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Biomedical subjects

A Paine

Publications and source records attributed to A Paine.

4 recordsLinked to original sources

Defining a tolerable concentration of methanol in alcoholic drinks.

Methanol, a potent toxicant in humans, occurs naturally at a low level in most alcoholic beverages without causing harm. However, illicit drinks made from "industrial methylated spirits" [5% (v/v) methanol:95% (v/v) ethanol] can cause severe and even fatal illness. Since documentation of a no-adverse-effect level for methanol is nonexistent in the literature a key question, from the public health perspective, is what is the maximum concentration of methanol in an alcoholic drink that an adult human could consume without risking toxicity due to its methanol content? Published information about methanol-intoxicated patients is reviewed and combined with findings in studies in volunteers given small doses of methanol, as well as occupational exposure limits (OELs), to indicate a tolerable ("safe") daily dose of methanol in an adult as 2 g and a toxic dose as 8 g. The simultaneous ingestion of ethanol has no appreciable effect on the proposed "safe" and "toxic" doses when considering exposure over several hours. Thus, assuming that an adult consumes 4 x 25-ml standard measures of a drink containing 40% alcohol by volume over a period of 2 h, the maximum tolerable concentration (MTC) of methanol in such a drink would be 2% (v/v) by volume. However, this value only allows a safety factor of 4 to cover variation in the volume consumed and for the effects of malnutrition (i.e., folate deficiency), ill health and other personal factors (i.e., ethnicity). In contrast, the current EU general limit for naturally occurring methanol of 10 g methanol/l ethanol [which equates to 0.4% (v/v) methanol at 40% alcohol] provides a greater margin of safety.

Alcoholic Beverages↗

Anti-leishmanial activity of neolignans from Virola species and synthetic analogues.

Surinamensin, a neolignan isolated from Virola surinamensis, 3,4,5-trimethoxy-8-[2',6'-dimethoxy-4'-(E)-propenylphenoxy]-phenylpropane, a neolignan isolated from Virola pavonis, and 25 of its synthetic analogues or correlated substances with ether linkages and their corresponding C-8 sulphur and nitrogen analogues, were tested for activity against Leishmania donovani amastigotes and promastigotes in vitro. Some were active against L. donovani promastigotes at 30 microM but inactive against intracellular amastigotes. The natural neolignan from V. pavonis was active against promastigotes at 100 microM. The highest selective activity was found in those compounds with sulphur bridges. The beta-ketosulfide (3,4-dimethoxy)-8-(4'-methylthiophenoxy)-propiophenone produced 42% inhibition of L. donovani amastigotes in the liver of BALB/c mice at 100 mg/kg given once daily for five consecutive days (P>0.05).

Animals↗

Biochemical mechanisms and morphological selectivity in hepatotoxicity: studies in cultures of hepatic-parenchymal and non-parenchymal cells.

Primary cultures of rat-liver parenchymal and non-parenchymal cells have been used to study some of the factors influencing the selective injury that can be caused in vivo by the direct-acting hepatotoxins beryllium, cadmium, ricin and modeccin to either liver-parenchymal or non-parenchymal cells. The studies on beryllium and cadmium compounds show that it is necessary to consider the chemical species generated in the culture medium, since particulate or colloidal forms are taken up predominantly by non-parenchymal cells whereas soluble forms more readily enter parenchymal cells. The studies with the glycoproteins ricin and modeccin illustrate the importance in their selective cell toxicity of specific membrane-recognition processes present in liver cells, particularly uptake in non-parenchymal cells through interactions with terminal mannose oligosaccharides in the toxins.

Animals↗