Eddie Rashan (@edreesrashan) 's Twitter Profile
Eddie Rashan

@edreesrashan

Lipid metabolism biochemist. Postdoc @mvh_lab @kochinstitute | he/him

ID: 1176142809763667968

linkhttps://orcid.org/0000-0002-3882-6655 calendar_today23-09-2019 14:34:38

2,2K Tweet

903 Followers

992 Following

E. Dale Abel (@intmedabel) 's Twitter Profile Photo

Just out today in Nature Neuroscience led by Ebrahim Asadollahi & Klaus-Armin Nave MPI for Multidisciplinary Sciences. Pleased to have contributed. Oligodendrocytes break down & burn their fat when glucose is limited to fuel white matter. #Metabolism flexibility always key to survival. nature.com/articles/s4159…

John Prensner (@johnprensner) 's Twitter Profile Photo

1/ Did you know the genome might have hidden protein-coding genes? In the 25 years since the Human Genome Project, research has been tied to a consensus set of 20,000 protein-coding genes. But the ‘dark genome’ has ‘dark proteins’ lurking in plain sight. biorxiv.org/content/10.110…

Luis Cedeño-Rosario, PhD (@luisci22) 's Twitter Profile Photo

So happy and excited for been selected as one of the winners for the 2024 ASBMB Molecular Motifs bioart competition! Click the link to see all the beautiful images that will be featured in the 2025 ASBMB calendar 🎉 Rutter Lab asbmb.org/asbmb-today/pe…

Dan Michele (@michelelabum) 's Twitter Profile Photo

Congrats to UMPhysiology postdoc Megan Radyk, PhD for receiving a NIH MOSAIC K99/R00 grant from NIGMS to study the role of altered cell metabolism during the precancerous stages and tumor initiation of pancreatic cancer. Lyssiotis Lab Shah Lab U-M Rogel Cancer Center

Congrats to <a href="/UMPhysiology/">UMPhysiology</a> postdoc <a href="/radykm/">Megan Radyk, PhD</a> for receiving a NIH MOSAIC K99/R00 grant from <a href="/NIGMS/">NIGMS</a> to study the role of altered cell metabolism during the precancerous stages and tumor initiation of pancreatic cancer. <a href="/LyssiotisLab/">Lyssiotis Lab</a> <a href="/YatrikShahLab/">Shah Lab</a> <a href="/UMRogelCancer/">U-M Rogel Cancer Center</a>
Muir Lab (@muir_lab) 's Twitter Profile Photo

Hi #metabolism twitter. ~5 years ago wrote a review with MVH Lab and DMM Journal about how the microenvironment drives many metabolic features/targets of cancers: tinyurl.com/3sk263z9 1/7

Lyssiotis Lab (@lyssiotislab) 's Twitter Profile Photo

WAY. TO. GO. Megan! So proud of all you’ve accomplished, so excited to see what’s next! Psst: hiring committees, Megan is on the job market

Muir Lab (@muir_lab) 's Twitter Profile Photo

Research Scientist position is open @ the UChicago Metabolomics Platform. Exciting position to work with cutting edge instrumentation to perform metabolomics, lipidomics and stable isotope tracing experiments! Please RT and forward onto anyone interested! uchicago.wd5.myworkdayjobs.com/en-US/External…

Nature Metabolism (@natmetabolism) 's Twitter Profile Photo

RESEARCH | Liu, Raught, Fairn, Neculai et al. (Zhejiang University, Dalhousie University): S-acylation of the adipose triacylglyceride lipase, the rate-limiting enzyme of lipolysis, is shown to be required for lipolysis & lipid-droplet homeostasis in mice. nature.com/articles/s4225…

Megan Radyk, PhD (@radykm) 's Twitter Profile Photo

I’m very excited to share the news that my #NIHMOSAIC K99/R00 from NIGMS has been awarded! This wouldn’t be possible without the amazing mentors, colleagues, and friends who have supported my science journey

Eric Topol (@erictopol) 's Twitter Profile Photo

Microplastic pollution is an environmental and public health crisis, with little action being taken. A new Science Magazine review by Prof. Richard C Thompson OBE FRS and colleagues is outstanding science.org/doi/10.1126/sc…

Microplastic pollution is an environmental and public health crisis, with little action being taken. A new <a href="/ScienceMagazine/">Science Magazine</a> review by <a href="/ProfRThompson/">Prof. Richard C Thompson OBE FRS</a> and colleagues is outstanding 
science.org/doi/10.1126/sc…
Nature Biotechnology (@naturebiotech) 's Twitter Profile Photo

A PROTAC broadly degrades 13 out of 17 highly-prevalent oncogenic KRAS alleles, inducing regression in tumor-bearing mice. science.org/doi/10.1126/sc… #NBThighlight