites in an in vivo skin test; no significant difference was seen in survival rates after the application of chlorhexidine. These results suggest that chlorhexidine appears to be as effective as a hand-washing agent for MRSA isolates with or with out NAB plasmids as it is for MSSA isolates.

Chlorhexidine↗

Ca(2+)-dependent non-NMDA receptor-mediated synaptic currents in ischemic CA1 hippocampal neurons.

1. The changes in excitatory postsynaptic currents (EPSCs) after transient cerebral ischemia were studied using whole-cell recording from CA1 pyramidal neurons in gerbils. In 64% (18 of 28) neurons recorded 1.5-3 days after ischemia, EPSCs showed a markedly slowed time course that was never seen in normal control neurons. 2. The slow EPSCs were not affected by an N-methyl-D-aspartate (NMDA) receptor antagonist [DL-2-aminophosphonovalerate (APV); 100 microM] but were abolished by a non-NMDA receptor antagonist [6-cyano-7-nitroquinoxaline-2,3-dione (CNQX); 10 microM], indicating that the slow EPSCs were mostly composed of non-NMDA current. 3. The slow non-NMDA EPSCs had rise times ranging from 1.2 to 7.3 ms and decay time constants between 11.5 and 56.3 ms. In normal neurons the rise time of the non-NMDA component of EPSCs ranged from 1.6 to 7.5 ms and the decay time constants ranged from 4.9 to 27.3 ms. 4. The reversal potential of the slow EPSCs in ischemic neurons was not changed by replacing 50% of the NaCl in the external solution with sodium isethionate. Bath application of 4-acetamido-4'-isothiocyanatostilbene-2,2'-disulfonic acid (SITS; 100 microM) had no effect on the slow EPSCs. Therefore Cl- current is not responsible for the slow EPSCs. 5. When external Ca2+ concentration was reduced to half of control, the decay time constant of the slow EPSCs decreased to 50 +/- 25%, mean +/- SD. In addition, bath application of a cell-permeable Ca2+ chelator, 1,2-bis(o-aminophenoxy)ethane-N,N,-N',N'-tetraacetyl,tetr aacetoxymethyl ester(BAPTA-AM), reduced the decay time constant.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Ether-linked lysophospholipids initiate insulin secretion. Lysophospholipids may mediate effects of phospholipase A2 activation on hormone release.

Phospholipase A2 activation may be a pivotal step in glucose-induced insulin secretion; however, recent studies have focused on only one by-product (arachidonic acid). To examine the possible role of the other by-product (lysophospholipids), the lysoderivatives of alkylacyl- (ether linked) or diacylphospholipids were applied to rat islets in static incubations. 1-O-alkyl-2-lyso-sn-glyceryl-3-phosphorylcholine [lyso-PAF, the precursor of platelet-activating factor (PAF)] or lysophosphatidylcholine initiated insulin release at 1.7 mM glucose. Two preparations of PAF itself (0.005-5000 ng/ml) were without effect at 1.7 or 16.7 mM glucose, but PAF was nearly equipotent to lyso-PAF at greater than or equal to 20 micrograms/ml. A precursor-product relationship was suggested because the precursors (alkylacyl- or diacylglyceryl-phosphorylcholine) of all three active metabolites were inactive. The stimulatory effect of lyso-PAF is largely independent of any toxic or lytic effect, being biphasic, reversible, unassociated with impairment of the subsequent physiologic functioning of treated islets, and inhibitable (by Ni2+, La3+, or nordihydroguaiaretic acid but not by other lipoxygenase inhibitors). It also occurred at threshold concentrations at which islet morphology and 51Cr retention were preserved. Furthermore, lyso-PAF-induced insulin secretion was markedly impaired by reduced ambient temperature (16 degrees C) or by the impermeant anion isethionate, further implying initiation of true exocytotic granule release and fission. Lyso-PAF (but not arachidonic acid) also circumvented the inhibition of glucose-induced insulin release caused by phospholipase inhibitors. Generation of endogenous lysophospholipids through exogenous application of phospholipase A2 also initiated insulin release, an effect responding to a panel of potential inhibitors identically to that induced by exogenously provided lysophospholipids. We propose that glucose activates phospholipase A2 in the pancreatic islet, leading to the generation of lysophospholipids; the latter may couple energy production to insulin release, at least in part via the promotion of Ca2+ translocation.

