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Formation of Covalent DNA Adducts by Enzymatically Activated Carcinogens and Drugs In Vitro and Their Determination by 32P-postlabeling
Published on: March 20, 2018
Quantitative profiling of in vivo generated cisplatin-DNA adducts using different isotope dilution strategies
D García Sar1, M Montes-Bayón, E Blanco González
1Department of Physical and Analytical Chemistry, Faculty of Chemistry, University of Oviedo, C/Julian Claveria 8, 33006 Oviedo, Spain.
Abstract:
Platinum compounds are the major group of metal-based chemotherapeutic drug used in current practice and still a topic of intense investigation. The relative contribution of structurally defined cisplatin adducts with DNA to induce apoptosis and the cellular processing of these lesions is still poorly understood mostly due to the lack of sensitive and accurate analytical tools for in vivo studies. In this regard, two novel sensitive and selective strategies are proposed here to quantify cisplatin-DNA adducts generated in Drosophila melanogaster larvae and in head and neck squamous cell carcinoma cultures. The methods involve the isolation and enzymatic digestion of the DNA in the samples exposed to cisplatin and further quantification by high-performance liquid chromatography with inductively coupled plasma mass spectrometric detection (HPLC-ICPMS). Two different strategies, based on isotope dilution analysis (IDA), have been attempted and evaluated for quantification: species-unspecific (the postcolumn addition of a 194Pt-enriched solution) and the species-specific (by means of a synthesized isotopically enriched cisplatin (194Pt) adduct). For the second approach, the synthesis and characterization of the cisplatin adduct in a custom oligonucleotide containing the sequence (5'-TCCGGTCC-3') was necessary. The adducted oligo was then added to the DNA samples either before or after enzymatic hydrolysis. The results obtained using these two strategies (mixing before and after enzymatic treatment) permit to address, quantitatively, the column recoveries as well as the efficiency of the enzymatic hydrolysis. Species-specific spiking before enzymatic digestion provided accurate and precise analytical results to clearly differentiate between Drosophila samples and carcinoma cell cultures exposed to different cisplatin concentrations.
Insights
This study introduces two new methods to accurately measure platinum-DNA adducts in cancer cells and fruit fly larvae. These techniques improve the understanding of how cisplatin chemotherapy works in vivo.
Area of Science:
- Analytical Chemistry
- Biochemistry
- Pharmacology
Background:
- Platinum compounds are vital metal-based chemotherapy drugs.
- Understanding cisplatin-DNA adducts' role in apoptosis and cellular processing is limited by a lack of in vivo analytical tools.
Purpose of the Study:
- To develop sensitive and selective methods for quantifying cisplatin-DNA adducts in vivo.
- To evaluate two isotope dilution analysis (IDA) strategies for accuracy and precision.
Main Methods:
- DNA isolation and enzymatic digestion from cisplatin-exposed Drosophila melanogaster larvae and cancer cell cultures.
- Quantification using high-performance liquid chromatography with inductively coupled plasma mass spectrometric detection (HPLC-ICPMS).
- Comparison of species-unspecific (postcolumn spiking) and species-specific (synthesized adduct spiking) IDA strategies.
Main Results:
- Species-specific IDA with pre-enzymatic digestion spiking provided accurate and precise quantification of cisplatin-DNA adducts.
- The methods allowed for quantitative assessment of column recovery and enzymatic hydrolysis efficiency.
- Accurate differentiation between cisplatin concentrations in Drosophila and carcinoma cell samples was achieved.
Conclusions:
- Developed novel HPLC-ICPMS methods for sensitive and selective quantification of cisplatin-DNA adducts.
- Species-specific IDA with pre-enzymatic digestion spiking is a robust approach for in vivo studies.
- These methods advance the understanding of platinum compound mechanisms in biological systems.
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