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32 P-Postlabelling analysis of DNA from all six organs of BaP-treated mice (Experiment 1) showed a single adduct spot on TLC (Figure 1A). The radioactivity in this spot co-chromatographed with that produced by the standard benzo[a]pyrene diol-epoxide (BPDE)-modified DNA []. Carcinogen-DNA adducts are addition products formed by covalent binding of all or part of a carcinogen molecule to chemical moieties in DNA; adducts are formed when an activated chemical species (electrophilic, positively charged metabolite) binds covalently to negatively charged moieties in DNA. As DNA adduct formation represents an integral phase in the chemical carcinogenesis process, the following studies were undertaken to determine: (1) the utility [sup 32]P-postlabeling for detecting CPP-DNA adducts; (2) the potency and efficacy of CPP to induce DNA adducts in vivo; and (3) the identity of the ultimate mutagenic intermediate(s) of CPP in vivo. adducts, such as N7-deoxyguanosine adducts that may be lost through depurination.

Dna adducts

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Since most of the carcinogenic compounds or their metabolites are electrophiles, they can covalently bind with nucleophilic sites in proteins or DNA (Phillips 2005). 3. Levels of Pyridyloxobutyl DNA Adducts in NNK- or NNN-Treated Rodents. Pyridyloxobutyl DNA adducts have been observed in DNA isolated from the tissues of NNK- or NNN-treated animals.

DNA ADDUCTS DNA adducts are chemicals that are covalently bound to the genomic DNA. The source of the chemicals can be either exogenous (xenobiotic) or endogenous (including metabolites of xenobiotics). The effect of an adduct depends on it’s location on DNA: • An adduct on a gene will usually reduces or blocks that gene’s expression. DNA adducts can be measured in DNA from a variety of sources, including oral cells, blood, and formalin-fixed tissues.

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Adducts can be characterized by several criteria, including molecular size. Hence, the reference to large bulky adducts and small DNA adducts.

Dna adducts

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Dna adducts

DNA adducts can be measured in DNA from a variety of sources, including oral cells, blood, and formalin-fixed tissues. Assays for specific DNA adducts require 1-50 μg of DNA. Some DNA adducts require that the DNA be extracted from the source according to specific protocols to prevent artifacts or the decomposition of the DNA adducts during the isolation process. Hazardous chemicals in the environment and diet or their electrophilic metabolites can form adducts with genomic DNA, which can lead to mutations and the initiation of cancer. In addition, reactive intermediates can be generated in the body through oxidative stress and damage the genome.

Dna adducts

Assays for specific DNA adducts require 1-50 μg of DNA. Some DNA adducts require that the DNA be extracted from the source according to specific protocols to prevent artifacts or the decomposition of the DNA adducts during the isolation process. DNA adducts have been investigated extensively during the past decade. This research has been advanced, in part, by the development of ultrasensitive analytical methods, such as 32P-postlabeling and mass spectrometry, that enable detection of DNA adducts at concentrations as low as one adduct per 10(9) to 10(10) normal nucleotides. DNA Adducts DNA-addukter Svensk definition. Kovalenta anslutningar mellan mutagena kemiska ämnen och DNA. Sådana kopplingar aktiverar reparationsprocesser i DNA och kan, om reparation inte ägt rum före replikation, leda till utbyte eller bortfall av nukleotider och … In this review, the DNA adducts obtained from four classes of carcinogens for which there is substantial evidence of human exposure are considered: N-nitrosamines, aflatoxins, aromatic amines, and polycyclic aromatic hydrocarbons.
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2021-04-12 · DNA adducts are typically present at trace levels in the human genome, requiring a very sensitive and comprehensive data acquisition and analysis method.

This review considers in particular the use of mass spectrometry (MS), which is having an increasing role in the detn. of DNA adducts. Molecular studies have revealed that DNA adducts block polymerase replication activity, contributing to the increased DNA damage by reducing the repair activity (Hsu et al. 2005).
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In this review, the DNA adducts obtained from four classes of carcinogens for which there is substantial evidence of human exposure are considered: N-nitrosamines, aflatoxins, aromatic amines, and polycyclic aromatic hydrocarbons. For each class, the metabolic activation pathways that lead to DNA adduct formation will be discussed briefly.