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    Selective autophagy engages several cargo receptors that target specific, potentially toxic, content (damaged organelles, protein aggregates, pathogens) for lysosomal degradation. Understanding of the mechanisms governing this process in mammals has expanded in recent years, opening the prospects for enhancing selective autophagy to boost cellular quality control capabilities.

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    • Are you looking for a comprehensive Review on selective #autophagy? Tamotsu Yoshimori, @LabYoule and colleagues discuss the different autophagy pathways in their recent #NRMCBReview: 🚨 https://t.co/uI3ZvLwu4P https://t.co/8pFwjHXg41

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    Abstract. Lysosomal autophagy inhibition (LAI) with hydroxychloroquine or DC661 can enhance cancer therapy, but tumor regrowth is common. To elucidate LAI resistance, proteomics and immunoblotting demonstrated that LAI induced lipid metabolism enzymes in multiple cancer cell lines. Lipidomics showed that LAI increased cholesterol, sphingolipids, and glycosphingolipids. These changes were…

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    • Targeting UGCG Overcomes Resistance to Lysosomal #Autophagy Inhibition, by @VaibhavJain_PhD, David Speicher, @AmaravadiRavi et al. https://t.co/QMnPzqbBnc @TheWistar @PennCancer https://t.co/4FCFOUZEha

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    • New Infographic! 📃 by @gigenace "#Rapamycin induces #autophagy and #apoptosis in #Kaposiformhemangioendothelioma #primarycells #invitro" ZuoPeng Wang https://t.co/Ovgblefsnc. Full Article: https://t.co/tFUHA2AIdn #SoMe4PedSurg #basicscience #Oncology https://t.co/Mt5ViIUi49