Animals↗

Structural, metabolic and ionic requirements for the uptake of L-carnitine by primary rat cortical cells.

L-Carnitine (L-C) is involved in the transport of acyl groups into mitochondria for beta-oxidation, although its role in the adult brain is still uncertain. We have shown before that the uptake of L-carnitine into cultured rat cortical neurones was dependent on temperature as well as the Na gradient and is inhibited by compounds resembling its structure, like gamma-aminobutyric acid (GABA), but most potently by specific GABA uptake blockers. In this study we have characterised this uptake process further. We have shown that the uptake of L-carnitine may be dependent on Cl ions, in addition to Na ions, but non on Ca ions. The L-C uptake was inhibited by substituent anions in the order gluconate (83%) > isethionate (32%), with propionate being ineffective, whereas GABA uptake was inhibited most potently by propionate substitution (79%) and equally by isethionate and gluconate (67%). This L-C uptake process was not affected by the amino acids, glutamine or lysine, up to 1 mM concentration, although beta-alanine at 500 microM caused a 38% inhibition. The uptake of L-C was also significantly inhibited by structurally-related compounds, with a carbon chain length of three to six atoms, possessing an amine group and/or a carboxyl group. At a concentration of 500 microM, 3-aminopropane sulphonic acid (53%), gamma-butyrobetaine (31%), gamma-hydroxybutyric acid (34%) and 4 methylaminobutyric acid (33%). Other compounds were effective only at the lower concentration of 10 microM, such as butyric acid (25%), nicotinic acid (26%), isonicotinic acid (26%), hexanoic acid (23%) and at 100 microM, like 6-aminocapric acid (22%). Drugs suggested to affect membrane properties, such as chlorpromazine, was without effect at 1 or 10 microM, whereas flunarizine (FLU) at 1 microM inhibited both L-C (24%) and GABA uptake (17%). Other drugs like the cholinesterase inhibitors, tacrine and eserine, also had a small inhibitory effect on L-C uptake, reducing it at 1 microM by 22 and 21% respectively, although higher concentrations were toxic (> 100 microM). Pretreatment of the cells with neuraminidase (50 U ml-1, 10 min) reduced the subsequent uptake of both L-C (18%) and GABA (42%). Hypoxia (3 h) also significantly attenuated L-C uptake (42%), however part of these effects were related to the loss of cell viability. In summary, L-C uptake occurs by a complex mechanism which at least in part may occur by a Na/Cl cotransport mechanism, which could be similar, to that of GABA or may even in part occur via the GABA transporter.

Amino Acids↗

Mechanism of inhibition of gastric acid secretion by SCN-: interrelation of SCN- flux and inhibition.

