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T H Connor

Publications and source records attributed to T H Connor.

At least 37 records · Page 2Linked to original sources

Stability and inactivation of mutagenic drugs and their metabolites in the urine of patients administered antineoplastic therapy.

Urine samples from patients administered mutagenic antineoplastic drugs are mutagenic in the Ames assay, and hence may pose a genotoxic hazard to hospital personnel or family members caring for the patient. The urine samples in the present study were tested for mutagenicity in several strains of Salmonella typhimurium that were uvr negative (TA98, TA100) or positive (TA102, UTH8413, UTH8414), and were analyzed for the presence of drugs and their metabolites using high-pressure liquid chromatography (HPLC). Urine samples from cancer patients were kept at room temperature and their mutagenicity as well as the chemical stability of the drugs was tested for a period of 14 days. It was observed that, in general, the urine remained mutagenic for the 14-day period while the parent compound degraded within the first seven days. An exception was cisplatin, which was chemically stable as platinum, but the urine decreased in mutagenicity with time. This decrease was probably the result of ligand exchange with the platinum. Inactivation methods were developed to reduce the genotoxic hazard posed by the mutagenic compounds in the urine. Cisplatin was inactivated by complexing with sodium diethyldithiocarbamate (DDTC). Oxidation of urine containing mitomycin C and doxorubicin (sodium thiosulfate must be added to urine containing doxorubicin) with 5.25% sodium hypochlorite solution (bleach) results in mutagenic inactivation. Urine containing cyclophosphamide and its metabolites was oxidized with alkaline potassium permaganate and the active degradation products trapped with sodium thiosulfate. Both chemical and mutagenic assays are necessary to determine the reduction of risk. Methods of inactivation of mutagenic urine developed in this study are both effective and practical for the reduction of exposure to genotoxic hazards.

Antineoplastic Agents↗

Assessment of diphenylcyclopropenone for photochemically induced mutagenicity in the Ames assay.

The photochemical conversion of diphenylcyclopropenone to diphenylacetylene has recently been reported. Diphenylcyclopropenone is used in the treatment of alopecia areata and is nonmutagenic in a limited Ames assay. We examined diphenylcyclopropenone and diphenylacetylene, as well as synthetic precursors of diphenylcyclopropenone--dibenzylketone and alpha,alpha'-dibromodibenzylketone--for mutagenicity against TA100, TA98, TA102, UTH8413, and UTH8414. All compounds were nonmutagenic except alpha,alpha'-dibromodibenzylketone, which was a potent mutagen in TA100 with and without S-9 activation. The effect of photochemical activation of diphenylcyclopropenone in the presence of bacteria demonstrated mutagenicity in UTH8413 (two times background) at 10 micrograms/plate with S-9 microsomal activation. 8-Methoxypsoralen produces a mutagenic response in TA102 at 0.1 microgram/plate with 60 seconds of exposure to 350 nm light. In vitro photochemically activated Ames assay with S-9 microsomal fraction may enhance the trapping of short-lived photochemically produced high-energy mutagenic intermediates. This technique offers exciting opportunities to trap high-energy intermediates that may play an important role in mutagenesis. This method can be applied to a variety of topically applied dermatologic agents, potentially subjected to photochemical changes in normal use.

Cyclopropanes↗

Genotoxic evaluation of the offgassing products of particle board.

It has been recognized that people are spending more time indoors and that pollutants are being found in elevated concentrations in this environment. Because the constituents of indoor air pollution can vary relative to a large number of factors, the nature of the indoor environment is extremely difficult to study. Of the materials used in construction of buildings which can elute complex mixtures of organic compounds, products such as particle board, plywood and insulation are known to release formaldehyde into the indoor environment. We have employed a modification of the Ames Salmonella/microsome assay with both DNA repair-proficient and -deficient strains and determined that one such material, particle board, emitted mutagenic and genotoxic substances. The materials offgassing from the particle board demonstrated a dose-related response in both mutagenicity and toxicity. It was also observed that incubation at 37 degrees C produced a decrease in both endpoints which was related to time of incubation. In addition, detectable amounts of twelve other organic compounds were identified as offgassing from the incubated particle board.

