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Combinatorial Anticancer Drug Screen Identifies Off-Target Effects of  Epigenetic Chemical Probes | ACS Chemical Biology
Combinatorial Anticancer Drug Screen Identifies Off-Target Effects of Epigenetic Chemical Probes | ACS Chemical Biology

Using Chemical Probes – A Brief Guide | Tocris Bioscience
Using Chemical Probes – A Brief Guide | Tocris Bioscience

Probe SGC-CBP30 | Chemical Probes Portal
Probe SGC-CBP30 | Chemical Probes Portal

Target 2035 – an update on private sector contributions - RSC Medicinal  Chemistry (RSC Publishing) DOI:10.1039/D2MD00441K
Target 2035 – an update on private sector contributions - RSC Medicinal Chemistry (RSC Publishing) DOI:10.1039/D2MD00441K

SGC-CAMKK2-1: A Chemical Probe for CAMKK2.
SGC-CAMKK2-1: A Chemical Probe for CAMKK2.

SGC-CBP30 | SGC
SGC-CBP30 | SGC

SGC-CBP30 ≥98% (HPLC) | Sigma-Aldrich
SGC-CBP30 ≥98% (HPLC) | Sigma-Aldrich

SGC-GAK-1 | SML2202-5MG | SIGMA-ALDRICH | SLS
SGC-GAK-1 | SML2202-5MG | SIGMA-ALDRICH | SLS

BAY-474, a SGC Epigenetic Probe, is a Tyrosine-Protein Kinase c-Met  Inhibitor - Network of Cancer Research
BAY-474, a SGC Epigenetic Probe, is a Tyrosine-Protein Kinase c-Met Inhibitor - Network of Cancer Research

Chemical Probes: Choosing and using small-molecule tools to investigate  protein targets
Chemical Probes: Choosing and using small-molecule tools to investigate protein targets

Donated chemical probes | SGC
Donated chemical probes | SGC

Structural Genomics Consortium
Structural Genomics Consortium

Using Chemical Probes – A Brief Guide | Tocris Bioscience
Using Chemical Probes – A Brief Guide | Tocris Bioscience

Deep Annotation of Donated Chemical Probes (DCP) in Organotypic Human Liver  Cultures and Patient-Derived Organoids from Tumor and Normal Colorectum |  ACS Chemical Biology
Deep Annotation of Donated Chemical Probes (DCP) in Organotypic Human Liver Cultures and Patient-Derived Organoids from Tumor and Normal Colorectum | ACS Chemical Biology

Probing your next target? Chemical Probes feature in Open Targets
Probing your next target? Chemical Probes feature in Open Targets

SGC-CK2-1: The First Selective Chemical Probe for the Pleiotropic Kinase  CK2 | Organic Chemistry | ChemRxiv | Cambridge Open Engage
SGC-CK2-1: The First Selective Chemical Probe for the Pleiotropic Kinase CK2 | Organic Chemistry | ChemRxiv | Cambridge Open Engage

Probe SGC-iMLLT | Chemical Probes Portal
Probe SGC-iMLLT | Chemical Probes Portal

Development of SGC-GAK-1 as an orally active in vivo probe for cyclin G  associated kinase through cytochrome P450 inhibition | bioRxiv
Development of SGC-GAK-1 as an orally active in vivo probe for cyclin G associated kinase through cytochrome P450 inhibition | bioRxiv

Probing your next target? Chemical Probes feature in Open Targets
Probing your next target? Chemical Probes feature in Open Targets

Kinase Chemogenomics — SGC-UNC
Kinase Chemogenomics — SGC-UNC

SGC's Donated Chemical Probes Program: Driving Drug Discovery and Target  Biology | SGC
SGC's Donated Chemical Probes Program: Driving Drug Discovery and Target Biology | SGC

Chemical Probes | SGC
Chemical Probes | SGC

Development of a potent and selective chemical probe for the pleiotropic  kinase CK2 - ScienceDirect
Development of a potent and selective chemical probe for the pleiotropic kinase CK2 - ScienceDirect