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Analytical methodologies for metallomics studies of antitumor Pt-containing drugs
Diego Esteban-Fernández1, Estefanía Moreno-Gordaliza, Benito Cañas
1Department of Chemistry, Humboldt-Universitaet zu Berlin, Brook-Taylor Strasse 2, Berlin, Germany.
Abstract:
Pt-containing drugs are nowadays essential components in cancer chemotherapy. However, drug resistance and side effects limit the efficiency of the treatments. In order to improve the response to Pt-based drugs, different administration strategies or new Pt-compounds have been developed with little success. The reason for this failure could be that the mechanism of action of these drugs is not completely understood. In this way, metallomics studies may contribute to clarify the interactions of Pt-containing drugs within the organism. This review is mainly focused on the role of Analytical Chemistry on the study of the interactions between Pt-based drugs and biomolecules. A summary of the analytical techniques and the most common sample treatment procedures currently used in metallomics studies of these drugs is presented. Both are of paramount importance to study these complex samples preserving the drug-biomolecule interaction. Separation and detection techniques must be carefully selected in order to achieve the intended goals. The use of multidimensional hyphenated techniques is usually necessary for a better understanding of the Pt-based drugs interactions in the organism. An overview of Pt-drugs biological interactions is presented, considering the different sample matrices and the drugs course through the organism. Samples analysed in the included studies are blood, urine, cell cytosol, DNA as well as the drugs themselves and their derivatives. However, most of these works are based on in vitro experiments or incubations of standards, leading in some cases to contradictory results depending on the experimental conditions used. Though in vivo experiments represent a great challenge due to the high complexity and the low concentrations of the Pt-adducts in real samples, these studies must be undertaken to get a deeper understanding of the real interactions concerning Pt-containing drugs.
Insights
Metallomics studies using analytical chemistry are crucial for understanding platinum-based drugs in cancer chemotherapy. Clarifying drug-biomolecule interactions is key to overcoming resistance and side effects.
Area of Science:
- Analytical Chemistry
- Metallomics
- Pharmacology
Background:
- Platinum-based drugs are vital in cancer chemotherapy but face limitations due to drug resistance and side effects.
- Current strategies to improve platinum drug efficacy have yielded limited success, potentially due to an incomplete understanding of their mechanism of action.
Purpose of the Study:
- To review the role of Analytical Chemistry in metallomics studies of platinum-based drugs.
- To summarize analytical techniques and sample preparation methods for studying drug-biomolecule interactions.
- To provide an overview of biological interactions of platinum drugs in various biological matrices.
Main Methods:
- Review of analytical techniques including separation and detection methods.
- Discussion of sample treatment procedures for complex biological matrices.
- Emphasis on multidimensional hyphenated techniques for enhanced understanding.
Main Results:
- Analytical Chemistry and metallomics are essential for elucidating platinum drug interactions.
- Careful selection of separation and detection techniques is critical for preserving drug-biomolecule interactions.
- Multidimensional hyphenated techniques are often necessary for comprehensive analysis.
Conclusions:
- Understanding platinum drug-biomolecule interactions is key to improving cancer chemotherapy.
- In vitro studies provide foundational data, but in vivo experiments are essential for real-world insights.
- Further in vivo metallomics research is needed to fully understand platinum-containing drugs' behavior in the organism.
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