COMPARATIVE EFFECTS OF DIETARY ADMINISTRATION OF 2(3)-TERT-BUTYL-4-HYDROXYANISOLE AND 3,5-DI-TERT-BUTYL-4-HYDROXYTOLUENE ON SEVERAL HEPATIC ENZYME-ACTIVITIES IN MICE AND RATS
- 1 January 1982
- journal article
- research article
- Vol. 42 (7) , 2609-2615
Abstract
Effects of feeding mice and rats with 2(3)-tert-butyl-4-hydroxyanisole (BHA) and 3,5-di-tert-butyl-4-hydroxytoluene (BHT), the 2 most commonly used food-additive phenolic antioxidants with known anticarcinogenic properties but with only minor differences in their chemical structures, were compared to search for common effects between the 2 agents in 2 different rodent species and then applied toward better understanding of the mechanisms involved in their protective actions. In liver microsomes of treated mice, both BHA and BHT enhanced the relative activity of aniline ring hydroxylation but decreased the relative benzo(a)pyrene monooxidase activities. However, in rats, although aniline ring hydroxylation activity was decreased by both compounds, the decrease of benzo(a)pyrene monoxidase activity was observed only with BHT. Thus, common effects could not be recognized at the microsomal mixed-function oxidase level. Contrary to expectations based on chemical structures, BHT feeding elevated the epoxide hydrolase activity to an even greater extent than that produced by BHA, especially in rats. However, enzyme activities involved in the glucuronide conjugation system (uridine diphosphate:glucuronyl transferase, uridine diphosphate:glucuronyl transferase, uridine diphosphate:glucose dehydrogenase, and quinone reductase) are all elevated by both antioxidants in both rodent species. With BHA treatment, the levels of acid-soluble thiols were increased in both rats and mice. However, with BHT, the level was increased only in mice but not in rats. Similar trends were produced for glucose-6-phosphate dehydrogenase activity, but glutathione reductase activity was increased even for BHT-treated rats. Additionally, the glutathione S-transferase activities were also increased by both antioxidant treatments and in both rodent species. Based on these results, the elevations of epoxide hydrolase activity along with the enhanced glucuronide conjugation and glutathione oxidation and reduction conjugation system enzyme activities were common to both compounds in both rodent species. This suggests their involvement in anticarcinogenic mechanisms. Increases of these detoxification enzyme activities appeared to be all designed to accelerate the elimination of administered antioxidants but, inadvertantly, conferred protective effects from xenobiotics such as carcinogens.This publication has 8 references indexed in Scilit:
- Differential effects of dietary BHA on hepatic enzyme activities and benzo[a]pyrene metabolism in male and female NMRI miceCarcinogenesis: Integrative Cancer Research, 1982
- Protective effects of butylated hydroxyanisole against the acute toxicity of monocrotaline in miceToxicology and Applied Pharmacology, 1981
- Biological fate of butylated hydroxytoluene (BHT); Binding in vitro of BHT to liver microsomes.CHEMICAL & PHARMACEUTICAL BULLETIN, 1979
- ELEVATION OF HEPATIC GLUTATHIONE S-TRANSFERASE ACTIVITIES AND PROTECTION AGAINST MUTAGENIC METABOLITES OF BENZO(A)PYRENE BY DIETARY ANTIOXIDANTS1978
- ANTI-MUTAGENIC EFFECTS OF 2(3)-TERT-BUTYL-4-HYDROXYANISOLE AND OF ANTI-MICROBIAL AGENTS1978
- LIGANDIN, GLUTATHIONE S-TRANSFERASES, AND CHEMICALLY-INDUCED HEPATOCARCINOGENESIS - REVIEW1977
- Studies on the Mechanism of Microsomal Triphosphopyridine Nucleotide-Cytochrome c ReductaseJournal of Biological Chemistry, 1965
- The metabolism of 3:5-di-tert.-butyl-4-hydroxytoluene and 3:5-di-tert.-butyl-4-hydroxybenzoic acid in the rabbitBiochemical Journal, 1961