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Increased accumulation of the lipophilic cation tetraphenylphosphonium+ by cyclopiazonic acid-treated renal epithelial cells.

Pig kidney renal epithelial cells (LLC-PK1) in culture were used to determine the effects of cyclopiazonic acid (CPA) on the uptake of the transmembrane potential probe, [3H]tetraphenylphosphonium bromide (TPP+). CPA had a significant stimulatory effect on TPP+ accumulation, which occurred in a dose-related manner. TPP+ accumulation in the presence of CPA was significantly reduced by high-potassium media (HK) and carbonylcyanide m-chlorophenylhydrazone (CCCP), but neither HK nor the protonophore CCCP, could completely abolish the stimulatory effect of CPA. The apparent transmembrane potential difference (delta psi), calculated based on the difference in accumulation of TPP+ in low-potassium and HK media, ranged from -55.9 to -85.7 mV for control cells and -89.4 to -109.0 mV for CPA-treated cells (20 mg CPA/I). The mechanism of CPA stimulation of TPP+ accumulation was not known. However, it was hypothesized that the effect could be a result of alterations in ion pumps or altered membrane permeability. The fact that the stimulatory effect could not be completely abolished by high potassium or CCCP suggested that there was some interaction between CPA and TPP+ or there were sites of TPP+ accumulation that were insensitive to K+ and H+ permeability.

Animals↗

Relative movement and soil fixation of soluble organic and inorganic phosphorus.

There is considerable concern about pollution of surface waters with P. Although most of the research has focused on inorganic P in surface runoff, it has recently become possible to easily follow the fate of soluble organic P forms in soils and waters. Two experiments were performed to compare the relative mobility and soil fixation affinity of orthophosphate monoesters, orthophosphate diesters, and soluble inorganic P. We used three P substrates, 4-methylumbelliferyl phosphate (MUP), deoxyribonucleic acid (DNA), and KH(2)PO(4) in (i) a soil column experiment and (ii) a soil P adsorption test tube experiment. Shortly after columns were prepared, approximately two pore volumes of 0.005 M CaCl(2) were passed through 25 cm length columns containing 10 cm of loamy sand amended with approximately 10 mg P as MUP, DNA, or KH(2)PO(4) above 15 cm of nonamended loamy sand. The total net quantity of 757.8 microg P 2L(-1) of orthophosphate diesters in the leachate from the DNA columns exceeded the net quantity of orthophosphate monoesters in leachate from the MUP columns (4.6 microg P 2L(-1)) and soluble inorganic P from the KH(2)PO(4) columns (34.0 microg P 2L(-1)). Adsorption of soluble organic and inorganic P in the test tube experiment yielded similar results: DNA, containing orthophosphate diesters, had a relatively low affinity for soils. In both experiments, high concentrations of other P compounds were identified in samples treated with organic P substrates, suggesting enzymatic hydrolysis by native soil phosphatase enzymes. These findings indicate that repeated application of organic forms of P could lead to significant leaching of P to ground water.

Adsorption↗

Acetylation of methyl 5-amino-1H-[1,2,4]triazole-3-carboxylate.

Acetylation with acetic anhydride of methyl 5-amino-1H-[1,2,4]triazole-3-carboxylate, one of the hetareneamino acids, was studied using HPLC, H NMR, FTIR and GC-MS. The compound has a significantly decreased susceptibility to acetylation compared to 5-amino-1H-[1,2,4]triazole itself. Two isomeric diacetylated products were found.

Acetylation↗

Lack of correlation between cigarette mainstream smoke particulate phase radicals and hydroquinone yield.

