[Trichloroacetic acid in surgical and dermatologic treatment association of trichloroacetic acid with salicylic acid (ATS); great bactericidal value of 3% solutions].
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As part of a pilot project establishing a porcine model for aspirin overdose, the percentage protein binding of acetylsalicylate (ASA) and salicylate (SA) in porcine and human sera was evaluated in vitro over a range of concentrations. Serum from 2 pigs and 4 humans were spiked with ASA concentrations of 0.5-100 mg/dL and SA concentrations of 1-120 mg/dL. Protein binding for each concentration of ASA and SA was determined using radiolabeled drug and ultrafiltration with the Centrifree micropartition system. The percentage protein binding for ASA in pig and human sera were similarly low (< 50%) for all concentrations evaluated. Percentage protein binding for SA for pig and human sera were high (approximately 90% and 80%) at low therapeutic concentrations, but then declined to approximately 30% at higher toxic concentrations (120 mg/dL). The protein binding of ASA and SA over a range of concentrations was similar for porcine and human sera.
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The investigation of emerging contaminant issues is a proactive effort in environmental analysis. As a part of this effort, sewage effluent is of current analytical interest because of the presence of pharmaceuticals and their metabolites and personal care products. The environmental impact of these components is still under investigation but their constant perfusion into receiving waters and their potential effect on biota is of concern. This paper examines a tool for the characterization of sewage effluent using capillary electrophoresis-laser induced fluorescence (CE-LIF) with a frequency-doubled laser operated in the ultraviolet (UV). Fluorescent acidic analytes are targeted because they present special problems for techniques such as gas chromatography-mass spectrometry (GC-MS) but are readily accessible to CE-LIF. As an example of the application of this tool, salicylic acid is determined near the 100 ng/L (7 x 10(-10) M) level in sewage effluent. Salicylic acid is a metabolite of various analgesics. Relatively stable in the environment, it is a common contaminant of municipal sewage systems. Salicylic acid was recovered from freshly collected samples of the effluent by liquid-liquid extraction. Confirmation of identity was by electron ionization GC-MS after conversion of the salicylic acid to the methyl ester by means of trimethylsilyldiazomethane. CE-LIF in the UV has revealed more than 50 individual peaks in the extract and a background response that suggests a large and indeterminate number of additional compounds are present. These data together with complementary techniques provide information on the complexity and components in these effluent streams.
The influence of salicylic acid on pathological epithelial proliferation has been evaluated by means of the peidermal hyperplasia inhibition test in the guinea pig. 3% w/w salicylic acid dissolved in ethanol reduced surface epithelial hyperplasia by 15%, i.e. exhibited activity comparable to that of hydrocortisone 0.1% w/w. 1% w/w salicylic acid dissolved in a dimethylacetamide-acetone-ethanol mixture exerted an even greater degree of antihyperplastic activity on the surface epithelium (-18%) and also a marked inhibitory effect on deep epithelial proliferation (-10%).
Fifteen nonionic surfactants, 10% (w/w), were each incorporated into white petrolatum USP ointment base containing 10% (w/w) salicylic acid or 11.6% (w/w) sodium salicylate with 10% (w/w) dimethyl sulfoxide. Percutaneous absorption was determined from blood salicylate levels in New Zealand white rabbits at regular intervals for 8 hr following application of the ointment. Percutaneous absorption of salicylic acid was increased significantly when sorbitan monopalmitate, sorbitan trioleate, poloxamer 231, poloxamer 182, polyoxyethylene 4 lauryl ether, polyoxyethylene 2 oleyl ether, or polyoxyl 8 stearate was added to the ointment containing dimethyl sulfoxide, salicylic acid, and white petrolatum. Percutaneous absorption of sodium salicylate was increased significantly when sorbitan monolaurate, sorbitan monopalmitate, or poloxamer 182 was added to the ointment containing dimethyl sulfoxide, sodium salicylate, and white petrolatum.
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