Animals↗

Genotoxic classification of anticancer drugs.

The effects of bacterial DNA excision repair on the mutagenic and lethal actions of 17 injectable anticancer drugs have been used to classify them into three levels of potential risk to medical personnel who are involved in their preparation and administration.

Antineoplastic Agents↗

Absence of mutagenicity in the urine of autopsy service workers exposed to formaldehyde: factors influencing mutagenicity testing of urine.

Hospital autopsy service workers and a matched control group were studied using a battery of genetic monitoring tests performed on samples of blood, semen and urine. The results of the analysis of urine for mutagens are described in this report. The participants in the study were matched with the controls for sex, age and their use of alcohol, tobacco and marijuana. Information was collected on general health, usage of medications and any exposure which might affect the outcome of the study. Individuals were sampled three times at approximately two month intervals. Time weighed average exposures to formaldehyde in the work areas were estimated at 0.61 to 1.32 ppm. Additionally, studies were carried out which examined various parameters affecting the testing of human urine samples for mutagenicity. No increase in mutagenicity was seen in the autopsy workers as compared to the control group. One individual who was receiving metronidazole and one control who smoked two packs of cigarettes per day had significantly mutagenic urine. A large proportion of the exposed individuals had toxic urine while only two of the control individuals had similar toxic urine. The material responsible for the toxicity has been isolated and purified but does not appear to be related to the formaldehyde exposure. Studies on the parameters affecting mutagenicity testing of urine with Salmonella typhimurium suggest that in the plate incorporation assay, TA100, but not TA98, can be affected by exogenous histidine. Furthermore, with the conditions employed in this study, 3 to 4% of labeled histidine added to urine samples was retained by the XAD-2 and subsequently eluted in the urine concentrate. Urinary histidine levels of unconcentrated samples ranged from 112 to 2614 nmol per ml (mean 994 nmol per ml) and the amount of histidine present correlated with the corresponding increases in histidine revertants with strain TA100.

Adult↗

Genotoxicity of organic chemicals frequently found in the air of mobile homes.

The 19 chemicals most commonly detected in a study of mobile homes in Texas were tested for mutagenicity using a battery of bacterial test strains; the literature was searched to obtain additional information concerning the mutagenicity and carcinogenicity of these chemicals. Formaldehyde was found to be present in 100% of the mobile homes and at the highest mean concentration (167 ppb). The remaining organic chemicals were all present at much lower mean concentrations (less than 10 ppb) and at varying frequencies (2-95%). Of the 19 chemicals tested for mutagenicity, only formaldehyde gave a positive response. A review of the literature revealed that 4 of the chemicals tested, formaldehyde, styrene, tetrachloroethylene and benzene, have been shown to be animal and/or human carcinogens. Thus, formaldehyde is not the only genotoxin present in the air of mobile homes but because it was present in the air of all mobile homes tested at much higher concentrations than the other organic chemicals, formaldehyde should be considered one of the major potential genotoxic hazards present in the air of mobile homes.

Air Pollutants↗

Permeability of four disposable protective-clothing materials to seven antineoplastic drugs.

The permeability of four types of protective-clothing material to seven injectable antineoplastic drugs was studied. The protective materials tested were Saranex-laminated Tyvek, polyethylene-coated Tyvek, nonporous Tyvek, and Kaycel. Circles 6 cm in diameter were cut from a single garment of each material and exposed to each drug. Permeation of cisplatin, etoposide, mitomycin, cyclophosphamide, carmustine, and thiotepa was assessed by the Salmonella mutagenicity test after four hours of exposure. Doxorubicin permeation was assessed qualitatively over an eight-hour exposure period using a coloration assay. Saranex-laminated Tyvek was not permeable under the test conditions. Polyethylene-coated Tyvek was slightly permeable to thiotepa and carmustine. Nonporous Tyvek was permeable to all seven drugs, and the Kaycel garment was permeable to all of the drugs except etoposide. In no instance did permeation exceed 3.3% of the applied drug dose. Saranex-laminated Tyvek was the most protective of the barrier garments, followed closely in effectiveness by the polyethylene-coated Tyvek. Clothing made from these two Tyvek composites would allow less air flow and, therefore, would be less comfortable to wear for extended periods. Garments made of nonporous Tyvek or Kaycel would be more comfortable, but their use should be accompanied by an awareness of their potential permeability to certain antineoplastic drugs.

