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Submit ReviewA library of 1280 biologically active compounds from the Tocris catalog. Covers a wide range of pharmacological targets and research areas. Compounds are supplied pre-dissolved in 50 μL 10 mM DMSO solutions. A larger volume is available as Tocriscreen Plus (Cat. No. 5840).
Storage | Store at -20°C |
The technical data provided above is for guidance only. For batch specific data refer to the Certificate of Analysis.
Tocris products are intended for laboratory research use only, unless stated otherwise.
References are publications that support the biological activity of the product.
Li et al (2011) Generation of iPSCs from mouse fibroblasts with a single gene, Oct4, and small molecules. Cell Research 21 196 PMID: 20956998
Beacham et al (2010) Cell-based potassium ion channel screening using the FluxORTM assay. J.Biomol.Screen. 15 44 PMID: 20208034
Hattori et al (2010) Small-molecule screen identifies reactive oxygen species as key regulators of neutrophil chemotaxis. Proc.Natl.Acad.Sci.USA 107 3546 PMID: 20142487
Li et al (2015) Small-molecule-driven direct reprogramming of mouse fibroblasts into functional neurons. Cell Stem Cell 17 195 PMID: 26253201
Yu et al (2015) Small molecules enhance CRISPR genome editing in pluripotent stem cells. Cell Stem Cell 16 142 PMID: 25658371
Keywords: Tocriscreen Plus Mini, Tocriscreen Plus Mini supplier, biologically, active, pre-dissolved, DMSO, 50ul, 10mM, solutions, Tocriscreen, Compound, Collections, Screening, Library, Libraries, HTS, HCS, high, throughput, content, 5841, Tocris Bioscience
Citations are publications that use Tocris products. Selected citations for Tocriscreen Plus Mini include:
Paul (2017) Hypothalamic regulation of regionally distinct adult neural stem cells and neurogenesis. Science 356 1383 PMID: 28619719
Sartori et al (2019) BIN1 recovers tauopathy-induced long-term memory deficits in mice and interacts with Tau through Thr348 phosphorylation. Acta Neuropathol PMID: 31065832
Trogden et al (2018) An image-based small-molecule screen identifies vimentin as a pharmacologically relevant target of SimV. in cancer cells. FASEB J 32 2841 PMID: 29401610
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