Effects of thiocyanate (SCN-) and imidazole on acid secretion and Cl- flux across the isolated bullfrog gastric mucosa have been examined. For open-circuited mucosae, with Cl- Ringer on the nutrient side and 110 mM Na isethionate on the secretory side, the addition of 15 mM SCN- to either the secretory or nutrient side gave equivalent reductions in acid secretion (JH) and nutrient-to-secretory Cl- flux (JnsCl) . JnsSCN, the nutrient-to-secretory flux of SCN- (0.2 mu eq . cm-2 . h-1), was much less than the decrease in JH (1.88 mu eq . cm-2 . h-1). Addition of imidazole, phosphate, or histidine to the secretory side reversed SCN- inhibition of JnsCl. Addition of imidazole to the nutrient side gave equivalent restorations of JnsCl and JH. The increase in JnsSCN, 0.07 mu eq . cm-2 . h-1, was much less than the increase in either JH, 0.77, or JnsCl, 0.86 mu eq . cm-2 . h-1. Similar results were obtained for mucosae bathed with NaCl on the secretory side. With 15 mM SCN- on both sides, the flux ratio for Cl- was significantly larger (1.0) than the flux ratio for SCN- (0.47). The addition of nutrient imidazole increased the flux ratios for Cl- and SCN- to 1.29 and 1.16, respectively. Both SCN- and Cl- showed exchange diffusion. Inhibition of acid secretion with nutrient SCN- at short circuit also inhibited JnsCl but did not alter the partial conductance of Cl-.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Ascorbic acid and catecholamine secretion from cultured chromaffin cells.

Ascorbic acid was found to be secreted from cultured bovine adrenal chromaffin cells coincidentally with catecholamines using a variety of secretagogues, including veratridine, nicotine, acetylcholine, and potassium chloride. Secretion of ascorbic acid was measured by preloading the cells for 3 h with (R)-[14C]ascorbic acid and then quantitating release of the label. The newly transported ascorbic acid constituted nearly 90% of total cellular ascorbic acid. Although chromaffin granules are known to contain endogenous ascorbic acid, only 16% of the total labeled ascorbic acid taken up by cultured cells was localized to the chromaffin granule fraction. Under the same isolation conditions, 95% of the endogenous catecholamines was found in the granule fraction. The secretion of both (R)-[14C] ascorbic acid and catecholamines was calcium dependent. However, only catecholamine secretion was effectively inhibited by the presence in the medium of isethionate, an impermeant ion that inhibits catecholamine secretion from isolated chromaffin granules. Analysis of the ratios of cellular and granular (R)-[14C] ascorbate as well as secreted (R)-[14C]ascorbate and catecholamines revealed that the secreted (R)-[14C]ascorbic acid did not come exclusively from the chromaffin granule fraction but also from a nonsedimenting cytoplasmic compartment. Indeed, for all four agonists, the amounts of (R)-[14C]ascorbic acid secreted were more than 1.5 times greater than could be accounted for by chromaffin granule ascorbate alone. We took these data to indicate that, while ascorbic acid and catecholamines were secreted concomitantly, the sources of the secreted substances were not necessarily identical.

Acetylcholine↗

Emergence of resistance to biocides during differentiation of Acanthamoeba castellanii.

A synchronous encystment method was used to study the order of development of resistance of Acanthamoeba castellanii to a range of biocides. The emerging resistance during encystation to short-term exposure to the minimum amoebicidal concentrations of each biocide tested was recorded during the first 36 h of the differentiation process. Hydrochloric acid and moist heat were tested as possible resistance markers. Development of the acid-insoluble, proteincontaining, ectocyst wall and the cellulose endocyst wall was followed by quantification of the acid- and alkali-insoluble residues of cell samples removed from synchronous encystment cultures up to 36 h. Resistance to chemical agents (polyhexamethylene biguanide, benzalkonium chloride, propamidine isethionate, pentamidine isethionate, dibromopropamidine isethionate, hydrogen peroxide) and to moist heat was seen to develop between 14 and 24 h after trophozoites were inoculated into the encystment media. Resistance to hydrochloric acid developed between 0 and 2 h and to chlorhexidine diacetate between 24 and 36 h. Levels of acid-insoluble residues began to increase after 8 h and alkali-insoluble residues (cellulose) were detected after 16 h and coincided with the emergence of resistance to all the agents tested except hydrochloric acid. The results suggest that resistance to the biocides tested probably results largely from the physical barrier of the cyst walls rather than as a consequence of a metabolically dormant cyst.

Acanthamoeba↗

2-hydroxystilbamidine isethionate: a new fluorochrome for use in general pathology. II. The selective demonstration of fungi.

