5, pp2784-2790 [online] Available at: Miranda, J., Lasa, A., Bustamante, M.A., Churruca, I
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For example, mitochondrial dysfunction destabilizes lysosomes, amplifying oxidative stress ( 2.2.2 Endoplasmic reticulum: regulator of lipid metabolism and redox homeostasis The ER maintains cellular homeostasis through protein synthesis, lipid metabolism, and calcium storage ( - localized to the ER membranemediates cystine import for GSH synthesis ( 2.2.3 Lysosomes: controllers of iron homeostasis Lysosomes regulate cellular debris degradation, biomolecule recycling, and iron metabolismall of which influence ferroptosis ( 2.2.4 Lipid droplets: sources of polyunsaturated fatty acids Lipid droplets (LDs) are dynamic organelles serving as storage reservoirs for neutral lipids, playing pivotal roles in cellular energy homeostasis and lipid metabolism ( 2.2.5 Peroxisomes: modulators of lipid oxidation and antioxidant defense Peroxisomes regulate lipid metabolism and ROS detoxification, influencing ferroptosis ( 2.2.6 Golgi apparatus: regulatory mechanisms in ferroptosis The Golgi apparatus is a vital organelle involved in the post-translational modification, sorting, and trafficking of proteins and lipids within the cell ( Collectively, the dysfunction of key organellesincluding mitochondria, endoplasmic reticulum, lysosomes, lipid droplets, peroxisomes, and the Golgi apparatussynergistically amplifies ferroptosis susceptibility in COPD

doi: 10.1038/s41551-024-01209-3 248 YooGSAhnWGKimSYKangWChoiCParkHC