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Raj L, Ide T, Gurkar AU, Foley M, Schenone M, Li X, Tolliday NJ, Golub TR, Carr SA, Shamji AF, Stern AM, Mandinova A, Schreiber SL, Lee SW. Nature. 2011 475:231-4. doi: 10.1038/nature10167. PMCID: PMC3316487
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2014-01-27 | MSV000078537 | MassIVE
Wen Q, Goldenson B, Silver SJ, Schenone M, Dancik V, Huang Z, Wang LZ, Lewis TA, An WF, Li X, Bray MA, Thiollier C, Diebold L, Gilles L, Vokes MS, Moore CB, Bliss-Moreau M, Verplank L, Tolliday NJ, Mishra R, Vemula S, Shi J, Wei L, Kapur R, Lopez CK, Gerby B, Ballerini P, Pflumio F, Gilliland DG, Go...
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2014-01-27 | MSV000078536 | MassIVE

Study question: Can a novel machine learning pipeline create predictive models that identify a composite biomarker to differentiate live normally sited pregnancies (LNSP) from non-viable pregnancies in women presenting with pain and/or bleeding in early gestation?

Summary answer: Serum met...

2025-08-14 | MTBLS6219 | MetaboLights
Neutrophils are key effector leukocytes of the innate immune system and play a pivotal role in defending the host against microbial infections. Recent studies have identified a crucial link between glycolysis and neutrophil cellular functions. We have investigated in human neutrophils, the intricate...
2025-08-14 | MTBLS6215 | MetaboLights
Yang R, Meyer AS, Droujinine I, Udeshi ND, Hu Y, Guo J, McMahon J, Carey DK, Xu C, Qiao F, Sha J, Qin S, Rocco D, Wohlschlegel J, Ting AY, Carr SA, Perrimon N, McMahon AP. 2022. Organ functions are highly specialized and interdependent. Tissue-specific secreted factors play a critical role in organ...
ORGANISM(S): Mus Musculus (ncbitaxon:10090) 
2022-02-16 | MSV000088848 | MassIVE
Neutrophils play a key role in the pathophysiology of rheumatoid arthritis (RA) where release of ROS and proteases directly causes damage to joints and tissues. Neutrophil function is directly affected by Janus Kinase (JAK) inhibitor drugs, including tofacitinib and baricitinib, which are clinically...
2023-07-11 | MTBLS4766 | MetaboLights
Here we describe a bead-based method capable of profiling tyrosine kinase phosphorylations in a multiplexed, high-throughput and low-cost manner. This approach allows for the discovery of tyrosine kinase-activating events, even when the DNA sequence is wild-type. In an effort to pilot the establishm...
ORGANISM(S): Homo sapiens 
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