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Published on: November 21, 2023
Pro-Apoptotic Activity of Bioactive Compounds from Seaweeds: Promising Sources for Developing Novel Anticancer Drugs
Rosette Agena1, Alejandro de Jesús Cortés-Sánchez2, Humberto Hernández-Sánchez1
1Ingeniería Bioquímica, Escuela Nacional de Ciencias Biológicas (ENCB), Instituto Politécnico Nacional, Mexico City 07738, Mexico.
Abstract:
The process by which cancer cells evade or inhibit apoptosis is considered one of the characteristics of cancer. The ability of cancer cells to escape apoptosis contributes to tumor proliferation and promotes metastasis. The discovery of new antitumor agents is essential for cancer treatment due to the lack of selectivity of drugs and cellular resistance to anticancer agents. Several studies showed that macroalgae produce various metabolites with different biological activities among marine organisms. This review discusses multiple metabolites extracted from macroalgae and their pro-apoptotic effects through regulating apoptosis signaling pathway target molecules and the structure-activity relationship. Twenty-four promising bioactive compounds have been reported, where eight of these compounds exhibited values of maximum inhibitory concentration (IC50) of less than 7 μg/mL. Fucoxanthin was the only carotenoid reported that induced apoptosis in HeLa cells with an IC50 below 1 µg/mL. Se-PPC (a complex of proteins and selenylated polysaccharides) is the magistral compound because it is the only one with an IC50 of 2.5 µg/mL which regulates the primary proteins and critical genes of both apoptosis pathways. Therefore, this review will help provide the basis for further studies and the development of new anticancer drugs, both as single agents and adjuvants, decreasing the aggressiveness of first-line drugs and offering patients better survival and quality of life.
Insights
Marine macroalgae metabolites show promise as novel anticancer agents by inducing apoptosis. Compounds like fucoxanthin and Se-PPC demonstrate potent anti-cancer activity, offering new therapeutic avenues.
Area of Science:
- Marine Biology
- Pharmacology
- Cancer Research
Background:
- Cancer cells evade apoptosis, a key hallmark contributing to tumor growth and metastasis.
- Developing novel anticancer agents is crucial due to drug resistance and lack of selectivity.
- Marine macroalgae are a rich source of diverse metabolites with significant biological activities.
Purpose of the Study:
- To review macroalgae-derived metabolites with pro-apoptotic effects.
- To explore the structure-activity relationships of these compounds.
- To identify potent anticancer agents from marine sources for drug development.
Main Methods:
- Literature review of studies on macroalgae metabolites and their anticancer properties.
- Analysis of reported pro-apoptotic effects via apoptosis signaling pathways.
- Evaluation of structure-activity relationships and inhibitory concentrations (IC50).
Main Results:
- Twenty-four bioactive compounds from macroalgae were identified with anticancer potential.
- Eight compounds showed IC50 values below 7 μg/mL.
- Fucoxanthin and Se-PPC exhibited significant pro-apoptotic activity with low IC50 values.
Conclusions:
- Macroalgae metabolites represent a promising source for developing new anticancer drugs.
- Compounds like Se-PPC effectively regulate key apoptosis pathways.
- Further research can lead to novel single-agent or adjuvant therapies, improving patient outcomes.
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