Laboratoire de Biologie Moléculaire et Cellulaire du Cancer
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Natural compounds and pharmaceuticals reprogram leukemia cell differentiation pathways

Franck Morceau Marc Diederich

Published in Biotechnology Advances

In addition to apoptosis resistance and cell proliferation capacities, the undifferentiated state also characterizes most cancer cells, especially leukemia cells. Cell differentiation is a multifaceted process that depends on complex regulatory networks that involve transcriptional, post-transcriptional and epigenetic regulation of gene expression....

Gold from the sea: Marine compounds as inhibitors of the hallmarks of cancer

Schumacher, Marc Kelkel, Mareike Dicato, Mario Marc Diederich

Published in Biotechnology Advances

Cancer is one of the most deadly diseases in the world. Although advances in the field of chemo-preventive and therapeutic medicine have been made regularly over the last ten years, the search for novel anticancer treatments continues. In this field, the marine environment, with its rich variety of organisms, is a largely untapped source of novel c...

Plant-derived epigenetic modulators for cancer treatment and prevention

Michael Schnekenburger Dicato, Mario Marc Diederich

Published in Biotechnology Advances

Carcinogenesis is a complex and multistep process that involves the accumulation of successive transformational events driven by genetic mutations and epigenetic alterations that affect major cellular processes and pathways such as proliferation, differentiation, invasion and survival. Massive deregulation of all components of the epigenetic machin...

From nature to bedside: Pro-survival and cell death mechanisms as therapeutic targets in cancer treatment

Dicato, Mario Cerella, Claudia Diederich, Marc Radogna, Flavia

Published in Biotechnology Advances

Cell death is an important physiological regulator during development, tissue homeostasis and stress response but it is also a protective tumor suppressive mechanism. Tumor cells almost universally acquire the ability to evade cell death pathways that in normal cells act as a protective mechanism to remove damaged cells. As a result, a population o...

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