现货大促销,价格低至8折起,量大更优惠,详细咨询客服
全部分类
全部分类
  • Tetrahydropalmatine
Tetrahydropalmatine的可视化放大

Tetrahydropalmatine

原价
¥378
价格
340
Tetrahydropalmatine的二维码

所有产品仅用于科学研究,我们不为任何个人用途提供产品和服务

询价有惊喜,量大更优惠 点击这里给我发消息

可选包装 >>>
首页
Extracted from Corydalis yanhusuo W. T. Wang;Suitability:DMSO,acidic solvent;Store the product in sealed,cool and dry condition

货号:ajcn5722
CAS:10097-84-4
分子式:C21H25O4N
分子量:355.42
纯度:98%
存储:Store at -20°C
库存:现货

Background:

Tetrahydropalmatine, an active component isolated from corydalis, possesses analgesic effects. Tetrahydropalmatine acts through inhibition of amygdaloid release of dopamine to inhibit an epileptic attack in rats[1].


Tetrahydropalmatine (THP), an active component isolated from corydalis (a Chinese herbal medicine), possesses analgesic effects. Picrotoxin treatment alone has a significant effect on the following activity measure: there is an increase in horizontal motion time (HMT), vertical motion time (VMT), clockwise turnings (CT), anticlockwise turning (ACT) and a decrease in freezing time (FT). Tetrahydropalmatine treatment alone causes a decrease in HMT, VMT and total distance traveled (TDT), but an increase in FT. Pretreatment of rats with an i.p. dose of 10 mg/kg or 15 mg/kg of Tetrahydropalmatine significantly attenuates the Picrotoxin-induced enhancement in HMT, VMT, CT, ACT and TDT, as well as reduction in FT. Another 48 rats under urethane anesthesia are randomly divided into six groups, each of eight rats. The s.c. injection of Picrotoxin causes an increase in amygdaloid release of dopamine (DA), while i.p. injection of Tetrahydropalmatine at 10 mg/kg has an insignificant effect on amygdaloid release of DA. Again, the Picrotoxin-induced increase in amygdaloid release of DA is significantly attenuated by pretreatment with Tetrahydropalmatine. The Picrotoxin-induced augmented amygdaloid release of DA is almost completely abolished by pretreatment with Tetrahydropalmatine 30 min before s.c. injection of Picrotoxin[1].


参考文献:
[1]. Chang CK, et al. DL-Tetrahydropalmatine may act through inhibition of amygdaloid release of dopamine to inhibit an epileptic attack in rats. Neurosci Lett. 2001 Jul 20;307(3):163-6.


动态评分

0.0

没有评分数据
没有评价数据
一键回到顶部
展开 收缩
安捷凯在线客服