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Effects of salicylic acid in glutamate- and kainic acid-induced neurotoxicity in cerebellar granular cell culture of rats.

Glutamate (10(-7)m) and one of its non-NMDA receptor agonists, kainic acid (10(-4)m), were administered to rat cerebellar granular cell cultures, and the neuroprotective role of salicylic acid was examined. Glutamate induced 38.58 +/- 1.45% neuronal cell death while kainic acid induced only 21.4 +/- 2.01% despite being 1000 times more concentrated. The most effective dose for the neuroprotective effect of salicylate in glutamate-induced neurotoxicity was 10(-5)m and it had no protective effect at 10(-7)m. With kainic acid-induced toxicity, 10(-6)m salicylate had no protective effect but 10(-5)m and. 10(-4)m salicylic acid were very effective against kainic acid-induced toxicity. As an OH-trapping agent, salicylate had a protective role in NMDA and non-NMDA receptor-activated neuronal cell death. The present study gives some important clues about oxygen free radical generation having an important role in glutamate- and kainic acid-induced neurotoxicity. On the other hand, the neuroprotective effects of salicylic acid in the present study may depend on the pH alterations in salicylic acid solutions.

Animals↗

[Separation of salicylic acid drugs by aqueous and nonaqueous capillary electrophoresis with conductance detector].

AIM: To develop a method for separating salicylic acid drugs by aqueous and nonaqueous capillary electrophoresis with conductance detector. METHODS: Fused-silica capillary (55 cm x 50 microns ID) was used. The effects of concentration and pH of the running buffer, running voltage and injection time were studied. Salicylic acid (SA), acetylsalicylic acid (ASA) and sulfosalicylic acid (SSA) can be separated in a 10 mmol.L-1 Tris-30 mmol.L-1 H3BO3 buffer (pH 8.0), the separation voltage and injection time were 24 kV and 10 s, respectively. But tailing peaks appeared. In order to improve the separation efficiency and the sensitivity, ethanol was used as nonaqueous solvent. RESULTS: High sensitivity and resolution for SA, ASA and SSA were obtained in ethanol media, and there was excellent linearity between peak area and concentration of the analytes in the concentration range of 0.05-100 mg.L-1, 5.0-250 mg.L-1 and 0.08-100 mg.L-1 for SA, ASA and SSA, respectively. All the correlation coefficients were over 0.995. CONCLUSION: The analysis of SA and ASA in aspirin tablets was tried and good results were obtained in ethanol media. There was higher sensitivity and separation efficiency than in aqueous media.

Aspirin↗

Salicylic acid glucoside acts as a slow inducer of oxidative burst in tobacco suspension culture.

Salicylic acid beta-glucoside (SAG) is a storage form of a defense signal against pathogens, releasing free salicylic acid (SA), to meet the requirements in plants. Since excess SA induces locally restricted cell death following oxidative burst and Ca2+ influx in plants, the effects of SAG on cell viability, Ca2+ influx, and generation of superoxide (O2*-) were examined in suspension-cultured tobacco BY-2 cells expressing aequorin. Among SA-related chemicals tested, only SAG induced the slow and long-lasting O2*- generation, although SAG was less active in acute O2*- generation, Ca2+ influx and induction of cell death. The prolonging action of SAG is likely due to gradual release of SA and the data suggested that a peroxidase-dependent reaction is involved. Notably, pretreatment with low-dose SA (50 micromu) enhanced the response to SAG by 2.5-fold. There are four possible secondary messengers in early SA signaling detectable in the BY-2 culture, namely O2*-, H2O2, Ca2+ and protein kinase (PK). If these messengers are involved in the low-dose SA-dependent priming for SAG response, they should be inducible by low-dose SA. Among the four SA-inducible signaling events, PK activation was excluded from the low-dose SA action since a much higher SA dose (> 0.4 mmu) was required for PK activation.

Calcium↗

Predicting dissolution via hydrodynamics: salicylic acid tablets in flow through cell dissolution.

