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Aleksandra Gruevska

@gruevska.bsky.social
334 followers 779 following 7 posts

Research Associate, Imperial College London @imperialmdr.bsky.social Lipid metabolism in chronic liver disease and HCC. Mass spec imaging. #Liversky #MassSpec #spatial #metabolomics profiles.imperial.ac.uk/a.gruevska

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Reposted by Aleksandra Gruevska
eLife @elife.bsky.social · 23/08/2025
Membrane Biology: Nothing can replace polyunsaturated lipids Genetic studies reveal that polyunsaturated lipids do more than simply increase the fluidity of the cell membrane. buff.ly/qcLJNUN
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Reposted by Aleksandra Gruevska
Zoe Hall @zoehall-icl.bsky.social · 24/06/2025
Enjoying #metabolomics2025 in Prague! Just presented some of our work on #massspec imaging of #liver fibrosis! @gruevska.bsky.social
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Aleksandra Gruevska @gruevska.bsky.social · 06/06/2025
See you this weekend!!!
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Aleksandra Gruevska @gruevska.bsky.social · 08/05/2025
Excited to present our work at #EASLCongress 2025 (THU-036-YI). See you tomorrow at 1pm on the Track Hub 2 - Basic science to check how we use #massspecimaging and IMC for metabolic profiling of #liver fibrosis. Special thanks to our collaborators and funders @zoehall-icl.bsky.social
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Aleksandra Gruevska @gruevska.bsky.social · 23/04/2025
Very happy and proud to see our work published in Metabolism! www.metabolismjournal.com/article/S002... We thank all our collaborators and especially all the patients who contributed to the study. Thank you @zoehall-icl.bsky.social for all the support since day one!
metabolismjournal.com
Spatial lipidomics reveals sphingolipid metabolism as anti-fibrotic target in the liver
Steatotic liver disease (SLD), which encompasses various causes of fat accumulation in the liver, is a major cause of liver fibrosis. Understanding the specific mechanisms of lipotoxicity, dysregulate...
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Reposted by Aleksandra Gruevska
Zoe Hall @zoehall-icl.bsky.social · 23/04/2025
Excited to share our latest study in Metabolism, exploring how dysregulated #sphingolipid #metabolism contributes to #liver #fibrosis using #spatial #lipidomics! A huge thank you to @gruevska.bsky.social and all the collaborators who made this possible! www.metabolismjournal.com/article/S002...
sciencedirect.com
Spatial lipidomics reveals sphingolipid metabolism as anti-fibrotic target in the liver
Steatotic liver disease (SLD), which encompasses various causes of fat accumulation in the liver, is a major cause of liver fibrosis. Understanding th…
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Reposted by Aleksandra Gruevska
Liver UK @liveruk.bsky.social · 24/03/2025
Sarah explains the stages of #FattyLiverDisease. It's possible to slow or even reverse damage to the liver - the main treatment is eating a healthy diet, being more physically active & (if needed) losing weight. More about fatty liver disease: britishlivertrust.org.uk/information-... #LiverSky
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Reposted by Aleksandra Gruevska
David Green, PhD @ecologistgreen.bsky.social · 01/02/2025
Need a laugh? Here are this week's best academia and science funnies I found. #AcademicSky 🧪
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Reposted by Aleksandra Gruevska
Evangelos Triantafyllou @triantafylloulab.bsky.social · 30/01/2025
Pleased to see our review (w/ Cathrin Gudd & Lucia Possamai) on immune-mediated liver injury from checkpoint inhibitors published in @natrevgastrohep.bsky.social 's latest issue | @imperialmdr.bsky.social | #cancer #immunotherapy #liver #inflammation
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Reposted by Aleksandra Gruevska
Rafa Najumudeen @rafabolism.bsky.social · 28/01/2025
Together with friend and collaborator @joharrr.bsky.social, we highlight spatial metabolomics as a new Tool to understand cell biology! t.co/mZ6pBiDRUQ
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Reposted by Aleksandra Gruevska
Tim Ebbels @tebbels.bsky.social · 15/01/2025
Calling computational #metabolomics people out there! Are you interested in working with #EU colleagues to analyse and model metabolomic data? We are looking for an enthusiastic and knowledgeable individual to join the #BiACEM project: www.imperial.ac.uk/jobs/search-...
imperial.ac.uk
Home
Imperial College London is a world-leading university for science, technology, engineering, medicine and business (STEMB). Across our London campuses, and throughout our international network, we use ...
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Aleksandra Gruevska @gruevska.bsky.social · 26/12/2024
Some of my favorite mass spec imaging data of the year 😍 Fibrotic #liver and shining #lipids. #liversky #MassSpec #MALDI #metabolomics
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Reposted by Aleksandra Gruevska
Christian Frezza @frezzalab.bsky.social · 26/12/2024
For those starting on BSKY and loving #metabolism and #mitochondria, the 2 starter packs have now been completed. 300 scientists working in this field are here to be followed! Happy Boxing Day Starter pack 1: go.bsky.app/VavECSX Starter pack 2: go.bsky.app/CH1MctZ
media.tenor.com
a stack of gift boxes with the words happy boxing day below
ALT: a stack of gift boxes with the words happy boxing day below
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Reposted by Aleksandra Gruevska
Christian Frezza @frezzalab.bsky.social · 22/12/2024
www.cell.com/trends/endoc... @cp-trendsendomet.bsky.social
cell.com
Inter-organ communication is a critical machinery to regulate metabolism and aging
Inter-organ communication (IOC) is a complex mechanism involved in maintaining metabolic homeostasis and healthy aging. Dysregulation of distinct forms of IOC is linked to metabolic derangements and age-related pathologies, implicating these processes as a potential target for therapeutic intervention to promote healthy aging. In this review, we delve into IOC mediated by hormonal signaling, circulating factors, organelle signaling, and neuronal networks and examine their roles in regulating metabolism and aging. Given the role of the hypothalamus as a high-order control center for aging and longevity, we particularly emphasize the importance of its communication with peripheral organs and pave the way for a better understanding of this critical machinery in metabolism and aging.
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Reposted by Aleksandra Gruevska
Anna Obenauf @obenaufa.bsky.social · 14/12/2024
Thrilled to share that our paper www.nature.com/articles/s41... is featured in a fantastic Nature News & Views piece by thomastueting.bsky.social! 🎉 Grateful for the spotlight on our research and its impact on understanding cancer immunology. www.nature.com/articles/d41... 👀👉 rdcu.be/d3cRz
nature.com
A lipid made by tumour cells reprograms immune cells
Insights into how cancer cells become unresponsive to therapy.
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