Evidence suggests that when compared with non-smokers, cigarette smokers are exposed to an increased burden of free radicals from both the vapor phase and particulate phase of the cigarette smoke aerosol. In this study, primary emphasis was placed on the free radicals found in the particulate phase. Published reports hypothesize that the particulate phase free radicals of cigarette mainstream smoke (MS) condensate consist of a hydroquinone/semiquinone/quinone shuttle. However, our results do not suggest that there is a positive correlation between the smoke yield of hydroquinone and the presence of particulate phase free radicals. First, 10-fold reductions in MS hydroquinone yield were obtained when KNO3 was applied to the surface of tobacco of an American blended cigarette. Surprisingly, there was no significant corresponding change in the yield of particulate phase radicals. Second, in experiments testing MS from low and high hydroquinone-yielding tobaccos there was no consistent corresponding relationship between hydroquinone and particulate phase radical yields. In one series of blends there was at best an inverse relationship between hydroquinone and particulate phase radical yields. In contrast with the published literature, we conclude that the particular compound or compounds driving particulate phase free radical formation are currently unknown. An additional experiment reported here suggested that components of the water soluble extract of burley tobacco may be driving the formation of particulate phase free radicals.

Antioxidants↗

Inactivation of the antibacterial activity of iodine potassium iodide and chlorhexidine digluconate against Enterococcus faecalis by dentin, dentin matrix, type-I collagen, and heat-killed microbial whole cells.

The antibacterial activity of chlorhexidine digluconate and iodine potassium iodide on Enterococcus faecalis A197A was tested in the presence of dentin, dentin matrix, dentin pretreated by EDTA and citric acid, collagen, and heat-killed cells of Enterococcus faecalis and Candida albicans. Medications were preincubated for 1 h with each of the potential inhibitors and tested for their antibacterial activity against E. faecalis, strain A197A. Surviving bacteria were sampled after 1 and 24 h of incubation. Dentin matrix and heat-killed microbial cells were the most effective inhibitors of chlorhexidine, whereas dentin pretreated by citric acid or EDTA showed only slight inhibition. Dentin and skin collagen showed some inhibition at 1 h but not after 24 h. Iodine potassium iodide was effectively inhibited by dentin, dentin matrix, and heat-killed microbial cells. Skin collagen and dentin pretreated by EDTA or by citric acid showed little or no inhibitory effect on iodine potassium iodide. Different components of dentin are responsible for the divergent patterns of inhibition of the antibacterial activity of chlorhexidine digluconate and iodine potassium iodide. Chemical treatment of dentin before applying the medication into the root canal may alter the antibacterial effect of the medication.

Candida albicans↗

Studies on the stability of iodine compounds in iodized salt.

Contributions made by five groups of investigators to the knowledge of the stability of different iodine compounds in salt, and of the extent of the losses of iodine which may occur when iodized salt is exposed to different conditions of storage and use, are discussed by the author.STABILITY OF THE IODINE COMPONENT IN IODIZED SALT IS DETERMINED BY: (1) moisture content of the salt and humidity of the atmosphere; (2) light, heat, and other meteorological factors; (3) impurities in the salt; (4) acidity or alkalinity of the mixture; and (5) the form in which iodine is present.When potassium iodide or sodium iodide is used as the iodizing agent, the iodide content of the salt will remain constant and its distribution will remain uniform for many months if the salt is packed dry in a container with an impervious lining and kept dry, preferably in a cool place and away from strong light. When these conditions cannot be met, it is desirable to iodize salt with potassium iodate. Under adverse conditions of moisture, heat, and sunlight, the iodine content of salt iodized with potassium iodate remains relatively constant.

Hot Temperature↗

Inhibition of energy metabolism by 3-nitropropionic acid activates ATP-sensitive potassium channels.

3-Nitropropionic acid (1 mM), which inhibits succinate dehydrogenase activity and reduces cellular energy, produces in the pyramidal cell layer of the hippocampal region CA1 a hyperpolarization for variable lengths of time before evoking an irreversible depolarization. Hyperpolarization is caused by an increased potassium conductance that is attenuated by glibenclamide (1-10 microM), a selective antagonist of ATP-sensitive potassium channels; in contrast, diazoxide (0.5 mM), an agonist at this channel, induces a hyperpolarization in CA1 neurons of rat hippocampal slices. The transient hyperpolarization after prolonged (ca. 1 h) application of 3-NPA is followed by a depolarization that is incompletely reversed by brief application of the glutamate antagonists (D-2-amino-5-phosphonopentanoic acid (APV), 6,7-dichloroquinoxaline-2,3-dione (CNQX), 3-(+/-)-2-carboxypiperazin-4-yl)propyl-1-phosphonic acid (CPP), 7-chloro-kynurenic acid (7Cl-KYN)). Early application of glibenclamide (within the initial 5 min) blocked or reduced hyperpolarization and accelerated the depolarization. These data suggest that metabolic inhibition by 3-NPA initially activates ATP-sensitive potassium channels. Events other than activation of glutamate receptors participate in the final depolarization resulting from uncoupling of oxidative phosphorylation.