Paraffin sections of kidney, lung and oesophagus containing Aspergillus sp., Cryptococcus neoformans and Candida sp. were taken from human post mortem material and from the marmoset Callithrix jacchus. Sections were stained for 1-5 min in buffered 2-hydroxystilbamidine isethionate containing sodium metabisulphite after pre-oxidation in 1 per cent aqueous periodic acid. Sections were dehydrated, cleared and mounted in Polymount. When excited with UV light hyphae and fungal bodies fluoresced white contrasting sharply with yellow nuclear fluorescence. With blue light nuclei and fungi fluoresced yellow. Staining with the fluorochrome was pH dependent and behaved as a Schiff type reagent indicative of its probable behaviour as a basic dye. The method was simple, rapid and provided permanent fluorescent preparations which over a number of years did not fade with routine storage.

Fluorescent Dyes↗

[Primary prophylaxis against cerebral toxoplasmosis. Efficacy of folinic acid in the prevention of hematologic toxicity of pyrimethamine].

OBJECTIVES: Cerebral toxoplasmosis is the most frequent opportunistic infection in patients with acquired immune deficiency syndrome in France. We evaluated the effect of adding folic acid to the standard treatment (including pyrimethamine) on preventing induced cytopenia in order to determine the optimal dose. METHODS: From January to September 1990, pyrimethamine (50 mg 3 times per week) was given as primary prophylaxis against toxoplasmosis to 30 patients who were positive for human immunodeficiency virus (CDC classes II or II, CD4 counts < 200/mm3). The patients were randomly divided into three groups given 5, 25 and 0 mg folic acid 3 times per week. Associated treatments were the same in all patients (zidovudine 600 mg/d, pentamidine isethionate aerosol, 300 mg, once a month). Blood cell counts and lymphocyte subset counts were made on days 0, 30, 90 and 180. RESULTS: Two patients were lost to follow-up and between day 90 and 180, 3 were excluded due to other opportunist infection and 1 due to zidovudine induced anaemia. Between the groups, there was no difference in haemoglobin level or cell counts on day 0. No haematologic toxicity was observed at day 90. Haemoglobin was significantly reduced in the control group (0 mg folic acid) on day 180 (mean haemoglobin on day 180, 13.8, 13.1 and 12.1 g/dl in groups 1, 2 and 3 respectively). No variation in polynuclear neutrophil counts was observed. CONCLUSION: These findings suggest that folic acid has a moderate beneficial effect on preventing haematologic disease in patients treated with pyrimethamine. There was no observed dose effect.

AIDS-Related Opportunistic Infections↗

Axoplasm chemical composition in Myxicola and solubility properties of its structural proteins.

The chemical composition of axoplasm extracted from the giant axon of Myxicola infundibulum has been analysed, and some of the factors which disperse its gel structure have been identified. 2. The axoplasm contains about 3-6% protein, and 0-12% lipid. It is isosmotic with sea water and has a pH near 7-0. 3. Inorganic ions in extracted axoplasm include: Na+, 13m-mole/kg wet wtl; K+, 280; Cl-, 24; Ca2+, 0-3; Mg2+, 3. 4. Free organic ions in axoplasm include: gly, 180 m-mole/kg wet st.; cysteic acid, 120; asp, 75; glu, 10; ala, 7; tau, 5; thr, 2; gln and ser, trace; homarine, 63; isethionate, 0. 5. The gel structure is dispersed by solutions containing 1--10 mM-Ca2+, because this ion activates an endogenous protease. The gel can also be dispersed without proteilysis by solutions containing 0-5 M-KCl, or 0-5 M guanidine hydrochloride, or 3-5 M urea, all of which break down neurofilaments. 6. It is argued that many aspects of the composition and dispersal properties of Myxicola axoplasm are similar to those in other axons.

Amino Acids↗

Depolarization evoked by acetylcholine in mesenteric arteries of hypertensive rats attenuates endothelium-dependent hyperpolarizing factor.

