#lysosomes — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #lysosomes, aggregated by home.social.
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https://www.europesays.com/ie/497886/ Targeting lipid enzymes triggers starvation states in aggressive tumor cells #appetite #cancer #Cell #CellMembrane #Cholesterol #Éire #Enzyme #Gene #IE #Ireland #Lysosomes #Membrane #Metabolism #Metabolite #Mutation #Research #Technology #Tumor
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https://www.europesays.com/ie/350706/ Tuberculosis bacteria stiffen cell membranes to evade immune destruction #bacteria #Bacterial #Cell #Éire #Health #IE #InfectiousDiseases #Ireland #Lipids #Lysosomes #Membrane #PublicHealth #Research #tuberculosis
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https://www.europesays.com/ie/348367/ Grant supports research into how microglia may spread toxic tau in Alzheimer’s #Alzheimer'sDisease #Brain #Cell #Éire #Health #IE #Ireland #Lysosomes #microglia #NeurodegenerativeDiseases #Neurons #Nursing #Pathology #Pharmacology #Protein #Receptor #Research #Stress #TauProtein #website
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https://www.europesays.com/ie/143909/ Mitochondria and lysosomes work together to control regulatory T cell activation #cancer #Cell #children #Éire #Gene #GeneExpression #hospital #IE #ImmuneSystem #ImmunoOncology #Immunology #immunotherapy #inflammation #Ireland #Lysosomes #medicine #Metabolism #Mitochondria #oncology #Physiology #Research #TCell #Technology #Tumor
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Targeted microglia replacement shows promise against fatal neurodegenerative conditions
Tay-Sachs and Sandhoff diseases, genetic disorders affecting the brain, have no effective treatment and are typically fatal wi…
#NewsBeep #News #Health #AU #Australia #Brain #Cell #Children #Drugs #Enzyme #Genetic #GeneticEngineering #ImmuneSystem #LysosomalStorageDisorders #Lysosomes #medicine #Microglia #Neurons #Pathology #research #SandhoffDisease #StemCells #Transplant
https://www.newsbeep.com/au/48541/ -
🪱 An international team led by the team of Johan Auwerx at our University has discovered a powerful anti-aging pathway in roundworms, revealing how boosting the cell’s lysosomes can help clear waste and promote healthy aging. The findings open new directions for therapies against age-related diseases.
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🪱 An international team led by the team of Johan Auwerx at our University has discovered a powerful anti-aging pathway in roundworms, revealing how boosting the cell’s lysosomes can help clear waste and promote healthy aging. The findings open new directions for therapies against age-related diseases.
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🪱 An international team led by the team of Johan Auwerx at our University has discovered a powerful anti-aging pathway in roundworms, revealing how boosting the cell’s lysosomes can help clear waste and promote healthy aging. The findings open new directions for therapies against age-related diseases.
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🪱 An international team led by the team of Johan Auwerx at our University has discovered a powerful anti-aging pathway in roundworms, revealing how boosting the cell’s lysosomes can help clear waste and promote healthy aging. The findings open new directions for therapies against age-related diseases.
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🪱 An international team led by the team of Johan Auwerx at our University has discovered a powerful anti-aging pathway in roundworms, revealing how boosting the cell’s lysosomes can help clear waste and promote healthy aging. The findings open new directions for therapies against age-related diseases.
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#Lysosomes are crucial cellular degradation centers, but how can one selectively modulate their activity? This study describes novel #optogenetic tools for the light-inducible manipulation of lysosomal physiology in cells & in #Celegans #PLOSBiology https://plos.io/49WGds5
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#Lysosomes are crucial cellular degradation centers, but how can one selectively modulate their activity? This study describes novel #optogenetic tools for the light-inducible manipulation of lysosomal physiology in cells & in #Celegans #PLOSBiology https://plos.io/49WGds5
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#Lysosomes are crucial cellular degradation centers, but how can one selectively modulate their activity? This study describes novel #optogenetic tools for the light-inducible manipulation of lysosomal physiology in cells & in #Celegans #PLOSBiology https://plos.io/49WGds5
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#Lysosomes are crucial cellular degradation centers, but how can one selectively modulate their activity? This study describes novel #optogenetic tools for the light-inducible manipulation of lysosomal physiology in cells & in #Celegans #PLOSBiology https://plos.io/49WGds5
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#Lysosomes are crucial cellular degradation centers, but how can one selectively modulate their activity? This study describes novel #optogenetic tools for the light-inducible manipulation of lysosomal physiology in cells & in #Celegans #PLOSBiology https://plos.io/49WGds5
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New study details how #starving #cells hijack #protein #transport stations.
#ER #exit_sites #lysosomes #ALG2 #COPII #microautophagy
https://phys.org/news/2024-04-starving-cells-hijack-protein-stations.html
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New study details how #starving #cells hijack #protein #transport stations.
#ER #exit_sites #lysosomes #ALG2 #COPII #microautophagy
https://phys.org/news/2024-04-starving-cells-hijack-protein-stations.html
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New study details how #starving #cells hijack #protein #transport stations.
#ER #exit_sites #lysosomes #ALG2 #COPII #microautophagy
https://phys.org/news/2024-04-starving-cells-hijack-protein-stations.html
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New study details how #starving #cells hijack #protein #transport stations.