Adenosine Triphosphate↗

Divergent kinetics of 201Tl and 99mTc-SESTAMIBI in cultured chick ventricular myocytes during ATP depletion.

BACKGROUND: Thallous chloride (201Tl) and hexakis(2-methoxyisobutyl isonitrile) technetium (I) (99mTc-SESTAMIBI) are myocardial perfusion imaging agents with biological properties that also reflect tissue viability. Initial myocellular uptake rates of 201Tl reflect activity of Na,K-ATPase, whereas those of 99mTc-SESTAMIBI reflect mean plasma membrane potential. METHODS AND RESULTS: To better understand the mechanistic responses of these tracers to myocellular injury, cultured chick embryo cardiac myocytes were metabolically inhibited in iodoacetate (1 mM) and rotenone (10 microM) for up to 2 hours, and initial uptake rates of each agent were determined at successive intervals along with correlative cellular contents of ATP, sodium, and potassium and lactate dehydrogenase release. ATP content fell from 30.5 +/- 1.4 to 2.7 +/- 0.9 nmol.(mg protein)-1 within 2 minutes, whereas sodium and potassium contents ran down their thermodynamic gradients more slowly (t 1/2 approximately 60 minutes). Modestly severe cell injury was produced at 2 hours as estimated by lactate dehydrogenase release (18% of total). Initial uptake rates of 201Tl declined from 6.9 +/- 0.8 to 4.0 +/- 0.4 fmol.(mg protein)-1.(nMo)-1.(min)-1 by 20 minutes and remained depressed and ouabain (100 microM)-insensitive at 30 +/- 13% of control. Conversely, initial uptake rates of 99mTc-SESTAMIBI increased from 10.6 +/- 0.8 to 15.0 +/- 0.6 fmol.(mg protein)-1.(nMo)-1.(min)-1 within 10 minutes, remained elevated for 40-60 minutes, and later declined to low values. Injury-induced enhancement of initial uptake rates of 99mTc-SESTAMIBI were insensitive to ouabain (100 microM), carbonyl cyanide-m-chlorophenyl hydrazone (5 microM), and valinomycin (1 microgram/ml) but were significantly inhibited by 130 mM Ko buffer, Ba2+ (1 mM), glybenclamide (100 microM), and quinacrine (10 microM). CONCLUSIONS: Uptake rates of 201Tl monotonically decline, correlating with Na-K pump inhibition from ATP depletion. Conversely, uptake rates of 99mTc-SESTAMIBI at first increase above control for 40-60 minutes, indicating a mean plasma membrane hyperpolarization possibly resulting from opening of ATP-sensitive and arachidonic acid-activated potassium channels, before declining to low values with more severe cell injury. Correlative non-flow-dependent relations between 201Tl and 99mTc-SESTAMIBI contain information regarding the degree of myocellular injury.

Adenosine Triphosphate↗

Effectiveness of three root canal medicaments to eliminate Actinomyces israelii from infected dentinal tubules in vitro.