A model was established for the dissolution of non-disintegrating salicylic acid tablets as a function of hydrodynamic conditions in the Flow Through Cell system (USP Apparatus 4). The approach was to model the dissolution rate of the material as a function of the Reynold's number, the dimensionless engineering term that describes the degree of turbulence. The dissolution rate of USP calibrator salicylic acid tablets was measured as a function of tablet size, orientation within the cell, dissolution media flow rate, and cell size. All of these variables were found to have an effect on dissolution rate, consistent with theory. An equation to predict this dissolution was established as: N(SH)=-21.1+12.6xN(RE)(0.5), R(2)=0.99; 10<N(re)<292.

Models, Theoretical↗

Developmental toxicity interactions of salicylic acid and radiofrequency radiation or 2-methoxyethanol in rats.

Radiofrequency (RF) radiation is used in a variety of workplaces where workers are concurrently exposed to chemicals. Combined exposure to RF radiation (10 MHz) and the industrial solvent, 2-methoxyethanol (2ME), produces enhanced teratogenicity in rats. The purpose of the present research was to determine if the synergistic effects noted for RF radiation and 2ME are generalizable to other chemicals. Since salicylic acid (SA) is widely used as an analgesic and is teratogenic in animals, SA was selected to address generalizability. Based on the literature and our pilot studies, 0, 250, or 350 mg/kg SA were administered by gavage on gestation Day 9 or 13 to rats. Concurrently rats given SA on Day 9 were exposed to RF radiation sufficient to maintain colonic temperature at 41 degrees C for 60 min (or sham). Those given SA on Day 13 were also given 0 or 100 mg/kg 2ME (gavage). Dams were sacrificed on gestation Day 20, and the fetuses were examined for external malformations. The data provide no evidence of synergistic interactions between RF radiation and salicylic acid (resorptions and malformations). Limited evidence of antagonism was observed between 2ME and salicylic acid (fetal weights). This investigation highlights the importance of additional research on interactions in developmental toxicology, and emphasizes the need to consider combined exposure effects when developing both physical agent and chemical agent exposure guidelines and intervention strategies.

Abnormalities, Drug-Induced↗

The activity of Arabidopsis glycosyltransferases toward salicylic acid, 4-hydroxybenzoic acid, and other benzoates.

Benzoates are a class of natural products containing compounds of industrial and strategic importance. In plants, the compounds exist in free form and as conjugates to a wide range of other metabolites such as glucose, which can be attached to the carboxyl group or to specific hydroxyl groups on the benzene ring. These glucosylation reactions have been studied for many years, but to date only one gene encoding a benzoate glucosyltransferase has been cloned. A phylogenetic analysis of sequences in the Arabidopsis genome revealed a large multigene family of putative glycosyltransferases containing a consensus sequence typically found in enzymes transferring glucose to small molecular weight compounds such as secondary metabolites. Ninety of these sequences have now been expressed as recombinant proteins in Escherichia coli, and their in vitro catalytic activities toward benzoates have been analyzed. The data show that only 14 proteins display activity toward 2-hydroxybenzoic acid, 4-hydroxybenzoic acid, and 3,4-dihydroxybenzoic acid. Of these, only two enzymes are active toward 2-hydroxybenzoic acid, suggesting they are the Arabidopsis salicylic acid glucosyltransferases. All of the enzymes forming glucose esters with the metabolites were located in Group L of the phylogenetic tree, whereas those forming O-glucosides were dispersed among five different groups. Catalytic activities were observed toward glucosylation of the 2-, 3-, or 4-hydroxyl group on the ring. To further explore their regioselectivity, the 14 enzymes were analyzed against benzoic acid, 3-hydroxybenzoic acid, 2,3-, 2,4-, 2,5-, and 2,6-dihydroxybenzoic acid. The data showed that glycosylation of specific sites could be positively or negatively influenced by the presence of additional hydroxyl groups on the ring. This study provides new tools for biotransformation reactions in vitro and a basis for engineering benzoate metabolism in plants.

Arabidopsis↗

Identification of the Flower-inducing Factor Isolated from Aphid Honeydew as being Salicylic Acid.

