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Updated: Feb 20, 2026

Anticancer Metal Complexes: Synthesis and Cytotoxicity Evaluation by the MTT Assay
Published on: November 10, 2013
Selenocompounds in Cancer Therapy: An Overview
Desirée Bartolini1, Luca Sancineto1, Andreza Fabro de Bem2
1University of Perugia, Perugia, Italy.
Abstract:
In vitro and in vivo experimental models clearly demonstrate the efficacy of Se compounds as anticancer agents, contingent upon chemical structures and concentrations of test molecules, as well as on the experimental model under investigation that together influence cellular availability of compounds, their molecular dynamics and mechanism of action. The latter includes direct and indirect redox effects on cellular targets by the activation and altered compartmentalization of molecular oxygen, and the interaction with protein thiols and Se proteins. As such, Se compounds interfere with the redox homeostasis and signaling of cancer cells to produce anticancer effects that include alterations in key regulatory elements of energy metabolism and cell cycle checkpoints that ultimately influence differentiation, proliferation, senescence, and death pathways. Cys-containing proteins and Se proteins involved in the response to Se compounds as sensors and transducers of anticancer signals, i.e., the pharmacoproteome of Se compounds, are described and include critical elements in the different phases of cancer onset and progression from initiation and escape of immune surveillance to tumor growth, angiogenesis, and metastasis. The efficacy and mode of action on these compounds vary depending on the inorganic and organic form of Se used as either supplement or pharmacological agent. In this regard, differences in experimental/clinical protocols provide options for either chemoprevention or therapy in different human cancers.
Insights
Selenium (Se) compounds show anticancer efficacy by disrupting cancer cell redox homeostasis. Their effectiveness depends on chemical structure and concentration, influencing cellular targets and cancer progression pathways.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Selenium compounds exhibit anticancer properties, influenced by chemical structure, concentration, and experimental models.
- Their mechanism involves redox effects, interaction with protein thiols, and modulation of Se proteins.
- Selenium compounds interfere with cancer cell redox homeostasis and signaling pathways.
Purpose of the Study:
- To elucidate the anticancer efficacy and mechanisms of selenium compounds.
- To describe the pharmacoproteome of selenium compounds, including sensors and transducers of anticancer signals.
- To explore the role of selenium in cancer chemoprevention and therapy.
Main Methods:
- In vitro and in vivo experimental models were utilized.
- Analysis of cellular availability, molecular dynamics, and mechanism of action of Se compounds.
- Identification of Cys-containing proteins and Se proteins involved in cellular response.
Main Results:
- Se compounds demonstrated efficacy by altering cancer cell redox homeostasis and signaling.
- Key regulatory elements of energy metabolism and cell cycle checkpoints were affected.
- The pharmacoproteome, including sensors and transducers, was described in relation to cancer progression.
Conclusions:
- Selenium compounds offer potential for cancer chemoprevention and therapy.
- Efficacy and mode of action vary based on the form of selenium and experimental protocols.
- Understanding the pharmacoproteome is crucial for optimizing Se compound use in cancer treatment.
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