Antineoplastic Agents↗

Permeability of latex and polyvinyl chloride gloves to 20 antineoplastic drugs.

Permeability of latex and polyvinyl chloride (PVC) gloves to 20 injectable antineoplastic drugs was studied. Four types of gloves were evaluated: latex surgical gloves, latex examination gloves, and PVC gloves in two thicknesses. Each glove material was exposed to each drug for 90 minutes, and permeation was tested using a mutagenicity assay. Individual fingertips of thin PVC gloves and latex surgical gloves were tested for permeability at five time points (2-30 minutes) using a doxorubicin coloration assay. All drugs permeated the thin PVC gloves. Latex surgical gloves were definitely permeable to two drugs (carmustine and thiotepa) and exhibited borderline permeability to mechlorethamine hydrochloride. The thick PVC gloves were definitely permeable to four drugs (carmustine, thiotepa, mechlorethamine hydrochloride, and daunorubicin hydrochloride) and exhibited borderline permeability to two drugs (doxorubicin and mercaptopurine). The latex examination gloves were permeable to carmustine, thiotepa, mechlorethamine hydrochloride, and cyclophosphamide. Doxorubicin permeation of individual fingertips of thin PVC gloves varied in time and amount. Doxorubicin did not permeate the latex surgical glove material, but testing with thiotepa showed that individual fingertips of this material also varied in permeability. Glove thickness was a major determinant of permeability; latex surgical gloves were the least permeable and thin PVC gloves the most permeable to the antineoplastic drugs tested. Within individual gloves and glove types, time and amount of permeation were not uniform.

Antineoplastic Agents↗

Permeability of latex and polyvinyl chloride gloves to carmustine.

Permeability of latex and polyvinyl chloride gloves to the antineoplastic agent carmustine was studied. The latex gloves were of two types: sterile surgical gloves and disposable utility gloves. Polyvinyl chloride gloves of two thicknesses (0.20 mm and 0.35 mm) were tested. Both single and double thicknesses of each material were exposed to carmustine 3.33 mg/ml in a 10% aqueous solution of ethanol, and to the solvent alone, for 5-90 minutes. Permeation of carmustine was tested using a mutagenicity assay and a chemical assay. A time-dependent increase in carmustine permeation was observed for all types of materials (both double and single thicknesses). Mean amounts of carmustine permeating single gloves at 90 minutes ranged from 53 to 86 micrograms for the mutagenicity assay and 49 to 78 micrograms for the chemical assay. Double thicknesses of glove material (especially of the thicker polyvinyl chloride) reduced the amount of drug permeation. These latex and polyvinyl chloride glove materials offer only limited protection against contact exposure to carmustine. Latex surgical gloves may be slightly less permeable than the other types tested.

Carmustine↗

The effects of excision repair and the plasmid pKM101 on the induction of his+ revertants by chemical agents in Salmonella typhimurium.

Expansion of the Ames Salmonella/microsome mutagenesis test to include plasmid pKM101-bearing, excision repair-proficient derivatives permits 1) the identification of mutagens that require both factors for activity; 2) the identification of genotoxins through the enhancement of survival by excision repair; and 3) the classification of substances according to the effects of excision repair on their mutagenesis. Class I includes substances that require excision repair to effect mutagenesis. Class II contains substances whose mutagenesis is not affected by excision repair. Class III mutagens cause premutational lesions in DNA which are readily removed by excision repair. This classification scheme is suggested as a preliminary step in making a risk estimation for a mutagen.

4-Nitroquinoline-1-oxide↗

The identification and characterization of a urinary mutagen resulting from cigarette smoke.