Honeydew produced by the aphid Dactynotus ambrosiae when feeding on flowering or vegetative plants of the short day plant Xanthium strumarium contains an active substance capable of inducing flowering in the long day plant Lemna gibba G3. In the present study, this active material has been identified as salicylic acid through the use of gas-liquid chromatography and mass, infrared, and ultraviolet spectrometry. Authentic salicylic acid induces flowering in L. gibba G3 under strict short day conditions with an optimal response at about 5.6 mum. The possible significance of salicylic acid for the control of flowering in Xanthium or L. gibba G3 is discussed.

Journal Article↗

Identification of methyl jasmonate and salicylic acid response elements from the nopaline synthase (nos) promoter.

Transgenic tobacco plants carrying a fusion between the nopaline synthase (nos) promoter and chloramphenicol acetyltransferase (CAT) reporter gene (cat) were studied for their inducibility by salicylic acid (SA) or methyl jasmonate (MJ) treatments. Either chemical significantly increased CAT activity to a level much higher than that achieved by wounding. Northern blot analysis showed a corresponding increase in mRNA levels. After 20 h of induction of flowering plants, the response to MJ treatment was weaker in old leaves compared with young leaves, whereas the SA response was stronger in old leaves. Kinetic experiments showed that the SA response was much faster than the MJ response, suggesting that the induction mechanism of the nos promoter by these chemicals may differ. Deletion analysis showed that both SA and MJ responses require the DNA sequence between -119 and -112 from the transcription initiation site. This region contains the hexamer sequence (TGACGT) that has been found to be an important regulatory element for several promoters. The MJ response was also reduced by deletions of the CAAT box region or the sequence between -112 and -101, whereas the SA response was not significantly affected by these deletions. This suggests that the nos upstream region containing the hexamer motif is essential for the SA or MJ response and that the CAAT box region and the sequence immediately downstream from the hexamer motif are required for maximum induction by MJ.

2,4-Dichlorophenoxyacetic Acid↗

[Stability of cignolin (dithranol) in ointments containing tar with and without the addition of salicylic acid. Oxidation to danthron and dithranol dimer].

The stability of dithranol in white petrolatum was investigated over a period of 10 weeks in dithranol ointments containing liquor carbonis detergens (LCD) and/or coal tar, in the presence and absence of salicylic acid. Qualitative and semiquantitative analysis using high-pressure liquid chromatography (HPLC) showed that dithranol (0.1%, 0.5%, 1.0%) remained rather stable in white petrolatum for 10 weeks, regardless of the presence or absence of salicylic acid. The addition of 5% LCD or 5% crude coal tar resulted, however, in the rather rapid oxidation of dithranol into its products, danthron and dithranol dimer. The addition of 2% salicylic acid to these combined ointments did not stabilize the dithranol: rather, it reduced the amount of danthron but resulted in a considerable increase in the amount of dithranol dimer. The oxidation of dithranol into its products danthron and dithranol-dimer was almost complete in 0.1% ointments and ranged between 16.3% and 53.8% in 0.5% white petrolatum after 10 weeks. These findings may explain why the addition of tar minimizes dithranol-induced erythema, as reported in clinical studies. Such combinations may have an important influence on the antipsoriatic activity of dithranol and the appearance of brownish discoloration.

Anthralin↗

Percutaneous absorption of salicylic acid, theophylline, 2, 4-dimethylamine, diethyl hexyl phthalic acid, and p-aminobenzoic acid in the isolated perfused porcine skin flap compared to man in vivo.

