HEK293 Cells
"HEK293 Cells" is a descriptor in the National Library of Medicine's controlled vocabulary thesaurus,
MeSH (Medical Subject Headings). Descriptors are arranged in a hierarchical structure,
which enables searching at various levels of specificity.
A cell line generated from human embryonic kidney cells that were transformed with human adenovirus type 5.
Descriptor ID |
D057809
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MeSH Number(s) |
A11.251.210.172.750 A11.436.334
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Concept/Terms |
HEK293 Cells- HEK293 Cells
- Cell, HEK293
- Cells, HEK293
- HEK293 Cell
- 293T Cells
- 293T Cell
- Cell, 293T
- Cells, 293T
- HEK 293 Cells
- 293 Cell, HEK
- 293 Cells, HEK
- Cell, HEK 293
- Cells, HEK 293
- HEK 293 Cell
- Human Kidney Cell Line 293
- Human Embryonic Kidney Cell Line 293
- HEK 293 Cell Line
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Below are MeSH descriptors whose meaning is more general than "HEK293 Cells".
Below are MeSH descriptors whose meaning is more specific than "HEK293 Cells".
This graph shows the total number of publications written about "HEK293 Cells" by people in this website by year, and whether "HEK293 Cells" was a major or minor topic of these publications.
To see the data from this visualization as text, click here.
Year | Major Topic | Minor Topic | Total |
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2011 | 0 | 2 | 2 | 2012 | 0 | 4 | 4 | 2013 | 0 | 7 | 7 | 2014 | 0 | 10 | 10 | 2015 | 0 | 7 | 7 | 2016 | 0 | 2 | 2 | 2017 | 0 | 1 | 1 |
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Below are the most recent publications written about "HEK293 Cells" by people in Profiles.
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Kilpatrick LE, Friedman-Ohana R, Alcobia DC, Riching K, Peach CJ, Wheal AJ, Briddon SJ, Robers MB, Zimmerman K, Machleidt T, Wood KV, Woolard J, Hill SJ. Real-time analysis of the binding of fluorescent VEGF165a to VEGFR2 in living cells: Effect of receptor tyrosine kinase inhibitors and fate of internalized agonist-receptor complexes. Biochem Pharmacol. 2017 Jul 15; 136:62-75.
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Hothersall JD, Guo D, Sarda S, Sheppard RJ, Chen H, Keur W, Waring MJ, IJzerman AP, Hill SJ, Dale IL, Rawlins PB. Structure-Activity Relationships of the Sustained Effects of Adenosine A2A Receptor Agonists Driven by Slow Dissociation Kinetics. Mol Pharmacol. 2017 Jan; 91(1):25-38.
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Mali S, Moree WJ, Mitchell M, Widger W, Bark SJ. Observations on different resin strategies for affinity purification mass spectrometry of a tagged protein. Anal Biochem. 2016 Dec 15; 515:26-32.
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Storer Samaniego C, Suh JH, Chattopadhyay A, Olivares K, Guy N, Sivils JC, Dey P, Yumoto F, Fletterick RJ, Strom AM, Gustafsson JÅ, Webb P, Cox MB. The FKBP52 Cochaperone Acts in Synergy with ß-Catenin to Potentiate Androgen Receptor Signaling. PLoS One. 2015; 10(7):e0134015.
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Stoddart LA, Johnstone EKM, Wheal AJ, Goulding J, Robers MB, Machleidt T, Wood KV, Hill SJ, Pfleger KDG. Application of BRET to monitor ligand binding to GPCRs. Nat Methods. 2015 Jul; 12(7):661-663.
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Lee S, Lee TA, Song SJ, Park T, Park B. Hyperproduction of IL-6 caused by aberrant TDP-43 overexpression in high-fat diet-induced obese mice. FEBS Lett. 2015 Jul 08; 589(15):1825-31.
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Carter JJ, Wheal AJ, Hill SJ, Woolard J. Effects of receptor tyrosine kinase inhibitors on VEGF165 a- and VEGF165 b-stimulated gene transcription in HEK-293 cells expressing human VEGFR2. Br J Pharmacol. 2015 Jun; 172(12):3141-50.
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Najjar M, Suebsuwong C, Ray SS, Thapa RJ, Maki JL, Nogusa S, Shah S, Saleh D, Gough PJ, Bertin J, Yuan J, Balachandran S, Cuny GD, Degterev A. Structure guided design of potent and selective ponatinib-based hybrid inhibitors for RIPK1. Cell Rep. 2015 Mar 24; 10(11):1850-60.
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Mitchell M, Mali S, King CC, Bark SJ. Enhancing MALDI time-of-flight mass spectrometer performance through spectrum averaging. PLoS One. 2015; 10(3):e0120932.
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James TF, Nenov MN, Wildburger NC, Lichti CF, Luisi J, Vergara F, Panova-Electronova NI, Nilsson CL, Rudra JS, Green TA, Labate D, Laezza F. The Nav1.2 channel is regulated by GSK3. Biochim Biophys Acta. 2015 Apr; 1850(4):832-44.
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