The urine of a cigarette smoker who excretes exceptionally mutagenic urine was analyzed for several factors affecting mutagenicity. S. typhimurium strain TA98 was always more sensitive to XAD-2 urine concentrates than TA100. With TA98, as high as 85 revertants per ml of urine were produced. It was observed that incubation with beta-glucuronidase was not required for expression of mutagenicity but that a complete S9 mix was needed to convert the material in the concentrate to the ultimate mutagenic species. TLC and HPLC separation of the XAD-2 urine concentrate resulted in the identification of trace amounts of the bladder carcinogen, 2-aminonaphthalene (beta-naphthylamine) and a considerable amount of a possible metabolite of 2-aminonaphthalene, 2-amino-7-naphthol. The identity of the compounds was confirmed by mass spectral analysis, and 2-amino-7-naphthol was shown to be a mutagen for TA100 and TA98 when activated by rat-liver S9.

Animals↗

The evaluation of mutagenicities of 19 structurally related aromatic amines and acetamides in Salmonella typhimurium TA98 and TA100.

19 aromatic amines were assayed for mutagenicity using Salmonella typhimurium strains TA98 and TA100 with and without the addition of S9 from Aroclor-1254-induced rat liver. These included: naphthalenes (1-amino-, 1-acetamido-, 2-amino-, 2-acetamido-, 1-amino-4-nitro- and 2-amino-1-nitro-), biphenyls (2-amino-, 2-acetamido-, 4-amino- and 4-acetamido-), fluorenes (2-amino- and 2-acetamido-), anthracenes (1-amino-, 1-acetamido-, 2-amino- and 2-acetamido-), 3-aminofluoranthene, 1-aminopyrene and 6-aminochrysene. None of the compounds were mutagenic when tested without S9. With S9, 15 of 19 were mutagenic for TA98 and 16 of the 19 were mutagenic for TA100. Overall, 2-aminoanthracene was the most potent mutagen. When compared to the parent amines, the respective acetamido derivatives were consistently less mutagenic.

Acetamides↗

An evaluation of the host-mediated assay and body fluid analysis. A report of the U.S. Environmental Protection Agency Gene-Tox Program.

The methodologies and status of the Host-Mediated Assay were reviewed using the published literature available up to June 1980. The Working Group reviewed 274 documents, including abstracts, research articles, review articles, and publicly available contracts and grant final reports. From this group, abstracts and reviews were rejected from critical evaluation. 77 documents were accepted and reviewed by the Working Group and the test results summarized. These selected documents yielded 208 chemicals that were evaluated in th host-mediated assay. Of these chemicals, 133 were mutagenic in this assay with one or more indicators. 76 chemicals, several of which are not considered to be carcinogenic, were not detected by any of the indicators. Of the 208 chemicals, 125 had been tested in carcinogenicity assay in rodents. 90, or 71%, of the carcinogens were detected as mutagens in the Host-Mediated Assay. In several cases, those carcinogens not detected may have been negative because of improper selection of the indicator. The Working Group concluded that the Host-Mediated Assay is an important test in mutagenicity/carcinogenicity research and that, by proper selection of protocols and indicators, valuable information can be gained that otherwise would be overlooked strict, in vitro assays.

Animals↗

The evaluation of the epoxide diluent, n-butylglycidyl ether, in a series of mutagenicity assays.

The epoxide diluent, n-butylglycidyl ether (n-BGE), was tested in vitro for mutagenicity using Salmonella typhimurium and for transforming ability in mouse embryo cells (BAlb/3T3-A31-1-13). The n-BGE produced base-pair type mutations in S typhimurium strains TA1535 and TA100. However, it failed to transform mouse embryo cells when assayed up to toxic levels. The mutagenic activity could not be detected in the urine of mice, although several doses, routes of administrations, and lengths of exposure were examined. Orally administered n-BGE did not produce any increase in micronuclei in mice, but when the diluent was administered intraperitoneally, either one or two times, dose-related increases in the number of micronuclei were observed.

Animals↗