The persistence of anaerobic bacteria in the root canal system often leads to treatment failure. One possible reason for this may be the retention of micro-organisms in the dentinal tubules of root canal walls. This study was performed to compare the effectiveness of two root canal medicaments and a chlorhexidine solution in disinfecting Actinomyces israelii-infected root canal walls and dentinal tubules in vitro. Dentinal tubules of root canal walls of human teeth were experimentally infected with A. israelii. The root canals were exposed to either iodine potassium iodide, calcium hydroxide or 2% chlorhexidine for periods of 3, 7 and 60 days. At the end of the medication periods samples were removed at different depths and tested for A. israelii viability. Chlorhexidine was the only disinfectant that was able to eliminate A. israelii from all the samples after 3, 7 as well as 60 days while 25% of the specimens treated with iodine potassium iodide and 50% of the specimens treated with calcium hydroxide still had viable A. israelii after treatment. It is clear from this study that 2% chlorhexidine is superior to iodine potassium iodide and calcium hydroxide in its ability to remove A. israelii from infected dentinal tubules. However, in vivo trials need to be undertaken before its clinical use can be recommended.

Actinomyces↗

Effect of organic tin compounds on electric properties of model membranes.

The objective of the present work was to investigate the effect of selected organic tin compounds and potassium chloride (used as a reference substance) on the trans-membrane electric voltage and electric resistance of model membranes, the latter being nitrocellulose filters impregnated with butylene ester of lauric acid. The increasing KCl concentration (in the measurement chambers) caused a rapid rise of the negative trans-membrane voltage, whose value stabilized afterwards. In the case of (C3H7)3SnCl an abrupt maximum of the negative voltage was observed followed by a monotonic drop to zero. In the case of highest concentrations of this compound the voltages, after having reached zero, changed their polarization to the opposite. Within the range of small concentrations two slight voltage maxima were observed. Non-ionic tin compounds like (CH3)4Sn and (C2H5)4Sn had an insignificant influence on the electric properties of the studied membranes.

Electrochemistry↗

Inactivation of urate oxidase by a system composed of lactoperoxidase, hydrogen peroxide and bromide.

Urate oxidase from Candida utilis, an enzyme containing an essential thiol, was examined for its sensitivity to lactoperoxidase, an oxidant present in breast milk. Upon exposure to a system composed of lactoperoxidase, hydrogen peroxide and bromide at moderately alkaline pH, the urate oxidase exhibited comparable activity to the untreated enzyme; but upon exposure at moderately acidic pH, it lost its activity completely. Thus the lactoperoxidase-H2O2-bromide system significantly inactivated urate oxidase only at moderately acidic pH. This inactivation was prevented by the presence of N-acetylmethionine, a methionine analogue, or glutathione, which is a thiol compound analogous to an amino acid, indicating that it was probably due to the oxidation and damage of the methionine residue and/or the thiol group in the urate oxidase by the lactoperoxidase system, that loss of catalytic activity of the urate oxidase occurred.

Bromides↗

Cooperativity and pseudo-cooperativity in the glutathione S-transferase from Plasmodium falciparum.

Binding and catalytic properties of glutathione S-transferase from Plasmodium falciparum (PfGST) have been studied by means of fluorescence, steady state and pre-steady state kinetic experiments, and docking simulations. This enzyme displays a peculiar reversible low-high affinity transition, never observed in other GSTs, which involves the G-site and shifts the apparent K(D) for glutathione (GSH) from 200 to 0.18 mM. The transition toward the high affinity conformation is triggered by the simultaneous binding of two GSH molecules to the dimeric enzyme, and it is manifested as an uncorrected homotropic behavior, termed "pseudo-cooperativity." The high affinity enzyme is able to activate GSH, lowering its pK(a) value from 9.0 to 7.0, a behavior similar to that found in all known GSTs. Using 7-chloro-4-nitrobenzo-2-oxa-1,3-diazole, this enzyme reveals a potential optimized mechanism for the GSH conjugation but a low catalytic efficiency mainly due to a very low affinity for this co-substrate. Conversely, PfGST efficiently binds one molecule of hemin/monomer. The binding is highly cooperative (n(H) = 1.8) and occurs only when GSH is bound to the enzyme. The thiolate of GSH plays a crucial role in the intersubunit communication because no cooperativity is observed when S-methylglutathione replaces GSH. Docking simulations suggest that hemin binds to a pocket leaning into both the G-site and the H-site. The iron is coordinated by the amidic nitrogen of Asn-115, and the two carboxylate groups are in electrostatic interaction with the epsilon-amino group of Lys-15. Kinetic and structural data suggest that PfGST evolved by optimizing its binding property with the parasitotoxic hemin rather than its catalytic efficiency toward toxic electrophilic compounds.