#ER #exit_sites #lysosomes #ALG2 #COPII #microautophagy
https://phys.org/news/2024-04-starving-cells-hijack-protein-stations.html
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New #signaling pathway decoded in the decomposition of damaged #lysosomes.
https://phys.org/news/2024-04-pathway-decoded-decomposition-lysosomes.html
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New #signaling pathway decoded in the decomposition of damaged #lysosomes.
https://phys.org/news/2024-04-pathway-decoded-decomposition-lysosomes.html
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New #signaling pathway decoded in the decomposition of damaged #lysosomes.
https://phys.org/news/2024-04-pathway-decoded-decomposition-lysosomes.html
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Chemists discover a key #protein in how #lysosomes.
https://phys.org/news/2024-04-chemists-key-protein-lysosomes.html
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Chemists discover a key #protein in how #lysosomes.
https://phys.org/news/2024-04-chemists-key-protein-lysosomes.html
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Chemists discover a key #protein in how #lysosomes.
https://phys.org/news/2024-04-chemists-key-protein-lysosomes.html
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A newly discovered Rab12-dependent mechanism helps to recruit and increase the activity of an enzyme involved in #Parkinson’s disease at the membrane of #lysosomes. https://elifesciences.org/digests/87255/regulating-lrrk2?utm_source=mastodon&utm_medium=social&utm_campaign=organic
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A newly discovered Rab12-dependent mechanism helps to recruit and increase the activity of an enzyme involved in #Parkinson’s disease at the membrane of #lysosomes. https://elifesciences.org/digests/87255/regulating-lrrk2?utm_source=mastodon&utm_medium=social&utm_campaign=organic
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A newly discovered Rab12-dependent mechanism helps to recruit and increase the activity of an enzyme involved in #Parkinson’s disease at the membrane of #lysosomes. https://elifesciences.org/digests/87255/regulating-lrrk2?utm_source=mastodon&utm_medium=social&utm_campaign=organic
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A newly discovered Rab12-dependent mechanism helps to recruit and increase the activity of an enzyme involved in #Parkinson’s disease at the membrane of #lysosomes. https://elifesciences.org/digests/87255/regulating-lrrk2?utm_source=mastodon&utm_medium=social&utm_campaign=organic
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A newly discovered Rab12-dependent mechanism helps to recruit and increase the activity of an enzyme involved in #Parkinson’s disease at the membrane of #lysosomes. https://elifesciences.org/digests/87255/regulating-lrrk2?utm_source=mastodon&utm_medium=social&utm_campaign=organic
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New study sheds light on the molecular mechanisms underlying #lipid recycling within #cells.
#lysosomes #autophagic_bodies #Atg15
https://phys.org/news/2023-11-molecular-mechanisms-underlying-lipid-recycling.html
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New study sheds light on the molecular mechanisms underlying #lipid recycling within #cells.
#lysosomes #autophagic_bodies #Atg15
https://phys.org/news/2023-11-molecular-mechanisms-underlying-lipid-recycling.html
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#Lysosomes prove to be quick-change artists with respect to #nutrient availability in the #cell.
https://phys.org/news/2023-10-lysosomes-quick-change-artists-respect-nutrient.html
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#Lysosomes prove to be quick-change artists with respect to #nutrient availability in the #cell.
https://phys.org/news/2023-10-lysosomes-quick-change-artists-respect-nutrient.html
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#Lysosomes prove to be quick-change artists with respect to #nutrient availability in the #cell.
https://phys.org/news/2023-10-lysosomes-quick-change-artists-respect-nutrient.html
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#Lysosomes prove to be quick-change artists with respect to #nutrient availability in the #cell.
https://phys.org/news/2023-10-lysosomes-quick-change-artists-respect-nutrient.html
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#Lysosomes prove to be quick-change artists with respect to #nutrient availability in the #cell.
https://phys.org/news/2023-10-lysosomes-quick-change-artists-respect-nutrient.html
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#MotorNeuronDisease-assoociated #Spatacsin is a key ER protein for the formation of tubular #lysosomes by regulating association of its partners spastizin & AP5Z1 with lysosomes, revealing a role in regulation of lysosome trafficking #PLOSBiology https://plos.io/45LlMMX
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#MotorNeuronDisease-assoociated #Spatacsin is a key ER protein for the formation of tubular #lysosomes by regulating association of its partners spastizin & AP5Z1 with lysosomes, revealing a role in regulation of lysosome trafficking #PLOSBiology https://plos.io/45LlMMX
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#MotorNeuronDisease-assoociated #Spatacsin is a key ER protein for the formation of tubular #lysosomes by regulating association of its partners spastizin & AP5Z1 with lysosomes, revealing a role in regulation of lysosome trafficking #PLOSBiology https://plos.io/45LlMMX
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#MotorNeuronDisease-assoociated #Spatacsin is a key ER protein for the formation of tubular #lysosomes by regulating association of its partners spastizin & AP5Z1 with lysosomes, revealing a role in regulation of lysosome trafficking #PLOSBiology https://plos.io/45LlMMX
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#MotorNeuronDisease-assoociated #Spatacsin is a key ER protein for the formation of tubular #lysosomes by regulating association of its partners spastizin & AP5Z1 with lysosomes, revealing a role in regulation of lysosome trafficking #PLOSBiology https://plos.io/45LlMMX
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Etch A Cell - #lysosomes— #Zooniverse
We need your help to identify lysosomes in images of cells that were produced using an Electron Microscope
https://www.zooniverse.org/projects/h-spiers/etch-a-cell-demolition-squad
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New probe aids novel findings on #cell functions
https://phys.org/news/2023-05-probe-aids-cell-functions.html