A component capable of binding benzo(a)pyrene was measured in plasma from cigarette smokers and nonsmokers. This plasma fraction was found to have a high specificity of binding to benzo(a)pyrene, bound benzanthracene competitively with benzo(a)pyrene, and was positively correlated (r = 0.861, p less than 0.001) with the capacity of the individual subject's lymphocytes to be induced for AHH activity in culture. An inverse correlation (r = -0.957, p less than 0.001) between the presence of the plasma component in lung cancer patients and the capacity of lung cancer patients' lymphocytes to be induced in culture is unexplained at this time. A benzo(a)pyrene-binding fraction was not found in induced or uninduced cultured lymphocytes from smokers or nonsmokers, or in homogenates of lung excisional tissue from smokers with or without primary lung cancer.
A novel technique is described for assay of aryl hydrocarbon hydroxylase in cultured human lymphocytes. The sensitivity is equal to that of previous methods, but this method requires fewer manipulations. One million lymphocytes are incubated for one hour with 2 micrograms of benzo(a)pyrene in a glass cuvette. The reaction is stopped by addition of neutral formalin and the cell suspension is alkalinized with NaOH. Fluorescence intensity of the suspension is measured with excitation at 465 nm and emission at 520 nm.
Aryl hydrocarbon hydroxylase (AHH) was induced 15-fold in Ambystoma tigrinum by intraperitoneal injection of 3-methylcholanthrene in corn oil, or 10-fold by addition of aromatic polycyclic hydrocarbons to the aqueous environment of the neotene animal. The cytochrome P-450-associated microsomal enzyme is similar to the inducible, one-gene, autosomal-dominant system typical in the laboratory mouse and man. Differences in optimal temperature for enzyme induction and activity were noted in organ culture of human and Ambystoma tissues, and ratios of benzpyrene metabolites differed between Ambystoma and Mus. The half life of enzyme activity induced in vivo was related to the excretion of hydrocarbon metabolites.
Exposure of animals to cigarette smoke causes an increase in the levels of aryl hydrocarbon hydroxylase (AHH) in various tissues. The innate capacity for enzyme induction is genetically determined but the extent of induction and AHH levels in various tissues may vary. AHH levels in human pulmonary alveolar macrophages (PAMs) were determined and AHH inducibility of cultured lymphocytes from corresponding volunteers was determined. The inducibility by 3-methylcholanthrene of cultured lymphocytes was similar in both smokers and nonsmokers, ranging from 0.2 – 4.2 fold induction. AHH levels in nonsmoker PAMs was 0 – 0.020 units and in smokers was 0.032 – 0.253 units. The correlation of AHH activity in PAMs with lymphocyte inducibility was significant in both nonsmokers and smokers. The regression of AHH in PAMs as compared with AHH inducibility in lymphocytes was 8.5 fold higher in smokers than nonsmokers, reflecting the induction of AHH in PAMs by smoking.
Summary Induction of aryl hydrocarbon hydroxylase in cultured human lymphocytes by 3-methylcholanthrene was determined for 103 healthy unrelated adults. The ratio of 3-methylcholanthrene-treated to control cells, a measure of induction, ranged from 1.4 to 5.6 among this population, and the value for each individual was constant under different culture conditions and was highly reproducible. At least two groups can be identified with respect to extent of induction. The results suggest that the capacity for aryl hydrocarbon hydroxylase induction in man is genetically determined. Implications for susceptibility to chemical carcinogenesis are discussed.
Previous studies have implicated the reticuloendothelial cells of the liver in certain aspects of steroid metabolism. The similarity in the metabolism of steroids and polycyclic hydrocarbons suggested that the nonparenchymal cells possibly play a role in these areas. The present study presents evidence that at least one of the microsomal NADPH-requirig enzymes, benzpyrene hydroxylase, is present in nonparenchymal cells and, furthermore, is "inducible." In adult rats treated with 3-methylcholanthrene or beta-naphthoflavone, the nonparenchymal cells exhibited increases in benzpyrene hydroxylase activity of 17-fold and five-fold, respectively. Treatment with phenobarbital resulted in only a slight increase in enzyme activity. Enzyme activity in parenchymal cells under similar conditions was increased sixfold and fivefold by 3-methylcholanthrene and beta-naphthoflavone, respectively, but not by phenobarbital.