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A single-dose protocol for azaserine initiation of pancreatic carcinogenesis in the rat
Abstract:
Previously, the induction of pancreatic carcinogenesis in the rat using azaserine has involved a multiple-dose treatment protocol. The objective of the present study was to determine the effect of multiple azaserine treatments on pancreatic DNA synthesis and to develop a protocol for a single-dose initiation of pancreatic carcinogenesis by azaserine in the rat. Pancreatic DNA synthesis in young rats, which was determined by measuring the amount of [3H]-thymidine incorporation into DNA, was found to be elevated at 4.3 weeks of age and to decrease to a baseline level by 6.3 weeks. Treatment of 4-week-old rats with azaserine resulted in a dose-dependent inhibition of [3H]-thymidine incorporation into both pancreatic and liver DNA. Maximum inhibition was seen at 10 mg/kg body weight. This inhibition was followed by a gradual return of incorporation to normal values over a 48 h period. One week following pretreatment with four weekly injections of azaserine at 30 mg/kg, [3H]-thymidine incorporation into pancreatic and liver DNA was significantly elevated, suggesting that multiple injection protocols caused enhanced DNA synthesis which could have a co-carcinogenic and/or promotional effect. Single-doses of azaserine (10, 30 and 60 mg/kg) given at 7 weeks of age caused the appearance of more atypical acinar cell nodules (AACN) than when given at 5 weeks of age. The most effective dose was 30 mg/kg. Using alkaline elution, we determined that this response was due to the occurrence of more DNA damage in the 7-week-old animals. Thus, these results demonstrate a rationale for the use of single-dose initiation protocols in the pancreas. An effective single-dose protocol for induction of AACN in azaserine-treated rats fed semi-synthetic diet is presented.
Insights
This study developed a single-dose azaserine protocol for rat pancreatic cancer induction. A single dose at 7 weeks old proved more effective than multiple doses for initiating pancreatic carcinogenesis.
Area of Science:
- Carcinogenesis
- Molecular Biology
- Toxicology
Background:
- Pancreatic carcinogenesis induction in rats typically uses multiple azaserine doses.
- The effect of azaserine on pancreatic DNA synthesis requires further investigation.
- Developing a single-dose protocol is crucial for efficient cancer induction models.
Purpose of the Study:
- To investigate the impact of multiple azaserine treatments on pancreatic DNA synthesis.
- To establish a single-dose azaserine protocol for initiating pancreatic carcinogenesis in rats.
- To determine the optimal age and dosage for single-dose induction.
Main Methods:
- Measuring [3H]-thymidine incorporation to assess pancreatic DNA synthesis in rats.
- Administering varying doses of azaserine to rats of different ages (5 and 7 weeks).
- Utilizing alkaline elution to quantify DNA damage.
Main Results:
- Azaserine treatment inhibited DNA synthesis in a dose-dependent manner, with maximum inhibition at 10 mg/kg.
- Multiple azaserine injections led to significantly elevated DNA synthesis one week post-treatment.
- A single azaserine dose of 30 mg/kg at 7 weeks of age was most effective in inducing atypical acinar cell nodules (AACN).
- Increased DNA damage was observed in 7-week-old rats compared to 5-week-old rats following single azaserine doses.
Conclusions:
- Single-dose azaserine protocols are effective for initiating pancreatic carcinogenesis in rats.
- Administering azaserine at 7 weeks of age enhances DNA damage and subsequent AACN formation.
- The study presents an effective single-dose protocol for azaserine-induced pancreatic carcinogenesis in rats.