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Biomedical subjects

L Fishbein

Publications and source records attributed to L Fishbein.

At least 37 records · Page 2Linked to original sources

An overview of environmental and toxicological aspects of aromatic hydrocarbons. II. Toluene.

The salient aspects of the exposure to toluene were reviewed via an initial examination of the production, use, occurrence and disposition of toluene, as well as populations at potential risk. Special note should be taken as to the increasing use of toluene as a "safe" replacement for benzene in solvent applications and its increasing use in many consumer products. There is a broad potential for exposure by industrial workers and the general public (via vehicle exhausts and consumer products). The effects on humans and animals as well as the genetic effects of toluene were also reviewed following an initial consideration for its absorption and elimination. The narcotic and neurotoxic properties of toluene represent the main recognized health hazards to humans.

Animals

An overview of environmental and toxicological aspects of aromatic hydrocarbons. IV. Ethylbenzene.

The solvent aspects of exposure to ethylbenzene are reviewed via an initial examination of the production, use, occurrence, and disposition of ethylbenzene as well as populations potentially at risk. While occupational exposure to ethylbenzene during its production and subsequent conversion to styrene is believed to be minimal, the broader occupational exposure to ethylbenzene during the production and use of 'mixed xylenes' is another area of concern. The general public can be exposed to ethylbenzene in ambient air as a result of its occurrence in motor vehicle exhaust. Additional exposure can arise in indoor environments, mostly from passive exposure to cigarette smoke. Ethylbenzene is primarily an irritant to the skin and mucous membranes and possesses narcotic properties at high concentrations.

Animals

Potential halogenated industrial carcinogenic and mutagenic chemicals. I. Halogenated unsaturated hydrocarbons.

The halogenated aliphatic hydrocarbons represent one of the most important categories of industrial chemicals from a consideration of use categories, production volume, environmental and toxicological considerations, and hence most importantly, potential population risk. The major unsaturated hydrocarbons reviewed, primarily in terms of their synthesis, utility, stability, distribution and levels of exposure as well as their reactivity, carcinogenicity, mutagenicity and metabolism, include: vinyl chloride, vinylidene chloride, trichloroethylene, perchloroethylene, chloroprene, trans-1,4-dichlorobutene, hexachlorobutadiene and allyl chloride.

Adult

Potential halogenated industrial carcinogenic and mutagenic chemicals. II. Halogenated saturated hydrocarbons.

The halogenated saturated hydrocarbons analogously to the previously considered halogenated unsaturated hydrocarbons (Part I) possess considerable utility in a broad spectrum of applications including; solvents, dry-cleaning fluids, refrigerants, fumigants, degreasing agents, propellants and intermediates in the production of other chemicals, textiles and plastics. Methyl chloride, methylene chloride, chloroform, carbon tetrachloride, methyl chloroform, 1,1,2-trichloroethane, hexachloroethane, ethyl chloride and fluorocarbons were reviewed principally in terms of their synthesis (or occurrence), areas of application, stability, distribution, reactivity, levels of exposure, populations at risk, carcinogenicity, mutagenicity and metabolism.

Animals

Overview of some aspects of occurrence, formation and analysis of nitrosamines.

This review principally addresses a number of aspects of the occurrence and formation of the nitrosamines, highlighting principal areas of potential concern ranging from the spectrum of nitrosatable moieties found in the environment (e.g., secondary and tertiary amines, quaternary ammonium compounds, ureas, carbamates and guanidines), specific examples of nitrosamines found in food, alcoholic beverages, feed (and their significance for carcinogenesis bioassays), air and water. The factors influencing in vitro and in vivo nitrosation and the evidence for the latter in man are also discussed. Additionally, germane areas of the analysis of nitrosamines are reviewed with a focus on the major areas of concern and requirements of extreme sensitivity and selectivity in addition to the problems of artifacts in the analytical procedures.

Air Pollution

Potential halogenated industrial carcinogenic and mutagenic chemicals. III. Alkane halides, alkanols and ethers.

A variety of alkane halides, alkanols and ethers, analogous to the previously considered halogenated unsaturated (Part I) and saturated hydrocarbons (Part II) possess significant utility in a broad spectrum of applications including: solvents, fumigants, propellants and intermediates in the production of other chemicals, textiles, plastics and ion-exchange resins. Ethylene dichloride and dibromide, propylene dichloride; dibromochloropropane; 2-chloroethanol; 1-chloro-2-propanol; 2,3-dibromo-1-propanol; bis(chloromethyl)-, chloromethyl methyl-, bis(2-chloroisopropyl)-, and bis(2-chloroethyl-ethers were reviewed principally in terms of their synthesis, areas of utility, stability, distribution, reactivity, levels of exposure, population at risk, metabolism, carcinogenicity and mutagenicity.

Alcohols

Potential halogenated industrial carcinogenic and mutagenic chemicals. IV. Halogenated aryl derivatives.

