666-15

Pricing Availability   Qty
说明: Potent and selective CREB inhibitor
化学名: 3-(3-Aminopropoxy)-N-[2-[[3-[[(4-chloro-2-hydroxyphenyl)amino]carbonyl]-2-naphthalenyl]oxy]ethyl]-2-naphthalenecarboxamide hydrochloride
纯度: ≥98% (HPLC)
说明书
引用文献 (21)
评论

生物活性 for 666-15

666-15 is a potent and selective CREB inhibitor (IC50 = 81 nM). Inhibits cancer cell growth, without harming normal cells (up to 1 μM). Completely suppresses tumor growth in a breast cancer xenograft model.

化合物库 for 666-15

666-15 is also offered as part of the Tocriscreen 2.0 Max. 了解 Tocris 化合物库的更多信息。

技术数据 for 666-15

分子量 620.52
公式 C33H30ClN3O5.HCl
储存 Desiccate at RT
纯度 ≥98% (HPLC)
CAS Number 1433286-70-4
PubChem ID 71566396
InChI Key LELLCPHHYHLWBH-UHFFFAOYSA-N
Smiles NCCCOC1=CC2=CC=CC=C2C=C1C(NCCOC3=C(C(NC4=CC=C(Cl)C=C4O)=O)C=C(C=CC=C5)C5=C3)=O.Cl

上方提供的技术数据仅供参考。批次相关数据请参见分析证书。

Tocris products are intended for laboratory research use only, unless stated otherwise.

溶解性数据 for 666-15

溶剂 最高浓度 mg/mL 最高浓度 mM
溶解性
DMSO 62.05 100

制备储备液 for 666-15

以下数据基于产品分子量 620.52。 Batch specific molecular weights may vary from batch to batch due to the degree of hydration, which will affect the solvent volumes required to prepare stock solutions.

选择批次从而根据批次分子量重新计算:
浓度/溶剂体积/质量 1 mg 5 mg 10 mg
1 mM 1.61 mL 8.06 mL 16.12 mL
5 mM 0.32 mL 1.61 mL 3.22 mL
10 mM 0.16 mL 0.81 mL 1.61 mL
50 mM 0.03 mL 0.16 mL 0.32 mL

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产品说明书 for 666-15

分析证书/产品说明书
选择另一批次:

参考文献 for 666-15

参考文献是支持产品生物活性的出版物。

Xie et al (2015) Identification of a potent inhibitor of CREB-mediated gene transcription with efficacious in vivo anticancer activity J.Med.Chem. 58 5075 PMID: 26023867

Li et al (2016) Systemic inhibition of CREB is well-tolerated in vivo. Sci.Rep. 6 34513 PMID: 27694829


If you know of a relevant reference for 666-15, please let us know.

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查看全部 Other Transcription Factor Inhibitors

关键词: 666-15, 666-15 supplier, cyclic, adenosine, monophosphate, cAMP, response, element, binding, protein, CREB, inhibitors, inhibits, breast, cancer, potent, selective, Other, Transcription, Factors, 5661, Tocris Bioscience

21 篇 666-15 的引用文献

引用文献是使用了 Tocris 产品的出版物。 666-15 的部分引用包括:

Cirle A et al (2023) Adenosine receptors differentially mediate enteric glial cell death induced by Clostridioides difficile Toxins A and B. Front Immunol 13 956326 PMID: 36726986

Hamnett et al (2019) Vasoactive intestinal peptide controls the suprachiasmatic circadian clock network via ERK1/2 and DUSP4 signalling. Nat Commun 10 542 PMID: 30710088

Kleiner et al (2018) Activator protein-1 contributes to the NaCl-induced expression of VEGF and PlGF in RPE cells. Mol Vis 24 647 PMID: 30310263

O'Reilly et al (2019) Nutritionally Derived Metabolic Cues Typical of the Obese Microenvironment Increase Cholesterol Efflux Capacity of Adipose Tissue Macrophages. Mol Nutr Food Res 63 e1800713 PMID: 30411491

Phua (2017) Angiopoietin-like 4 mediates colonic inflammation by regulating chemokine transcript stability via tristetraprolin. Sci Rep 7 44351 PMID: 28287161

Israel et al (2021) Disruption of innate defense responses by endoglycosidase HPSE promotes cell survival. JCI Insight 6 PMID: 33621216

Asya et al (2021) Optogenetic activation of local colonic sympathetic innervations attenuates colitis by limiting immune cell extravasation. Immunity 54 1022-1036.e8 PMID: 33932356

Zhou et al (2019) Microglia Are Indispensable for Synaptic Plasticity in the Spinal Dorsal Horn and Chronic Pain. Cell Rep 27 3844 PMID: 31242418

Jiehan et al (2022) G protein-coupled receptor 151 regulates glucose metabolism and hepatic gluconeogenesis. Nat Commun 13 7408 PMID: 36456565

Ping et al (2022) Molecular and cellular mechanisms for differential effects of chronic social isolation stress in males and females. Mol Psychiatry 27 3056-3068 PMID: 35449296

Qinkun et al (2022) Cardiac natriuretic peptide deficiency sensitizes the heart to stress-induced ventricular arrhythmias via impaired CREB signalling. Cardiovasc Res 118 2124-2138 PMID: 34329394

Qing et al (2022) MTAP loss correlates with an immunosuppressive profile in GBM and its substrate MTA stimulates alternative macrophage polarization. Sci Rep 12 4183 PMID: 35264604

Konrad et al (2022) SS18-SSX drives CREB activation in synovial sarcoma. Cell Oncol (Dordr) 45 399-413 PMID: 35556229

Juan L et al (2019) PML hyposumoylation is responsible for the resistance of pancreatic cancer. FASEB J 33 12447-12463 PMID: 31557059

Reza et al (2019) Signal Transduction of Improving Effects of Ibudilast on Methamphetamine Induced Cell Death. Asian Pac J Cancer Prev 20 2763-2774 PMID: 31554375

Andreas et al (2020) Osmotic and hypoxic induction of osteopontin in retinal pigment epithelial cells: Involvement of purinergic receptor signaling. Mol Vis 26 188-203 PMID: 32214785

Hwa-Jung et al (2020) Mycobacterium avium subsp. paratuberculosis MAP1889c Protein Induces Maturation of Dendritic Cells and Drives Th2-biased Immune Responses. Cells 9 PMID: 32290379

Lara et al (2020) A dopamine-induced gene expression signature regulates neuronal function and cocaine response. Sci Adv 6 eaba4221 PMID: 32637607

Chris et al (2020) Neuronal hyperexcitability is a DLK-dependent trigger of herpes simplex virus reactivation that can be induced by IL-1. Elife 9 PMID: 33350386

Martin et al (2020) A high-throughput CRISPR interference screen for dissecting functional regulators of GPCR/cAMP signaling. PLoS Genet 16 e1009103 PMID: 33052901

Asma et al (2020) Resolvin E1 is a pro-repair molecule that promotes intestinal epithelial wound healing. Proc Natl Acad Sci U S A 117 9477-9482 PMID: 32300016


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