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  • Quinidine
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Quinidine

An antiarrhythmic agent

原价
¥337-1250
价格
270-1000
Quinidine的二维码

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  • 货号: ajci12770
  • CAS: 56-54-2
  • 别名: 奎尼丁
  • 分子式: C20H24N2O2
  • 分子量: 324.42
  • 纯度: >98%
  • 溶解度: ≥ 11.95mg/mL in DMSO
  • 储存: 4°C, protect from light, stored under nitrogen
  • 库存: 现货

Background

Quinidine is an antiarrhythmic agent for the treatment of abnormal heart rhythms and also malaria.


Quinidine is a clinical anti-arrythmic drug which affects ionic currents in heart muscle and which has also been shown to be a potent blocker of several classes of K+ channel in a variety of cell types. Bath application of quinidine causes a dose-dependent reduction of the peak amplitude of Ik. The Kd for blockade of Ik at 0 mV is estimated to be 41 μM. Quinidine elicits a dose-dependent increase of the rate of the decay of Ik and this effect is enhanced by membrane depolarization. Quinidine also causes a 5 mV hyperpolarizing shift of the steady-state inactivation curve and increases the half-time for recovery from inactivation. Quinidine does not affect the onset of inactivation measured at -30 mV[1].


Quinidine sulfate is rapidly absorbed, with peak plasma concentrations 60-90 min after an oral dose. Other salts (gluconate, polygalacturonate) are more slowly absorbed, with lower peak concentrations. Quinidine is approximately 70-90 % bound to plasma proteins. It undergoes hepatic oxidative metabolism to form an N-oxide, a 3-hydroxy form, an O-demethyl form and 2'-quinidinone. Over one-half of patients starting quinidine stop within the first year of therapy because of side effects. These include, commonly, diarrhea, nausea, and vomiting which are not necessarily related to high plasma concentrations[2]. Quinidine inhibits metabolism of amphetamine in rats. Quinidine pretreatment results in a significant decrease in the excretion of p-hydroxyamphetamine at 24 and 48 h to 7.2 and 24.1% of the vehicle-control levels, respectively, accompanied by a significant increase in amphetamine excretion between 24 and 48 h to 542% of the control[3].


参考文献:
[1]. Kehl SJ, et al. Quinidine-induced inhibition of the fast transient outward K+ current in rat melanotrophs. Br J Pharmacol. 1991 Jul;103(3):1807-13.
[2]. Roden DM, et al. Class I antiarrhythmic agents: quinidine, procainamide and N-acetylprocainamide, disopyramide.
[3]. Moody DE, et al. Quinidine inhibits in vivo metabolism of amphetamine in rats: impact upon correlation between GC/MS and immunoassay findings in rat urine. J Anal Toxicol. 1990 Sep-Oct;14(5):311-7.

Protocol

Animal experiment:

Rats: Three rats are placed in individual metabolic cages with free access to food and water. After 24 h, urine is collected (0 h) and the rats receive the following treatment: (1) no treatment; (2) 80 mg quinidine/kg (po) at 1.0 mL/kg, and (III) 50% ethanol (1.0 mL/kg). Two hours later, all three rats receive a single dose of 15 mg amphetamine/kg (po) at 1.0 mL/kg. Urine is then collected at 24 and 48 h after the administration of quinidine. This procedure is repeated three times. After collection of urine, volume and pH are measured and the urine is stored until analysis[3].

参考文献:

[1]. Kehl SJ, et al. Quinidine-induced inhibition of the fast transient outward K+ current in rat melanotrophs. Br J Pharmacol. 1991 Jul;103(3):1807-13.
[2]. Roden DM, et al. Class I antiarrhythmic agents: quinidine, procainamide and N-acetylprocainamide, disopyramide.
[3]. Moody DE, et al. Quinidine inhibits in vivo metabolism of amphetamine in rats: impact upon correlation between GC/MS and immunoassay findings in rat urine. J Anal Toxicol. 1990 Sep-Oct;14(5):311-7.

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