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Marc Diederich

Seoul National University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Marc Diederich's research lab focuses on the molecular mechanisms of natural compounds—particularly dietary polyphenols and carotenoids—in cancer prevention and therapy. The lab investigates how compounds like lycopene and curcumin modulate key signaling pathways involved in carcinogenesis, including inflammation, cell proliferation, and apoptosis, with a strong emphasis on their epigenetic and antioxidant effects. A central theme is overcoming the clinical translation barriers of these natural agents through advanced delivery systems and combination therapies. The lab also explores the repurposing of existing drugs, such as cardiac glycosides, for cancer immunotherapy.

cancer chemopreventionnatural compoundscurcuminepigeneticsdrug repurposing

Research Overview

Papers
380
Total Citations
30,536
Papers (5y)
22
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
22total
2022
2023
2024
2025
2026
Citations per year (5y)
418total
20222023202420252026

Selected Papers

15
1
Review|856 citations·2004
Chemopreventive and therapeutic effects of curcumin
Annelyse Duvoix, Romain Blasius, Sylvie Delhalle, Michaël Schnekenburger, Franck Morceau, Estelle Henry, Mario Dicato, Marc Diederich
SJR Q1Cancer Letters
Molecular MedicineBiochemistry, Genetics and Molecular Biology
2
Review|327 citations·2008
Modulation of anti-apoptotic and survival pathways by curcumin as a strategy to induce apoptosis in cancer cells
Simone Reuter, Serge Eifes, Mario Dicato, Bharat B. Aggarwal, Marc Diederich
SJR Q1Biochemical Pharmacology
Molecular MedicineBiochemistry, Genetics and Molecular Biology
3
Article|269 citations·2011
Dietary chalcones with chemopreventive and chemotherapeutic potential
Barbora Orlikova, Deniz Taşdemir, F Golais, Mario Dicato, Marc Diederich
SJR Q2Genes & NutritionOA
Organic ChemistryChemistry
4
Review|220 citations·2011
Antioxidant and anti-proliferative properties of lycopene
Mareike Kelkel, Marc Schumacher, Mario Dicato, Marc Diederich
SJR Q2Free Radical Research

The recent search for new anti-cancer drugs focuses more on natural compounds from the regular human diet because these compounds rarely exhibit severe side-effects yet efficiently act on a wide range of molecular targets involved in carcinogenesis. One promising compound, which is now being tested in clinical studies, is the tomato-derived carotenoid lycopene. This review summarizes the current knowledge about the cellular action of lycopene and presents the molecular targets responsible for it

BiochemistryMedicine
5
Article|205 citations·2010
Curcumin―The Paradigm of a Multi-Target Natural Compound with Applications in Cancer Prevention and Treatment
Marie-Hélène Teiten, Serge Eifes, Mario Dicato, Marc Diederich
SJR Q1ToxinsOA

As cancer is a multifactor disease, it may require treatment with compounds able to target multiple intracellular components. We summarize here how curcumin is able to modulate many components of intracellular signaling pathways implicated in inflammation, cell proliferation and invasion and to induce genetic modulations eventually leading to tumor cell death. Clinical applications of this natural compound were initially limited by its low solubility and bioavailability in both plasma and tissue

Molecular MedicineBiochemistry, Genetics and Molecular Biology
6
Review|174 citations·2011
Erythropoietin, erythropoiesis and beyond
Sébastien Chateauvieux, Christine Grigorakaki, Franck Morceau, Mario Dicato, Marc Diederich
SJR Q1Biochemical Pharmacology
HematologyMedicine
7
Review|172 citations·2013
Curcumin as a regulator of epigenetic events
Marie‐Hélène Teiten, Mario Dicato, Marc Diederich
SJR Q1Molecular Nutrition & Food ResearchOA

Epigenetic alterations correspond to changes in DNA methylation, covalent modifications of histones, or altered miRNA expression patterns. These three mechanisms are interconnected and appear to be key players in tumor progression and failure of conventional chemotherapy. Dietary components emerged as a promising source of new epigenetically active compounds able to reverse these alterations and to actively regulate gene expression as well as molecular targets implicated in tumorigenesis. The po