OBJECTIVE: During blockade of endothelium-dependent hyperpolarizing factor (EDHF), acetylcholine evoked larger and faster depolarization in mesenteric arteries of spontaneously hypertensive rats (SHR) than normotensive Wistar-Kyoto (WKY) rats. We studied the mechanism underlying this response and its role in the attenuation of EDHF. METHODS: Electrophysiology, computational modelling and myography were used to study changes in membrane potential and effects on contractility. RESULTS: The large acetylcholine-evoked depolarization in SHR was accompanied by contraction, but this was not seen in WKY rats. The depolarization depended on release of intracellular Ca2+ but was unaffected by nonselective cation channel inhibitors, gadolinium, lanthanum or amiloride. The depolarization was significantly reduced by the Ca2+-dependent Cl- channel inhibitors, niflumic acid or flufenamic acid, or alterations in Cl- gradients using bumetanide (Na/K/Cl transporter inhibitor) or external Cl- replacement with isethionate. These drugs altered the time course of EDHF-evoked hyperpolarizations in SHR, making them indistinguishable from those in WKY rats. EDHF-induced relaxation was less sensitive to acetylcholine in SHR than in WKY rats, but this difference was eliminated following artery pretreatment with bumetanide. Computational modelling in which the SHR fast depolarizing response was selectively modulated mimicked physiologically acquired results obtained in SHR and WKY rats during Cl- -channel blockade. CONCLUSIONS: Acetylcholine evokes a fast depolarization in SHR but not in WKY rats, mediated by the opening of Ca2+-dependent Cl- channels. The depolarization is responsible for a constriction that reduces EDHF-mediated relaxation. Data suggest that Ca2+-dependent Cl- channels may provide a novel therapeutic target for improvement of endothelial dysfunction during hypertension.

Acetylcholine↗

Osmotic regulation of prolactin secretion. Possible role of chloride.

The role of osmotic pressure in the exocytosis of prolactin from rat pituitary tumor (GH) cells in culture was investigated. Reducing the osmotic strength of the medium from 300 mosm to 150 mosm by removal of NaCl did not alter basal secretion of prolactin but inhibited secretion stimulated by thyrotropin-releasing hormone (TRH) and forskolin. Both basal and stimulated secretion of prolactin were inhibited by increasing the osmotic strength of the medium with NaCl (IC50 at approximately 500 mosm). The stimulated release of hormone from GH-cells was independent of sodium and unaffected by replacement of sodium ion with tetramethylammonium or choline, or by addition of 500 nM tetrodotoxin. Secretagogue-stimulated release was, however, dependent upon chloride. Exchange of medium chloride with benzoate or isethionate significantly inhibited the stimulated release of prolactin (IC50 at approximately 60 mM exchange) regardless of the secretagogue utilized (phorbol ester, forskolin, depolarization plus BAY K8644, or TRH). Exchange of medium chloride with either isethionate or benzoate reduced cell volume by 10% compared to 60% for sucrose and mannitol, suggesting that inhibition of secretion by isethionate exchange was not a result of increased intracellular osmotic pressure. Complete exchange of medium chloride with isethionate did not alter equilibrium [3H]methyl-TRH binding, resting internal [Ca2+], or the [Ca2+]i response to depolarization and TRH as measured with intracellularly trapped Fura 2. Chloride removal did not change resting internal pH and recovery from an acid load as measured by the intracellular pH-sensitive dye 2',7'-bis(carboxyethyl)-5(6)-carboxyfluorescein. The stimulated secretion of prolactin was also inhibited by exchange of chloride with isethionate in normal pituitary cells in primary culture and the ability of normal cells to respond to the dopamine agonist bromocryptine was not affected by the exchange. These results suggest that exocytosis of prolactin from GH-cells and normal pituitary cells in culture is an osmotically driven process that is chloride-dependent. Stimulated release is more chloride-dependent than constitutive release. The inhibitory effect of isethionate substitution occurs after signal transduction and is distinct from the site of dopamine inhibition of prolactin release.

