Congrats to @WCMCPathology Drs. Chatterjee, Linares, Cid-Diaz (@TaniaTalu), Duran, et al, on their new @NatureComms paper: "Increased translation driven by non-canonical EZH2 creates a synthetic vulnerability in enzalutamide-resistant #prostatecancer."
https://t.co/hDlzp9ztq8
Direct RNA Sequencing Supports Novel Discoveries in RNA Biology
@nanopore observes that direct analysis has already enhanced research across species, disease states, and applications.
https://t.co/EXdZ8zPaJH
I'm very happy with how this image turned out! I'm detecting Tau phosphorylation before full fibrillary tangles in a monkey model of #Alzheimer disease. Healthy neurons: 🟠NeuN, Dying neurons: Phosphorylated Tau ( 🟣 s422), cyan-AT8 and Dapi 🔵. It's #FluorescenceFriday!🧠🔬
We’re excited to announce a collaboration with @FlatironHealth to integrate our comprehensive genomic testing directly into their cloud-based EMR platform – allowing the 4,200 providers in Flatiron’s network to order and receive results from Tempus directly in the OncoEMR workflow. Read more: https://t.co/gqo0AY5RUi
Did you know that all living things have DNA within their cells? Aziz Sancar, 2015 chemistry laureate, showed DNA damaged by UV light can be repaired with certain enzymes which gave researchers insight into cellular homeostasis.
CAR T-Cells Use SNIPR Technology to Confirm Cancer Targets before Firing
@UCSF researchers have designed highly customizable biological sensors that ensure engineered immune cells are only activated in certain environments—such as the vicinity of a tumor.
https://t.co/y9JfgGW0w4
🎉🪅🥳ESP is celebrating #InternationalPathologyDay!
#pathology is the foundation of modern #Medicine, and #pathologists play a crucial role for diagnosis, screening and management of many diseases!
We are joined in this glorious day by our affiliated national societies!
#PathX
The fact that academicians contribute hours of their increasingly limited time to scientific peer review, and then are required to PAY crazy $$ to publish papers in the same journals is asinine. Seems we have only ourselves to blame for falling mercy to such a scam.
Thrilled to report Patho-DBiT, just published in Cell 😊. It allows us to directly “see” all kinds of RNA species on the same clinical FFPE tissue slide, including mRNA, miRNA, snRNA, snoRNA, tRNA, etc, and splicing isoforms, genetic alterations (SNV, CNV, etc). Really a fun, cool, and powerful tool to explore human biology 🤩🤩
@CellCellPress
https://t.co/JUMiK16P5O
I didn’t know we can map LOINC to orders (EAP) for interoperability. It makes sense but it’s challenging. It’s amazing how much work it goes behind the scene to make smooth HIE happen. #clinical#informatics#HIE