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Inhibitory effect of toluene on tumor promotion in mouse skin
Abstract:
In the two-stage mouse model for skin tumorigenesis with phorbol-12-myristate-13-acetate (PMA) as promoter, topical application of 40 microliters of toluene 2X/week at the initiation/promotion site (the back) reduced the average number of tumors/mouse (ANT/M) to approximately one-fourth that of controls. Control procedure involved initiation of C3H mice with benzo[a]pyrene (BaP) and CD-1 mice with 7,12-dimethylbenz[a]anthracene (DMBA) followed by promotion with from 1 to 5 micrograms PMA in 40 microliters acetone 2X/week. Forty microliters of toluene 2X/week per se was a weak promoter (6-13% of control ANT/M), and produced mild skin irritation at the application site but behavior and body weights were normal. The toluene inhibition of tumorigenesis was not a direct chemical action on PMA since similar effects occurred whether toluene was the vehicle for PMA or whether it was applied up to 1 day before PMA (i.e., prepromotion). Prepromotion with acetone had no effect on tumorigenesis, substantiating its use as control vehicle and suggesting that the toluene inhibition was a specific tissue reaction. The inhibitory effect appeared to be on PMA promotion rather than on initiation since toluene and acetone produced similar numbers of tumors when used as the vehicle for BaP or DMBA in two-stage or BaP in single-stage trials. The inhibition was not permanent since tumorigenesis returned to control rates 2-3 weeks after prepromotion with toluene ceased but promotion with PMA in acetone continued. Toluene may be unique among reported promotion inhibitors in that it is a widely used commercial chemical which sometimes serves as a vehicle in cancer-screening trials. Since its metabolism is reasonably well defined, it may be of value in exploring further the process of tumor promotion.
Insights
Topical toluene application significantly reduced skin tumor development in mice by inhibiting tumor promotion. This effect was specific to toluene and not permanent, suggesting potential for further research into cancer promotion processes.
Area of Science:
- Chemical carcinogenesis
- Toxicology
- Dermatology
Background:
- Skin tumorigenesis is a multi-stage process involving initiation and promotion.
- Phorbol-12-myristate-13-acetate (PMA) is a commonly used promoter in experimental skin cancer models.
- Understanding chemical interactions in carcinogenesis is crucial for developing preventative strategies.
Purpose of the Study:
- To investigate the effect of toluene on skin tumorigenesis in a two-stage mouse model.
- To determine if toluene acts as an inhibitor of tumor promotion by PMA.
- To explore the mechanism and characteristics of toluene's inhibitory effect.
Main Methods:
- A two-stage mouse model for skin tumorigenesis was employed, using benzo[a]pyrene (BaP) or 7,12-dimethylbenz[a]anthracene (DMBA) for initiation.
- Phorbol-12-myristate-13-acetate (PMA) was used as the promoter.
- Toluene was applied topically at the initiation/promotion site, either as a vehicle or prior to PMA application.
Main Results:
- Toluene significantly reduced the average number of tumors per mouse (ANT/M) to approximately one-fourth of control levels.
- Toluene itself showed weak promoting activity and caused mild skin irritation.
- The inhibitory effect was specific to promotion, not initiation, and was not permanent, with tumor rates returning to control levels after toluene cessation.
Conclusions:
- Toluene acts as an inhibitor of PMA-induced skin tumor promotion in mice.
- The inhibitory effect appears to be a specific tissue reaction to toluene, not a direct chemical interaction with PMA.
- Toluene's properties make it a potentially valuable tool for studying tumor promotion mechanisms.

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