Human risk assessment for topical exposure requires percutaneous absorption data to link environmental contamination to potential systemic dose. Human absorption data are not readily available, so absorption models are used. In vitro diffusion systems are easy to use but have proved to be somewhat unreliable and are not validated to man. This study compares percutaneous absorption in the isolated perfused porcine skin flap (IPPSF) system with that in man in vivo. The study design utilized the same compounds and the same dose concentration and vehicle in both systems. Methodology for each system was that which is routinely used ineach system. The skin surface was not protected during the absorption dosing period. Percutaneous absorption values were, for man and the IPPSF system, respectively: salicylic acid (6.5 +/- 5.0%; 7.5 +/- 2.6%), theophylline (16.9 +/- 11.3%; 11.8 +/- 3.8%), 2,4-dimethylamine (1.1 +/- 0.3%; 3.8 +/- 0.6%), diethyl hexyl phthalic acid (1.8 +/- 0.5%; 3.9 +/- 2.4%), and p-aminobenzoic acid (11.5 +/- 6.3%; 5.9 +/- 3.7%) (correlation coefficient was 0.78; p < 0.04). The skin surface wash recovery postapplication was similar for salicylic acid in man (53.4 +/- 6.3%) and the IPPSF system (48.2 +/- 4.9%). With the other compounds the majority of surface chemical was recovered in the surface wash and skin tape strip in the IPPSF system. With man, other than salicylic acid, only a few percent applied dose was recovered with surface washing and tape stripping. Since the wash procedure was effective with pig skin, we can assume that these chemicals in man were lost to adsorption to any clothing or bedding with the volunteers. The absorption in man was not less than that in the IPPSF. Assuming the dose was lost in man, it seems plausible that whatever compound was to penetrate human skin in solvent vehicle did so in the period of time before the chemical was removed. The IPPSF system appears to be a good model for predicting percutaneous absorption relative to man. This study design should be used to validate other systems to humans in vivo.

4-Aminobenzoic Acid↗

Maternal reproductive effects of oral salicylic acid in Sprague-Dawley rats.

Clinical and experimental evidence indicates that exposure to relative ly large doses of acetylsalicylic acid (ASA) prolongs parturition. However, little is known about the dose-response relationship for salicylate-related effects on labor and gestation. As well, the relative potency of salicylic acid (SA) as compared with ASA for these reproductive effects has not been well investigated. This study was designed to define a dose-response relationship for salicylic acid (SA) effects on labor and gestation times in Sprague-Dawley rats. Pregnant females received oral doses of 20,80, or 200 mg/kg/day sodium salicylate, or 260 mg/kg/day acetylsalicylic acid (ASA), as a positive control, on days 15 through 21 of gestation (sperm positive = day 0). Onset of labor was followed in each animal beginning on day 21 of gestation. The data failed to demonstrate a substantial potency difference between ASA and SA but some differences in toxicity were observed. Relative to controls, gestation times were unaffected by SA. SA treatment resulted in a dose-related trend towards increased duration of labor which was statistically significant at 200 mg/kg/day of SA. ASA treatment of pregnant females resulted in both prolonged labor and gestation times. Both the highest administered dose of SA and ASA treatment contributed to increased maternal peripartum death. Overall, the study confirms a dose-response relationship for SA-induced maternal reproductive effects and supports a no observable effect level (NOEL) for this compound of 80 mg/kg/day for adverse effects on parturition.

Administration, Oral↗

Effect of topical salicylic acid on animal epidermopoiesis.

In contrast to its antihyperplastic effect on pathological proliferation of the epidermis, salicylic acid promotes epidermopoiesis in the normal guinea pig skin. After the application of 1% w/w salicylic acid in acetone-ethanol for 4 weeks, the thickness of the surface epithelium was increased by 40% and that of the deep epithelium by 19%. The mitotic index rose by 17%.

Administration, Topical↗

Plasma protein binding of salicylic acid, phenytoin, chlorpromazine, propranolol and pethidine using equilibrium dialysis and ultracentrifugation.

The in vitro plasma protein binding of phenytoin (diphenylhydantoin), salicylic acid, propranolol, pethidine (meperidine) and chlorpromazine was measured using an air-driven, bench-top ultracentrifuge and the results were compared with those obtained by equilibrium dialysis. For all drugs studied, except chlorpromazine, a significant correlation was found between the plasma binding results obtained by the two methods. However, only in the case of propranolol the actual binding values obtained by the two techniques were very similar. In the case of phenytoin, salicylic acid and pethidine, ultracentrifugation gave higher plasma binding values than equilibrium dialysis. Binding values obtained by the two methods for chlorpromazine were not correlated at all. This may be explained by binding of chlorpromazine to the very low density lipoprotein fraction which floats after ultracentrifugation. The described ultracentrifugation binding technique may be useful to rapidly measure the plasma binding of certain drugs in microsamples.

