A Review of Stable Isotope Labeling and Mass Spectrometry Methods to Distinguish Exogenous from Endogenous DNA
Kun Lu1, Yun-Chung Hsiao1, Chih-Wei Liu1
1Department of Environmental Sciences and Engineering, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, United States.
Abstract:
Cancer remains the second most frequent cause of death in human populations worldwide, which has been reflected in the emphasis placed on management of risk from environmental chemicals considered to be potential human carcinogens. The formation of DNA adducts has been considered as one of the key events of cancer, and persistence and/or failure of repair of these adducts may lead to mutation, thus initiating cancer. Some chemical carcinogens can produce DNA adducts, and DNA adducts have been used as biomarkers of exposure. However, DNA adducts of various types are also produced endogenously in the course of normal metabolism. Since both endogenous physiological processes and exogenous exposure to xenobiotics can cause DNA adducts, the differentiation of the sources of DNA adducts can be highly informative for cancer risk assessment. This review summarizes a highly applicable methodology, termed stable isotope labeling and mass spectrometry (SILMS), that is superior to previous methods, as it not only provides absolute quantitation of DNA adducts but also differentiates the exogenous and endogenous origins of DNA adducts. SILMS uses stable isotope-labeled substances for exposure, followed by DNA adduct measurement with highly sensitive mass spectrometry. Herein, the utilities and advantage of SILMS have been demonstrated by the rich data sets generated over the last two decades in improving the risk assessment of chemicals with DNA adducts being induced by both endogenous and exogenous sources, such as formaldehyde, vinyl acetate, vinyl chloride, and ethylene oxide.
Insights
Stable isotope labeling and mass spectrometry (SILMS) accurately quantifies DNA adducts and distinguishes their endogenous or exogenous origins. This method enhances cancer risk assessment for environmental chemicals.
Area of Science:
- Environmental Health
- Toxicology
- Biomarker Development
Background:
- Cancer is a leading cause of death, with environmental chemical exposure a significant risk factor.
- DNA adducts are key events in carcinogenesis, arising from both endogenous metabolism and external exposures.
- Differentiating adduct sources is crucial for accurate cancer risk assessment.
Purpose of the Study:
- To review the stable isotope labeling and mass spectrometry (SILMS) methodology for DNA adduct analysis.
- To highlight SILMS's ability to provide absolute quantitation and differentiate adduct origins.
- To demonstrate SILMS's utility in improving chemical risk assessment.
Main Methods:
- Stable isotope-labeled substances are used for controlled exposure.
- Highly sensitive mass spectrometry is employed for precise DNA adduct measurement.
- The SILMS approach enables absolute quantitation and source differentiation.
Main Results:
- SILMS offers superior quantitation compared to previous methods.
- The technique successfully distinguishes between endogenously and exogenously derived DNA adducts.
- Extensive data over two decades validate SILMS for risk assessment.
Conclusions:
- SILMS is a powerful tool for analyzing DNA adducts.
- This methodology significantly improves the assessment of cancer risk from environmental chemicals.
- SILMS aids in understanding chemical carcinogens like formaldehyde and ethylene oxide.
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