Animals↗

Second messengers regulate endosomal acidification in Swiss 3T3 fibroblasts.

Acidification of the endosomal pathway is important for ligand and receptor sorting, toxin activation, and protein degradation by lysosomal acid hydrolases. Fluorescent probes and imaging methods were developed to measure pH to better than 0.2 U accuracy in individual endocytic vesicles in Swiss 3T3 fibroblasts. Endosomes were pulse labeled with transferrin (Tf), alpha 2-macroglobulin (alpha 2M), or dextran, each conjugated with tetramethylrhodamine and carboxyfluorescein (for pH 5-8) or dichlorocarboxyfluorescein (for pH 4-6); pH in individual labeled vesicles was measured by ratio imaging using a cooled CCD camera and novel image analysis software. Tf-labeled endosomes acidified to pH 6.2 +/- 0.1 with a t1/2 of 4 min at 37 degrees C, and remained small and near the cell periphery. Dextran- and alpha 2M-labeled endosomes acidified to pH 4.7 +/- 0.2, becoming larger and moving toward the nucleus over 30 min; approximately 15% of alpha 2M-labeled endosomes were strongly acidic (pH less than 5.5) at only 1 min after labeling. Replacement of external Cl by NO3 or isethionate strongly and reversibly inhibited acidification. Addition of ouabain (1 mM) at the time of labeling strongly enhanced acidification in the first 5 min; Tf-labeled endosomes acidified to pH 5.3 without a change in morphology. Activation of phospholipase C by vasopressin (50 nM) enhanced acidification of early endosomes; activation of protein kinase C by PMA (100 nM) enhanced acidification strongly, whereas elevation of intracellular Ca by A23187 (1 microM) had no effect on acidification. Activation of protein kinase A by CPT-cAMP (0.5 mM) or forskolin (50 microM) inhibited acidification. Lysosomal pH was not affected by ouabain or the protein kinase activators. These results establish a methodology for quantitative measurement of pH in individual endocytic vesicles, and demonstrate that acidification of endosomes labeled with Tf and alpha 2M (receptor-mediated endocytosis) and dextran (fluid-phase endocytosis) is sensitive to intracellular anion composition, Na/K pump inhibition, and multiple intracellular second messengers.

3T3 Cells↗

Hypoosmotic stimuli activate a chloride conductance in rat taste cells.

The oral cavity is subjected to a wide range of osmotic conditions, yet little is known about how solution osmolarity affects performance of the gustatory system. In order to elucidate the mechanism by which hypoosmotic stimuli affect the peripheral taste system, I have attempted to characterize the effects of hypoosmotic stimuli on individual rat taste receptor cells (TRCs) using whole-cell patch clamp recording. Currents elicited in response to voltage ramps (-90 to +60 mV) were recorded in control saline and in solutions varying only in osmolarity (-30, -60 and -90 mOsm). In roughly two-thirds of cells, hypoosmotic solutions (230 mOsm) caused a 15% increase in cell capacitance and activated a reversible conductance that exhibited marked adaptation in the continued presence of the stimulus. Similar responses could be elicited in taste cells from taste buds in the foliate and vallate papillae, the soft palate, the nasopharynx and the epiglottis. Ion substitution experiments were consistent with the interpretation that the predominant ion carried through these apparent volume- or stretch-activated channels was Cl(-) under normal conditions. Reversal potentials for the hypoosmotic-induced current closely matched those predicted by the Goldman-Hodgkin-Katz constant field equation for a Cl(-) conductance. The relative permeability sequence of the hypoosmotic-activated current in TRCs was thiocyanate(-) > or = l(-) > or = Br(-) > Cl(-) > or = F(-) > or = isethionate(-) > gluconate(-). Pharmacological experiments revealed that this Cl(-) conductance was inhibited by 4,4'-diisothiocyanatostilbene-2, 2'-disulfonic acid and 5-nitro-3-(3-phenyl-propylamino)benzoic acid (EC(50) = 1.3 and 4.6 microM, respectively), but not by CdCl(2) (300 microM) nor GdCl(3) (200 microM). I hypothesize that this hypoosmotic-activated Cl(-) conductance, which is similar to the well-characterized swelling-activated Cl(-) current, may contribute to volume regulation and could represent the transduction mechanism by which the presence of hypoosmotic stimuli, including water, may be signaled in taste receptor cells.