Adolescent↗

Intracranial microdialysis of salicylic acid to detect hydroxyl radical generation through dopamine autooxidation in the caudate nucleus: effects of MPP+.

Ringer's solution containing salicylic acid (5 nmol/microliters/min) was infused directly through an intracranial microdialysis probe to detect the generation of hydroxyl radicals (.OH) reflected by the formation of dihydroxybenzoic acids (DHBA) in the caudate nucleus of anesthetized rats. Brain dialysate was assayed for dopamine, 2,3-, and 2,5-DHBA by a high-pressure liquid chromatography-electrochemical (HPLC-EC) procedure. 1-Methyl-4-phenylpyridinium ions (MPP+, 0 to 150 nmol) increased dose-dependently the release of dopamine and the formation of DHBA. A positive linear correlation between the release of dopamine and the formation of 2,3- or 2,5-DHBA was observed (R2 = .98). The present results demonstrate the validity of the use of not only 2,3-DHBA but also 2,5-DHBA as an in vivo index of oxidative damage generated by reactive .OH radicals. In conclusion, the present study demonstrates a novel use of intracranial microdialysis of salicylic acid to assess the oxidative damage elicited by .OH in living brain.

1-Methyl-4-phenylpyridinium↗

Relationships between salicylic acid content, phenylalanine ammonia-lyase (PAL) activity, and resistance of barley to aphid infestation.

It has been suggested that salicylic acid (SA) is a signal in acquired resistance to pathogens in several plants. Also, it has been suggested that infestation of plants causes an increase in the activity of phenylalanine ammonia-lyase (PAL), a key phenolic biosynthesis enzyme. The purpose of this work was to investigate whether the induction of SA and PAL activity is related to the susceptibility of barley to aphid infestation. The induction of free and conjugated SA in two barley cultivars that differ in susceptibility to aphids was analyzed. Analyses of several physiological parameters showed that cv. UNA-80 was more susceptible to the aphid Schizaphis graminum than cv. LM-109. Salicylic acid was not detected in noninfested plants. Levels of free and conjugated SA in cv. LM-109 and of conjugated SA in cv. UNA-80 increased with aphid infestation, whereas the levels of free SA in cv. UNA-80 remained high under all infestation degrees. Maximum values reached in both cultivars were not significantly different. With respect to PAL activity, cv. LM-109 showed a significantly higher specific activity than cv. UNA-80, the more susceptible cultivar. The relationship between the susceptibility of a plant to aphid and SA induction and PAL activity is discussed.

Animals↗

Drug absorption from the gastrointestinal tract and immunity: the mechanism of the decreased absorption of salicylic acid during systemic anaphylaxis. II.

Rats were intraperitoneally immunized with ovalbumin (egg albumin) with incomplete Freund's adjuvant, and the effect of intravenous challenge with ovalbumin on the intestinal blood flow was measured by means of hydrogen clearance method. The intestinal blood flow was significantly reduced by the antigen challenge in ovalbumin-immunized rats compared to the non-immunized rats. However, no significant change was observed on the intestinal blood flow in rats without challenge of the antigen. Moreover, the blood flow reduction was not found in ovalbumin-immunized rats challenged with bovine gamma-globulin. The effect was maintained for at least 16 weeks after the third immunization, but the reduced blood flow was gradually restored to the control level. The decrease in both blood flow and absorption of salicylic acid was recovered by nearly 70% of the control level when high dose of theophylline or caffeine was administered intravenously. In the case of gastric absorption during systemic anaphylaxis, similar results were also obtained by means of in situ loop technique. The decreased absorption of salicylic acid from the rat stomach also correlate with the reduced gastric blood flow. These findings suggest that the decreased absorption of salicylic acid from the gastrointestinal tract might be affected by the reduced blood flow during systemic anaphylaxis.

Anaphylaxis↗