Biological ActivityA 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 250 μL 10 mM DMSO solutions. A smaller volume is available as Tocriscreen Plus Mini (Cat. No. 5841).
Key Format and Product Details
- 96-well racks with Matrix storage tubes & SepraSeal caps
- Compounds arranged 80 per rack with 16 racks per library
- Pre-dissolved in DMSO
- Many compounds are exclusive to Tocris
- Unique library with low overlap
- Full chemical and biological data available
- Exceptional purity
Request Compound List
A list of the compounds available in the Tocriscreen Plus can be requested in Excel or SD format via our Tocriscreen & Custom Library Inquiries form.
The technical data provided above is for guidance only. For batch specific data refer to the Certificate of Analysis. All Tocris products are intended for laboratory research use only.
Generation of iPSCs from mouse fibroblasts with a single gene, Oct4, and small molecules.
Li et al.
Cell Research, 2011;21:196
Cell-based potassium ion channel screening using the FluxORTM assay.
Beacham et al.
Small-molecule screen identifies reactive oxygen species as key regulators of neutrophil chemotaxis.
Hattori et al.
The University of New Mexico Center for Molecular Discovery.
Edwards et al.
Comb.Chem.High Throughput Screen., 2014;17:256
Small-molecule-driven direct reprogramming of mouse fibroblasts into functional neurons.
Li et al.
Cell Stem Cell, 2015;17:195
Small molecules enhance CRISPR genome editing in pluripotent stem cells.
Yu et al.
Cell Stem Cell, 2015;16:142
Citations for Tocriscreen Plus
The citations listed below are publications that use Tocris products. Selected citations for Tocriscreen Plus include:
2 Citations: Showing 1 - 2
Repurposing of the CDK inhibitor PHA-767491 as a NRF2 inhibitor drug candidate for cancer therapy via redox modulation.
Authors: Liu Et al.
Invest New Drugs 2018;
In silico design of novel probes for the atypical opioid receptor MRGPRX2.
Authors: Lansu Et al.
Nat Chem Biol 2017;13(5):529
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