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Connecting the "Dots": From Free Radical Lipid Autoxidation to Cell Pathology and Disease.

Morgan K ForetRichard LincolnSonia Do CarmoA Claudio CuelloGonzalo Cosa
Published in: Chemical reviews (2020)
Our understanding of lipid peroxidation in biology and medicine is rapidly evolving, as it is increasingly implicated in various diseases but also recognized as a key part of normal cell function, signaling, and death (ferroptosis). Not surprisingly, the root and consequences of lipid peroxidation have garnered increasing attention from multiple disciplines in recent years. Here we "connect the dots" between the fundamental chemistry underpinning the cascade reactions of lipid peroxidation (enzymatic or free radical), the reactive nature of the products formed (lipid-derived electrophiles), and the biological targets and mechanisms associated with these products that culminate in cellular responses. We additionally bring light to the use of highly sensitive, fluorescence-based methodologies. Stemming from the foundational concepts in chemistry and biology, these methodologies enable visualizing and quantifying each reaction in the cascade in a cellular and ultimately tissue context, toward deciphering the connections between the chemistry and physiology of lipid peroxidation. The review offers a platform in which the chemistry and biomedical research communities can access a comprehensive summary of fundamental concepts regarding lipid peroxidation, experimental tools for the study of such processes, as well as the recent discoveries by leading investigators with an emphasis on significant open questions.
Keyphrases
  • fatty acid
  • cell death
  • minimally invasive
  • stem cells
  • drug discovery
  • single cell
  • bone marrow
  • mesenchymal stem cells
  • high throughput
  • fluorescent probe
  • single molecule
  • high resolution
  • quantum dots