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Biomedical subjects

M S Masri

Publications and source records attributed to M S Masri.

At least 19 recordsLinked to original sources

Protein reactions with methyl and ethyl vinyl sulfones.

Disulfide bonds of bovine serum albumin and wool were reduced by n-tributylphosphine to sulfhydryl groups that were then modified by methyl or ethyl vinyl sulfone in a nucleophilic addition reaction to S-(beta-ethylsulfonylmethyl)-L-cysteine and S(beta-ethylsulfonylethyl)-L-cysteine, respectively. The reductive alkylation was carried out either simultaneously, with both the reducing and alkylating agents present in the reaction mixture, or sequentially, with the reduced proteins first isolated before alkylation. Amino acid analysis studies showed that authentic, synthetic S-(beta-ethylsulfonylethyl)-L-cysteine eluted as a well-resolved peak after serine but that the peak associated with the corresponding methyl derivative overlapped the corresponding peak due to threonine. The extent of alkylation of the sulfhydryl groups of cysteine, epsilon-NH2 of lysine, and NH groups of the imidazole ring of histidine was also measured by amino acid analysis. The results show that alkyl vinyl sulfones have a strong chemical affinity for protein functional groups.

Alkylating Agents

Chlorinating poultry chiller water: the generation of mutagens and water re-use.

The purpose of this study was to assess the potential generation of mutagens by chlorination of water used to chill poultry carcasses. Unchlorinated chiller water from a nearby poultry processing plant was chlorinated to different levels in the laboratory. Residues of dichloromethane extracts of the treated water were tested for mutagenicity with the Ames Salmonella reverse mutation system. The rate of disappearance of added chlorine from the chiller water was also monitored using ferrous ammonium sulphate titration. The results showed a fast rate of disappearance of added free chlorine, only some of which reappeared as combined available chlorine. No mutagenic activity could be demonstrated at chlorination levels up to 100 ppm, but activity rose above 250 ppm, and a dose-response relationship was demonstrated. The significance of these findings for poultry processing is discussed.

Animals

Defenses against aflatoxin carcinogenesis in humans.

Aspects of work on aflatoxin mainly from the author's studies are discussed, emphasizing procedures, strategies and insights related to protection against aflatoxin carcinogenesis in man due to transmission in the food chain. Five lines of defense are discussed. First, is the interfacing of the farm animal as a biologic filter between contaminated crop (feed) and human food derived from animal products. Second, is chemical detoxification of meals with ammonia and of contaminated milk by ultraviolet light. Third is prevention of mold growth and aflatoxin elaboration with ammonium carbonate for potential application during storage and drying of agricultural products. Fourth, is the development of ultrasensitive analytical methods for aflatoxins with structural proof of identity. And, fifth are natural defenses related to the role of hydroxylation of mammalian metabolism in detoxification, especially the pathway to aflatoxin Q1, a major detoxifying mechanism in primates, and the epoxidation pathway and its relation to prevention of aflatoxin residue transmission into edible tissues.

Aflatoxins

Carcinogenic response of rainbow trout (Salmo gairdneri) to aflatoxin Q1 and synergistic effect of cyclopropenoid fatty acids.

Aflatoxin Q1 (AFQ1), the major microsomal biotransformation product of aflatoxin B1 (AFB1) formed in vitro by monkey and human liver preparations, was fed to rainbow trout (Salmo gairdneri) in a semipurified diet at levels of 20 ppb for 1 year and 100 ppb for 10 months. As a test for carcinogenicity in hatched fish, it was also used at 1 ppm in a water solution and exposed for 1 hour to fertile trout eggs. The 20-ppb dietary exposure and 1-ppm egg exposure failed to elicit a carcinogenic response; however, the 100-ppb dietary exposure produced a 10.6% incidence of hepatocellular carcinomas at the end of 1 year. Administration of 50 ppm methyl sterculate, a cyclopropenoid fatty acid, in combination with 100 ppb AFQ1 resulted in a synergistic tumor response similar to that previously noted with administration of AFB1 plus aflatoxin M1. The tumor incidence was 89.1% in the fish on the combined diet. These results indicated that AFQ1 was approximately 100 times less carcinogenic than was AFB1. This comparison of carcinogenic potencies was very similar to the comparison of the relative mutagenicities of the two compounds in the Ames bacterial mutagen assay system.

Aflatoxins