A variety of halogenated aryl derivatives possess significant activity as solvents for pesticides, heat transfer agents, pesticide intermediates, additives for rubber products, intermediates in organic synthesis and as insect repellants and deodorants. Ortho- and para-dichlorobenzenes; 1,2,4-trichloro- and hexachlorobenzene, as well as bromobenzenes and benzylchloride were reviewed principally in terms of their synthesis, areas of utility, stability, distribution, reactivity, levels of exposure, populations at risk, metabolism, carcinogenicity and mutagenicity.

Animals

Overview of potential mutagenic problems posed by some pesticides and their trace impurities.

This review principally addresses a number of aspects of usage of pesticides as well as populations at potential risk and attempts to highlight categories of pesticides whose structures or those of their metabolites and/or trace impurities, degradation and transformation products suggest an a priori mutagenic and/or carcinogenic risk. The pesticides considered include: DDT, hexachlorobenzene (HCB), 2,4,5-T, pentachlorophenol, and various herbicidal precursors (e.g., carbamates, triazines) of nitrosamines and nitroso derivatives. Structural features of a number of halo-unsaturated pesticides (e.g., dichloropropenes) were also reviewed from a viewpoint of contrasting their potential mutagenicity with that of vinyl chloride and vinylidene chloride. Additionally the mutagenicity of the organophosphorus pesticide Trichlorophon is contrasted with that of its degradation products.

Animals

Industrial mutagens and potential mutagens I. Halogenated aliphatic derivatives.

The halogenated aliphatic hydrocarbons represent one of the most important categories of industrial chemicals from a consideration of volume, use categories, environmental and toxicological considerations and hence most importantly, potential population risk. The major halocarbons reviewed, primarily in terms of their occurrence, utility, stability, distribution, and levels of exposure as well as their metabolism, carcinogenicity and mutagenicity included: vinylchloride, vinylidene chloride, trichloroethylene, perchloroethylene, ethylene dichloride, ethylene dibromide, chloroprene, chloroform, carbon tetrachloride, fluorocarbons (trichlorofluoromethane and dichlorodifluoromethane), epichlorohydrin, halohydrins (2-chloro- and 2-bromoethanol) and haloethers (bis(chloromethyl); chloromethyl'-methyl; bis(2-chloroethyl)-and bis(2-chloroisopropyl)ether. In many instances, data were not available to assess world production, populations at risk and degrees of exposure. With the exception of vinylchloride, vinylidene chloride, epichlorohydrin and 2-halo ethanols, there is an acknowledged paucity of definitive mutagenicity data concerning the majority of halogenated hydrocarbons. Their ubiquitous distribution, and in a number of cases, their carcinogenicity both in man and animals, dictates the urgent need to more exhaustively investigate their potential mutagenicity.

Carbon Tetrachloride

Environmental health aspects of fungicides. I. Dithiocarbamtes.

A variety of dithiocarbamate fungicides, as well as their principal trace impurities, and metabolic or chemical degradation products are reviewed. Major focus is on their chemical and toxicological features (primarily carcinogenic, teratogenic, and mutagenic), use patterns, and residues. The compounds discussed include (1) ethylene bis(dithiocarbamated) (maneb, zineb, nabam), (2) dithiocarbamates (febram, ziram), and ("3) thiuram disulfate (thiram) and ethylene thiourea.

Animals

Environmental metallic carcinogens: an overview of exposure levels.

Exposure levels of the principal carcinogenic and potential carcinogenic metal and mettalloid pollutants in the environment (e.g., arsenic, beryllium, chromium, nickel, cadmium, and lead) are primarily reviewed with emphasis on their environmental sources both natural and manmade. There is a general paucity of definitive information concerning aspects of material balance and chemical transformations of these elements in various chemical forms in the environment, primarily the atmosphere. Estimates of both exposure levels and risk to populations other than industrial workers of the above metals have been in most instances quite difficult to obtain and generally speculative. The trend for the immediate future appears to be of greater exposure to these metals not only as a result of generally increased usage patterns, but also because of prospective enhanced use of fossil fuels for space heating and electricity generation.

Adult

Potential hazards of fumigant residues.

A spectrum of fumigants (primarily ethylene dibromide, 1,2-dibromo-3-chloropropane, ethylene oxide, symdibromotetetrachloroethane, 1,3-dichloropropene, dichlorovos, carbon tetrachloride, methyl bromide) as well as their degradation products in foodstuffs and soil have been examined mainly in regard to the potential mutagenicity of their residues.

Alkylating Agents

Analysis of insecticide synergists.

The utility of a variety of chromatographic procedures (GLC, TLC, and GLC/MS) has been described for the determination of a variety of methylene dioxyphenyl insecticide synergists. Particular focus was placed on chromatographic aspects of the principal synergist, piperonyl butoxide, in relation to its trace impurities, determination in formulations, metabolism, residues, and stability.

Chromatography