FK 866 hydrochloride

Discontinued Product

This product has been withdrawn from sale and is superseded by FK 866 (Cat. No. 8072)
说明: Potent and non-competitive NAMPT inhibitor; induces apoptosis and autophagy
化学名: 2-(E)-N-[4-(1-Benzoyl-4-piperidinyl)butyl]-3-(3-pyridinyl)-2-propenamide hydrochloride
纯度: ≥98% (HPLC)
说明书
引用文献 (2)
评论 (1)
文献 (1)

生物活性 for FK 866 hydrochloride

FK 866 hydrochloride is a non-competitive and potent inhibitor of NAMPT (nicotinamide phosphoribosyltransferase, PBEF1) (Ki = 0.3 nM); inhibits NAD biosynthesis. Induces delayed cell death by apoptosis in HepG2 human liver carcinoma cells (IC50 ~1 nM). Induces apoptosis in four different neuroblastoma cell lines; also induces autophagy in SH-SY5Y cells. Potentiates the cytotoxic effects induced by etoposide (Cat. No. 1226) and cisplatin (Cat. No. 2251).

技术数据 for FK 866 hydrochloride

分子量 427.97
公式 C24H29N3O2.HCl
储存 Store at -20°C
纯度 ≥98% (HPLC)
CAS Number 2727965-45-7
PubChem ID 78243733
InChI Key MULSIBUGDPOSHV-CALJPSDSSA-N
Smiles O=C(C2=CC=CC=C2)N1CCC(CCCCNC(/C=C/C3=CN=CC=C3)=O)CC1.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.

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关键词: FK 866 hydrochloride, FK 866 hydrochloride supplier, FK866, hydrochloride, Nicotinamide, phosphoribosyltransferase, NMPRTase, inhibitors, inhibits, autophagy, apoptosis, NAD, NAMPT, visfatin, PBEF, Apoptosis, Inducers, Autophagy, 4808, Tocris Bioscience

2 篇 FK 866 hydrochloride 的引用文献

引用文献是使用了 Tocris 产品的出版物。 FK 866 hydrochloride 的部分引用包括:

Ian A et al (2021) Upregulation of Antioxidant Capacity and Nucleotide Precursor Availability Suffices for Oncogenic Transformation. Cell Metab 33 94-109.e8 PMID: 33159852

Singh et al (2018) Nicotinamide Phosphoribosyltransferase Deficiency Potentiates the Antiproliferative Activity of MTX through Enhanced Depletion of Intracellular ATP. J Pharmacol Exp Ther 365 96 PMID: 29420256


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NAD inhibitor.
By Kishor Pant on 04/07/2022
分析类型: In Vitro
种属: Human
细胞系/组织: Cancer and liver cell lines

FK866 Inhibits NAD+ production and NAMPT activity in cancer cells.

Inhibition of NAD in cancer cells requires 3-4 days of treatment

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