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At least 19 recordsLinked to original sources

Antimicrobial action of silver nitrate.

Silver nitrate 3 mug/ml prevented the separation into two daughter cells of sensitive dividing cells of Pseudomonas aeruginosa growing in nutrient broth plus the chemical. Cell size of sensitive cells was increased and the cytoplasmic contents, cytoplasmic membrane and external cell envelope structures were all abnormal. P. aeruginosa cells grown in the presence of silver nitrate 9 mug/ml showed all these changes to a marked degree except inhibition of cell division was not observed. Silver nitrate (1.5 mug/ml) in distilled water inactivated bacteriophage T2 particles as determined by their infectivity to Escherichia coli B cultures. Lysozyme (50 mug/ml) reduced, and sodium chloride (0.9%) blocked this activity.

Escherichia coli↗

Unusual edge effect in patch testing with silver nitrate.

Silver nitrate is a widely used substance and has been applied topically for cauterizing bleeding and healing wounds. In the past it has even been used to mark patch test sites, when no one knew that the substance itself might be a sensitizer. However, there are also toxic reactions to that substance. We report a case in which a positive "edge effect" at the periphery of the patch test site could be shown. It can be explained by the unequal distribution of patch test solutions in the different patch test systems with a concentration at the rim. Distinguishing between allergic and toxic reactions may be difficult when an edge effect occurs. Therefore, in certain rare cases a biopsy or a lymphocyte transformation test might be of help.

Allergens↗

Argyria: clinical implications of exposure to silver nitrate and silver oxide.

This article reports the clinical findings in a work force of 30 individuals who were exposed to silver nitrate and silver oxide. Six individuals had argyria and 20 had argyrosis (deposition of silver in the eye). Measurements of blood silver levels were included as part of the examination. The results of this examination generally support the benign nature of argyria, although the question of silver causing a decrement in kidney function and night vision is not settled. Periodic slit lamp examinations as well as monitoring of silver air concentrations are necessary to assure that engineering controls are actually limiting worker exposure to silver.

Adult↗

Inhibition of adenosine triphosphatase in vitro by silver nitrate and silver sulfadiazine.

Inhibition of adenosine triphosphatase (ATPase) by silver nitrate (AgNO3) in vitro was studied in microsomal fractions or tissue homogenates of canine brain and kidney, and human kidney. In microsomal fractions, AgNO3 was an indiscriminate inhibitor of ouabain-sensitive (Na+ + K+ ATPase) and ouabain-insensitive (Mg2+ ATPase) activities with 50% inhibition obtaining at concentrations on the order of 10(-7) to 10(-6)M. The enzyme was protected by cysteine. Changing the concentrations of Na+, K+, H+, Mg2+ and ATP did not alter the fractional inhibition of Na+ + K+ ATPase by a constant concentration of AgNO3. An aqueous suspension of silver sulfadiazine had an inhibitory potency similar to AgNO3. It was concluded that silver gives a different pattern of Na+ + K+ ATPase inhibition than other metallic inhibitors of the enzyme so far examined.

Adenosine Triphosphatases↗

A modified method for the differential staining of spermatozoa using alcoholic acidic silver nitrate.

Differential silver staining patterns have been demonstrated in mammalian spermatozoa, using an aqueous silver nitrate reagent. In the present study, mouse, rabbit, and human spermatozoa were stained using a modification of the earlier method. In the modified method, an alcoholic acidic silver nitrate stain, with subsequent differentiation in alcoholic ammonia, was used. This method enhanced the intensity of staining of the head, mid-piece, and tail. In particular, marked differentiation of the acrosomal, subacrosomal, and postacrosomal regions was obtained, which facilitated determination of acrosomal integrity. Moreover, background interference was reduced, yielding better clarity of the stained smears. The staining was carried out in the cold. This modified technique offers an advantage in the assessment of sperm morphological anomalies and membrane and acrosomal integrity, and is a simple, reliable, and useful method for the evaluation of sperm function.

Acrosome↗

Autometallographic detection of silver in hypothalamic neurons of rats exposed to silver nitrate.

The silver amplification technique, autometallography, has been used to reveal silver accumulation in neurons in the hypothalamus of male Wistar-Kyoto rats. Silver penetrated the blood-brain barrier after exposure to silver nitrate, and differences in staining intensity were found between the hypothalamic nuclei. When using light microscopy, the silver staining of the hypothalamic neurons was highly heterogeneous. Silver was detected exclusively in lysosomes of the loaded neurons. Aspects of this heterogeneous localization are discussed in relation to the distribution of autometallographically developed gold and mercury.

Animals↗

Partial inhibition of oestrogen-induced adenohypophyseal growth by silver nitrate.

The administration of silver nitrate to rats in their food (10 mg/rat/day) led to the rapid disappearance of serum polyphenol oxidase activity. After 60 days silver nitrate treatment produced a decrease of adenohypophyseal weight. If given over a period of 40--60 days it also partially inhibited the adenohypophyseal response to oestradiol (a weight decrease and raised thyroxine binding by adenohypophyseal proteins in vitro). The mechanism by which silver nitrate diminishes basal and oestrogen-increased adenohypophyseal weight remains unknown.

Animals↗

Lessons to be learned: a case study approach. Finger discoloration due to silver nitrate exposure: review of uses and toxicity of silver in clinical practice.

A 29 year-old lady attended the Accident and Emergency Department of a District General Hospital complaining of increasing black discoloration of the tip of her left middle finger; the appearance resembled that of gangrene. However, it was established that she had been applying silver nitrate to her finger, as prescribed by her general practitioner for the treatment of a small granuloma. Hence, the true diagnosis was of localised tissue necrosis, secondary to application of the silver nitrate sticks. On early discontinuation of the therapy, there was complete recovery. In consequence, it is recommended that the practice of unsupervised local application of silver nitrate to the fingers should be discontinued. Opportunity is taken herein to review the uses of silver nitrate in clinical situations--and of silver in any of its many other forms--together with their respective adverse effects.

Adult↗