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Desacetylcinobufotalin (Deacetylcinobufotalin) Sale

(Synonyms: 去乙酰华蟾蜍它灵,Deacetylcinobufotalin) 目录号 : GC34157

Desacetylcinbufotalin (Deacetylcinbufotalin) 是一种天然化合物;凋亡诱导剂,对HepG2细胞有明显抑制作用,IC50值为0.0279μ;mol/ml。

Desacetylcinobufotalin (Deacetylcinobufotalin) Chemical Structure

Cas No.:4099-30-3

规格 价格 库存 购买数量
1mg
¥1,350.00
现货
5mg
¥3,780.00
现货

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Sample solution is provided at 25 µL, 10mM.

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产品描述

Desacetylcinobufotalin is a natural compound; apoptosis inducer and shows the marked inhibition effect to HepG2 cells and the IC50 value is 0.0279μmol/ml.

[1]. The Effect and Mechanism of Apoptosis Induced by Desacetylcinobufotalin (DEBF) in Human Hepatocellular Carcinoma HepG2 Cells

Chemical Properties

Cas No. 4099-30-3 SDF
别名 去乙酰华蟾蜍它灵,Deacetylcinobufotalin
Canonical SMILES C[C@]([C@@H](C(C=C1)=COC1=O)[C@H]2O)(CC[C@@]3([H])[C@@]4([H])CC[C@@]5(O)[C@@]3(CC[C@H](O)C5)C)[C@@]64[C@@H]2O6
分子式 C24H32O6 分子量 416.51
溶解度 Soluble in DMSO 储存条件 Store at -20°C
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溶解性数据

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1 mg 5 mg 10 mg
1 mM 2.4009 mL 12.0045 mL 24.009 mL
5 mM 0.4802 mL 2.4009 mL 4.8018 mL
10 mM 0.2401 mL 1.2005 mL 2.4009 mL
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Research Update

Comparative Pharmacokinetics of Cinobufacini Capsule and Injection by UPLC-MS/MS

Front Pharmacol 2022 Jul 18;13:944041.PMID:35928275DOI:PMC9343874

Cinobufacini capsule and injection are two different formulations from the same source, obtained from the extraction of the skin of Bufo bufo gargarizans Cantor, which have been approved by the Chinese State Food and Drug Administration (CFDA) for the treatment of various cancers. Our previous study has found that the cinobufacini capsule and injection exhibited different anticancer effects, but their different pharmacokinetic behaviors, which could give a cause of that, have never been reported. So a sensitive and selective method for the simultaneous quantitation of 13 compounds in the rat plasma, including bufothionine, hellebrigenin, bufalin, gamabufotalin, telocinobufagin, cinobufagin, arenobufagin, cinobufotalin, Desacetylcinobufotalin, bufotalin, pseudobufarenogin, resibufogenin, and desacetylcinobufagin, was established by using the Agilent 6460 mass spectrometer equipped with an ESI ion source in a multiple-reaction monitoring (MRM) mode. Chromatographic analysis was accomplished in 6 min by using an Agilent SB-C18 column and a mobile phase consisting of 0.1% formic acid in water and acetonitrile in an optimized gradient program at a flow rate of 0.3 ml/min. The correlation coefficients (r) of all analytes ranged from 0.9967 to 0.9996, while their lower limits of quantification ranged from 0.20 to 4.84 ng/ml. The method has been fully verified and applied for the pharmacokinetic difference study of the Cinobufacini capsule and injection in rats. The results showed that nine components could be quantitated in rat plasma samples after the administration of the cinobufacini capsule, while only bufothionine, bufalin, arenobufagin, and pseudobufarenogin could be detected in the cinobufacini injection group. Their pharmacokinetic studies indicated telocinobufagin, bufalin, desacetylcinobufagin, and arenobufagin were predicted as the potential active substances of the Cinobufacini capsule, while bufothionine was considered as a major ingredient in the cinobufacini injection due to its relatively high blood drug exposure. Also, the AUC of the nine components in cinobufacini capsule groups with three different doses showed a similar trend with significant differences, and the exposure increased with the increase of the dose. The pharmacokinetic characteristics of all major ingredients in cinobufacini capsules and injection were of wide variation, which could be used to explain differences in the efficacy of the cinobufacini capsule and injection and infer the pharmacodynamic ingredients of various cinobufacini preparations.