4-Chloro-7-nitrobenzofurazan↗

Coronary endothelial damage after crystalloid cardioplegia.

There is considerable clinical experience to suggest that damage to the myocardium during ischaemic arrest can be prevented by cardioplegic solutions. However, very little is known about the effects of these cardioplegic solutions on the coronary endothelium. The effects of three different cardioplegic solutions on the coronary endothelium are reported here. Preservation of the myocardium was studied with biochemical assays. Blood cardioplegia did not damage the coronary endothelium. Crystalloid cardioplegia caused disappearance of the endothelial cells and gross deformity of the flow surface. The addition of albumin to the crystalloid solution preserved most of the endothelial lining. Preservation of the myocardial high energy compounds seemed to be dependent only on the cooling effect of the cardioplegia and not on the composition of the solution. There was no correlation between high energy compounds and endothelial changes. The present study favours the use of cold blood cardioplegia which preserves both the coronary endothelium and the myocardial energy sources during ischaemic cardiac arrest.

Albumins↗

Effects of certain diuretics on the electrophysiological characteristics of the nephron in the rat kidney.

Electrophysiological micropuncture techniques were used to study the effect of certain diuretics on transtubular transport of electrolytes in the rat kidney. The mercurial diuretic novurite caused a reduction of active sodium transport in the proximal tubule, measured by short-circuit current and increased permeability of the tubular wall to ions which led to a considerable drop in transtubular potential and transepithelial resistance. Ethacrynic acid decreased the short-circuit current in the proximal tubule, without changing the permeability characteristics of the nephron. Xanthine diuretic euphylline did not reduce the short-circuit current in the proximal segment of the nephron; however, it increased the transepithelial potential of the renal tubule. In the distal tubule, euphylline and ethacrynic acid increased the difference in transtubular potential, whereas novurite reduced the transtubular potential. An increase in the electrical gradient of the distal tubule as a result of euphylline and ethacrynic acid action may be responsible for increasing potassium excretion. A decrease of the transtubular potential in the potassium excretion under mercurial diuretic action. The reduction of tubular reabsorption as a result of diuretic action is due to drug effect on different levels of the transtubular-ion transport system.

Aminophylline↗

NO-dependent regulation of lectin- and menadione-induced H2O2 production by cells from pleural effusions of lung cancer patients and by immune cells.

Molecular mechanisms of interplay between reactive oxygen (superoxide, hydroxyl radical, H2O2 etc.) and nitrogen (nitric oxide - NO, ONOO-, NO2-, NO3- etc.) forms are proposed to be of key importance for cell and tumor biology. Considering NO as a signal molecule we have studied the impact of NO release on processes of generation of H2O2 in different experimental systems including pleural effusions (PE) of lung cancer patients, human polymorphonuclear leukocytes (PMNs), and rat thymocytes. It was found that PE of lung cancer patients contain a high level of [NO2-+NO3-], i.e. 43.4 25.6 microM (n=15), and PE cells could effectively generate H2O2 in response to lectins from Viscum album (VAA), Phaseolus vulgaris (PHA), and Pisum sativum (PSA) as well as to menadione. A positive correlation between the [NO2-+NO3-] concentration and menadione-induced H2O2 generation (r=0.1964) was found, whereas the [NO2-+NO3-] concentration and lectin-induced H2O2 generation (PHA, r=-0.4099; PSA, r=-0.3949; VAA, r=-0.3225) were negatively correlated. Notably, an increase of H2O2 generation by PE cells was determined in the range of 20-35 microM [NO2-+NO3-]. When PMNs and rat thymocytes were treated with a donor of NO (sodium nitroprusside), the release of H2O2 in response to lectins or menadione was decreased in a dose-dependent manner. The end products of NO biochemistry, assayed as KNO2 and KNO3, were not able to affect significantly the H2O2 generation processes. In conclusion, the data indicate that the potential for triggered H2O2-generation of cells is modulated markedly by the presence of NO or derived reaction compounds. This relation may play an important role in the pathogenesis of PE malignancies with potential relevance for therapeutic strategies.

