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At least 19 recordsLinked to original sources

Allergic contact dermatitis from mercury antiseptics and derivatives: study protocol of tolerance to intramuscular injections of thimerosal.

BACKGROUND: Mercury derivatives are frequent contact allergens and their cross-reactivity is not constant. Thimerosal is an organic mercurial used as an antiseptic and as a preservative in most vaccines. OBJECTIVE: To evaluate cross-reactivity, exposure factors, and tolerance to vaccines containing thimerosal in patients sensitized to mercury derivatives. METHODS DESIGN: Observational study (cross-sectional); PATIENTS: 125 patients were recruited for the study, 72 women and girls and 53 boys and men, average age 18.7 years old, range 3 to 65, with positive patch tests to mercury derivatives and/or thimerosal; INTERVENTIONS: All patients were studied by means of enquiry, patch tests, intradermal tests, and intramuscular challenge with thimerosal. RESULTS: A sensitization to thimerosal was observed in 57 patients. Twenty-four of these 125 patients presented a positive intradermal reaction. Ammoniated mercury seems to be a good marker of mercury sensitization eliciting positive reaction in 78% of all patients and merbromin in 66%. In most cases, (100/125) cross-reactivity was found among mercury derivatives. The intramuscular injection of thimerosal induced a mild local reaction in only 5 patients (4% of the total, 9% of thimerosal positive reactions). Childhood vaccinations, merbromin used as an antiseptic, broken thermometers, and the use of drops were the main sources of exposure. CONCLUSIONS: The majority of the patients showed positive tests to both organic and inorganic mercury derivatives. Vaccination with thimerosal is relatively safe, even for individuals with delayed type hypersensitivity to this chemical, since more than 90% of allergic patients tolerated intramuscular challenge tests with thimerosal. A simplified protocol of patch tests to study mercury derivatives is proposed. It would be advisable to restrict the use of mercurial antiseptics and mercury thermometers.

Adolescent↗

Organ mercury levels in infants with omphaloceles treated with organic mercurial antiseptic.

Samples of fresh and fixed tissues from infants with exomphalos treated by thiomersal application were analysed for mercury content. The results showed that thiomersal can induce blood and organ levels of organic mercury which are well in excess of the minimum toxic level in adults and fetuses. The analysis of fresh and fixed tissues must be carefully controlled against normal tissues in order to interpret mercury levels accurately.

Brain↗

Immune-type glomerulonephritis induced in the Brown-Norway rat with mercury-containing pharmaceutical products.

It has been shown that Brown-Norway rats develop an immune-type glomerulonephritis after treatment with various mercury-containing drugs. Anti-GBM antibodies were involved, at least in some animals. This glomerulonephritis induced a proteinuria. Strong evidence is given, suggesting that most mercury compounds, some of which, such as mercurial antiseptics, are widely used, could induce an immune-type glomerulonephritis. The question therefore arises, whether these drugs can be used any longer.

Animals↗

Comparative responses of Pseudomonas stutzeri and Pseudomonas aeruginosa to antibacterial agents.

The sensitivity of six strains of Pseudomonas stutzeri (NCIMB 568, 10783, 11358, 11359, JM 302, JM 375) to cationic antiseptics, mercury compounds, the parabens, phenolics, EDTA and various antibiotics was compared with Pseudomonas aeruginosa NCIMB 8626. All Ps. stutzeri strains were highly sensitive to chlorhexidine diacetate, organomercurials and triclosan, but rather less so to quarternary ammonium compounds (QACs). They were also sensitive to other biocidal agents and more sensitive to many antibiotics than the strain of Ps. aeruginosa. There was little correlation between uptake of chlorhexidine diacetate or cetylpyridinium chloride by dense suspensions of organisms, leakage of intracellular constituents and loss of cell viability.

Anti-Bacterial Agents↗