Algorithms↗

Biophysical and pharmacological characterization of chloride currents in human astrocytoma cells.

Expression of voltage-activated ion channels was studied in primary cultures from seven freshly resected human primary brain tumors and in an established human astrocytoma cell line, STTG1. Astrocytoma cells consistently expressed voltage-dependent outwardly rectifying currents. Currents activated at potentials > 45 mV and showed outward transients on termination of voltage steps. Currents reversed at the Cl equilibrium potential, suggesting that they were largely carried by Cl-. Altering extracellular K- or Na+ concentration did not alter currents; neither did replacement of intracellular K+ by Cs+ or intracellular Na+ by N-methyl-D-glucosamine. Anion-substitution experiments suggest the following permeability sequence, determined from shifts in tail current reversal potential: I- > NO3- > Br- > Cl- > acetate > isethionate > F- > glutamate. Currents were sensitive to the Cl- channel blockers chlorotoxin, 4,4'-diisothiocyanostilbene-2,2'-disulfonic acid (DIDS), and 4,4'-dinitrostilbene-2,2' disulfonic acid (DNDS), with chlorotoxin being most effective, yielding > 80% block at 590 nM. DIDS (100 microM) and DNDS (100 microM) reduced currents by 33.5 and 38.2%, respectively. Currents were also sensitive to Zn2+ (100 microM, 47% block) and Cd2- (25 microM, 42% block). Reducing extracellular Ca2+ concentration decreased outward currents by 58% and almost completely eliminated transients, suggesting that Cl- currents are Ca2+ dependent. Cl channel block resulted in altered cell proliferation as determined by [3H]thymidine incorporation, suggesting that these channels may be involved in astrocytoma growth control.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Copper stimulation of LHRH release from median eminence explants. II. A process dependent on chloride transport.

We have previously shown that chelated copper stimulates LHRH release from explants of the median eminence area (MEA). Characteristics of this release process are: ligand and metal specificity, the involvement of a limited number of copper interactive sites, and a lack of dependence on extracellular calcium. Since chloride transport is essential for exocytosis of peptides and biogenic amines, we wished to ascertain if chloride transport is essential for the process of CuHis-stimulated release of LHRH. MEA explants were incubated for 15 min with 100 microM CuHis (phase I) and then for 15 min in copper-free medium (phase II) and LHRH released into the medium was evaluated by RIA. In the presence of 136 mM Cl, CuHis stimulated the release of LHRH from a basal level of 5 +/- 0.4 pg/15 min per MEA to 17 +/- 0.9 pg during phase I and to 30 +/- 1.2 pg during phase II. In the absence of Cl-, the CuHis-stimulated release of LHRH during phases I and II was inhibited by 80 and 90%, respectively. In the presence of 136 mM Cl- and the anion transport inhibitor SITS (4-acetamido-4'-isothiocyanostilbene-2,2'-disulfonic acid) the stimulated release was completely inhibited in both phases. When the selectivity of this release process for monovalent anions was tested, the effectiveness of the anions in supporting CuHis-stimulated LHRH release was in this decreasing order: Cl- greater than Br- greater than SCN- = acetate greater than I- = isethionate.(ABSTRACT TRUNCATED AT 250 WORDS)

4-Acetamido-4'-isothiocyanatostilbene-2,2'-disulfo↗