Cancer ResearchBiochemistry, Genetics and Molecular Biology
8
Review|168 citations·2009
Pro-Inflammatory Cytokine-Mediated Anemia: Regarding Molecular Mechanisms of Erythropoiesis
Franck Morceau, Mario Dicato, Marc Diederich
SJR Q2Mediators of InflammationOA

Anemia of cancer and chronic inflammatory diseases is a frequent complication affecting quality of life. For cancer patients it represents a particularly bad prognostic. Low level of erythropoietin is considered as one of the causes of anemia in these pathologies. The deficiency in erythropoietin production results from pro-inflammatory cytokines effect. However, few data is available concerning molecular mechanisms involved in cytokine-mediated anemia. Some recent publications have demonstrated

HematologyMedicine
9
Review|164 citations·2015
Cancer-type-specific crosstalk between autophagy, necroptosis and apoptosis as a pharmacological target
Flavia Radogna, Mario Dicato, Marc Diederich
SJR Q1Biochemical Pharmacology
EpidemiologyMedicine
10
Article|154 citations·2009
Chemopreventive potential of curcumin in prostate cancer
Marie‐Hélène Teiten, François Gaascht, Serge Eifes, Mario Dicato, Marc Diederich
SJR Q2Genes & NutritionOA
Molecular MedicineBiochemistry, Genetics and Molecular Biology
11
Review|136 citations·2018
Stress-induced cellular responses in immunogenic cell death: Implications for cancer immunotherapy
Flavia Radogna, Marc Diederich
SJR Q1Biochemical Pharmacology
Cell BiologyBiochemistry, Genetics and Molecular Biology
12
Article|134 citations·2003
Induction of apoptosis by curcumin: mediation by glutathione S-transferase P1-1 inhibition
Annelyse Duvoix, Franck Morceau, Sylvie Delhalle, Martine Schmitz, Michaël Schnekenburger, Marie‐Madeleine Galteau, Mario Dicato, Marc Diederich
SJR Q1Biochemical Pharmacology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Review|129 citations·2017
Anticancer and Immunogenic Properties of Cardiac Glycosides
Naira Fernanda Zanchett Schneider, Claudia Cerella, Cláudia Maria Oliveira Simões, Marc Diederich
SJR Q1MoleculesOA

Cardiac glycosides (CGs) are natural compounds widely used in the treatment of several cardiac conditions and more recently have been recognized as potential antitumor compounds. They are known to be ligands for Na/K-ATPase, which is a promising drug target in cancer. More recently, in addition to their antitumor effects, it has been suggested that CGs activate tumor-specific immune responses. This review summarizes the anticancer aspects of CGs as new strategies for immunotherapy and drug repos

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Review|123 citations·2014
Hybrid Curcumin Compounds: A New Strategy for Cancer Treatment
Marie-Hélène Teiten, Mario Dicato, Marc Diederich
SJR Q1MoleculesOA

Cancer is a multifactorial disease that requires treatments able to target multiple intracellular components and signaling pathways. The natural compound, curcumin, was already described as a promising anticancer agent due to its multipotent properties and huge amount of molecular targets in vitro. Its translation to the clinic is, however, limited by its reduced solubility and bioavailability in patients. In order to overcome these pharmacokinetic deficits of curcumin, several strategies, such

Molecular MedicineBiochemistry, Genetics and Molecular Biology
15
Article|121 citations·2010
Anti-inflammatory, pro-apoptotic, and anti-proliferative effects of a methanolic neem (Azadirachta indica) leaf extract are mediated via modulation of the nuclear factor-κB pathway
Marc Schumacher, Claudia Cerella, Simone Reuter, Mario Dicato, Marc Diederich
SJR Q2Genes & NutritionOA
BiomaterialsMaterials Science

Research Areas

Molecular BiologyPharmacologyMolecular MedicineCancer ResearchBiotechnologyHematology

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