Adult↗

Sulfuric acid cleanup and KOH-ethanol treatment for confirmation of organochlorine pesticides and polychlorinated biphenyls: application to wastewater samples.

The efficacy of sulfuric acid cleanup and KOH-ethanol hydrolysis confirmation was studied for 22 organochlorine pesticides and 2 polychlorinated biphenyls (PCBs). Mean recoveries for different treatment times are given. The method was applied to analysis of several wastewater samples by gas chromatography with electron capture detection. Organochlorine compounds were extracted by using separatory funnels and 15% diethyl ether in hexane as extractant. All the compounds studied could be analyzed except trifluralin, dichloran, dieldrin, and endrin, which were destroyed after treatment with concentrated H2SO4. The pesticides found most commonly in the samples analyzed were fenson, tetradifon, lindane, methoxychlor, and dicofol.

Chromatography, Gas↗

Pinacidil: history, basic pharmacology, and therapeutic implications.

Peripheral vasodilation has proved to be a successful method to control hypertension in recent years, as illustrated by the increasing number of marketed vasodilators like calcium antagonists, alpha-adrenergic antagonists, and angiotensin-converting enzyme inhibitors. A novel group of vasodilators showing excellent antihypertensive activity in spontaneously hypertensive rats and renal hypertensive dogs has been discovered. The first compounds of the group were pyridylthioureas. Chemical modification based on structure-activity studies involving a substitution of N-cyanoguanidine for the less active thiourea function has led to the synthesis of pinacidil, N'-cyano-N-(4-pyridyl)-N"-(1,2,2-trimethylpropyl) guanidine, recently introduced as the new antihypertensive drug, Pindac. Preclinical studies showed that pinacidil does not relax vascular smooth muscle by any known mechanism, but recent investigations indicate that the compound opens potassium channels in the cell membranes. The hyperpolarization that follows is responsible for the relaxation. Pinacidil is rapidly and almost completely absorbed after oral administration and produces a dose-dependent blood pressure fall in hypertensive animals and humans. The therapeutic plasma concentrations are in the range of those producing relaxation of isolated, noradrenalin-contracted human blood vessels in vitro. In dogs, pinacidil decreases vascular resistance in most tissues proportionally to the blood pressure fall, but elicits a specific increase in coronary blood flow at antihypertensive doses. The compound shows a selectivity for precapillary vessels. It is mainly eliminated by hepatic metabolism to pinacidil-N-oxide followed by renal excretion, and the N-oxidation is partly reversible. Pinacidil is relatively free of toxicity, and action-related side effects such as fluid retention and tachycardia are readily controlled with diuretics and beta-blockers.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Measurement of polynuclear aromatic hydrocarbons in canine lung after alkaline decomposition.

An alkaline decomposition method employing a KOH/alcohol solution was studied, and polynuclear aromatic hydrocarbons (PAHs) contained in particles remaining in canine lung were measured. As a result, BaA, BkF, BaP, and BghiP were found. By this method, PAHs extracted from the lungs of 32 dogs were 13.0-166.0 ng (mean, 63.0 ng) for BaA, 6.6-90.2 ng (mean, 27.4 ng) for BkF, 9.8-167.4 ng (mean 47.2 ng) for BaP, and 10.8-206.0 ng (mean, 61.8 ng) for BghiP. The results showed no correlation between the age and the concentration of PAHs in the lung, but some correlation was found between the age and the lung weight (p<0.01). There were significant correlations among the concentrations of the compounds in the lung (p<0.01). These results suggest that dogs, like humans, are affected by automobile exhaust and other common generation sources of such substances.

Age Factors↗