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[Embryotoxic effect of ethanol and its biotransformation products in cultures of postimplantation rat embryos].

Popov Vb, Vaĭsman Bl, Puchkov Vf, Ignat'eva Tv

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Abstract

A study was made of the effect of ethanol (6.5-108 mM) and its immediate metabolite, acetaldehyde (4.5 microM-45 mM) on 9.5-day-old rat embryos cultivated in vitro. Biotransformation of the nontoxic concentration of ethanol (17 mM) to teratogenic products was made by addition to the culture medium of a soluble fraction of the rat liver (0.2-0.55 mg protein/ml), NAD (0.25 mM) and sodium pyruvate (2.3 mM). Malformations obtained after biotransformation of ethanol were similar to those obtained after direct action of acetaldehyde. The roles of acetaldehyde and ethanol in the etiology of fetal alcoholic injury are discussed.

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What this paper is about

A study was made of the effect of ethanol (6.5-108 mM) and its immediate metabolite, acetaldehyde (4.5 microM-45 mM) on 9.5-day-old rat embryos cultivated in vitro. Biotransformation of the nontoxic concentration of ethanol (17 mM) to teratogenic products was made by addition to the culture medium of a soluble fraction of the rat liver (0.2-0.55 mg protein/ml), NAD (0.25 mM) and sodium pyruvate (2.3 mM). Malformations obtained after biotransformation of ethanol were similar to those obtained after direct action of acetaldehyde. The roles of acetaldehyde and ethanol in the etiology of fetal alcoholic injury are discussed.

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Available abstract

A study was made of the effect of ethanol (6.5-108 mM) and its immediate metabolite, acetaldehyde (4.5 microM-45 mM) on 9.5-day-old rat embryos cultivated in vitro. Biotransformation of the nontoxic concentration of ethanol (17 mM) to teratogenic products was made by addition to the culture medium of a soluble fraction of the rat liver (0.2-0.55 mg protein/ml), NAD (0.25 mM) and sodium pyruvate (2.3 mM). Malformations obtained after biotransformation of ethanol were similar to those obtained after direct action of acetaldehyde. The roles of acetaldehyde and ethanol in the etiology of fetal alcoholic injury are discussed.

Key concepts: Acetaldehyde, Biotransformation, Ethanol, Metabolite, Chemistry, Aldehyde dehydrogenase, Ethanol metabolism, Alcohol

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[Embryotoxic effect of ethanol and its biotransformation products in cultures of postimplantation rat embryos]. — Research Paper | ScholarLens