The therapeutic potential of targeting regulated non-apoptotic cell death

K Hadian, BR Stockwell - Nature Reviews Drug Discovery, 2023 - nature.com
Nature Reviews Drug Discovery, 2023nature.com
Cell death is critical for the development and homeostasis of almost all multicellular
organisms. Moreover, its dysregulation leads to diverse disease states. Historically,
apoptosis was thought to be the major regulated cell death pathway, whereas necrosis was
considered to be an unregulated form of cell death. However, research in recent decades
has uncovered several forms of regulated necrosis that are implicated in degenerative
diseases, inflammatory conditions and cancer. The growing insight into these regulated, non …
Abstract
Cell death is critical for the development and homeostasis of almost all multicellular organisms. Moreover, its dysregulation leads to diverse disease states. Historically, apoptosis was thought to be the major regulated cell death pathway, whereas necrosis was considered to be an unregulated form of cell death. However, research in recent decades has uncovered several forms of regulated necrosis that are implicated in degenerative diseases, inflammatory conditions and cancer. The growing insight into these regulated, non-apoptotic cell death pathways has opened new avenues for therapeutic targeting. Here, we describe the regulatory pathways of necroptosis, pyroptosis, parthanatos, ferroptosis, cuproptosis, lysozincrosis and disulfidptosis. We discuss small-molecule inhibitors of the pathways and prospects for future drug discovery. Together, the complex mechanisms governing these pathways offer strategies to develop therapeutics that control non-apoptotic cell death.
nature.com
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