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纸质出版日期:2015
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汪洋, 唐泽耀, 王珂萌, 等. 茶色素对离体蟾蜍心肌收缩力的保护作用[J]. 中国实验方剂学杂志, 2015,21(12):90-94.
WANG Yang, TANG Ze-yao, WANG Ke-meng, et al. Protective Effect of Tea Pigments on Isolated Toad Myocardial Contraction[J]. Chinese journal of experimental traditional medical formulae, 2015, 21(12): 90-94.
汪洋, 唐泽耀, 王珂萌, 等. 茶色素对离体蟾蜍心肌收缩力的保护作用[J]. 中国实验方剂学杂志, 2015,21(12):90-94. DOI: 10.13422/j.cnki.syfjx.2015120090.
WANG Yang, TANG Ze-yao, WANG Ke-meng, et al. Protective Effect of Tea Pigments on Isolated Toad Myocardial Contraction[J]. Chinese journal of experimental traditional medical formulae, 2015, 21(12): 90-94. DOI: 10.13422/j.cnki.syfjx.2015120090.
目的: 探讨茶色素(tea pigment
TP)对离体蟾蜍心肌收缩力的保护作用机制。 方法: 将蟾蜍随机分为对照组和实验组
对照组又分为正常任氏液组、阴性组、阳性组和药品组
正常任氏液组为蟾蜍离体心脏标本只灌流正常任氏液
阴性组为蟾蜍离体心脏标本在灌流正常任氏液后改灌流低钙任氏液
阳性组为蟾蜍离体心脏标本在灌流正常任氏液后改灌流高钙任氏液
药品组为蟾蜍离体心脏标本在灌流正常任氏液后分别改灌流TP
维拉帕米
阿托品和异丙肾上腺素溶液
观察药物本身作用;实验组分为维拉帕米组、阿托品组和异丙肾上腺素组
每一药品组又分为低钙组和高钙组
低钙组或高钙组又分为TP前或后加药2组
每组8只。采用斯氏法制备离体蛙心灌流标本
在灌流200 mg·L-1 TP前或后分别灌流7.27 mg·L-1维拉帕米、10 mg·L-1阿托品或10 mg·L-1异丙肾上腺素
应用BL-420F生物机能实验系统记录离体蟾蜍心肌收缩曲线
并对心肌收缩力进行统计学分析。 结果: TP可使心肌收缩力在低钙时增强(P<0.05)
高钙时抑制(P<0.05)的心肌保护作用
可部分被维拉帕米阻断(P<0.01)
被异丙肾上腺素兴奋(P<0.01)
对阿托品既有协同又有拮抗作用(P<0.05)。 结论: TP对离体蟾蜍心肌收缩力的保护作用可能与钙离子通道
M受体及β受体有关。
Objective: To study the adjustment mechanism of tea pigments (TP) on isolated toad myocardial contraction. Method: Toads were randomly assigned to the control groups and the experimental groups
the control groups were then divided into the normal Ringer solution group
the negative group
the positive group and the drug group. The normal Ringer solution group received Ringer solution only
the negative groups received low calcium Ringer solution following Ringer solution
the positive group received high calcium Ringer solution following Ringer solution and the drug group received TP
verapamil
atropine or isopropyl epinephrine solution
respectively
following Ringer solution. The effects on specimens of isolated toad hearts were observed. The experimental groups were divided into the verapamil group
the atropine group and the isopropyl adrenaline. All drug groups in the experimental groups included the low calcium and high calcium groups
and the low calcium and high calcium group was then divided into two groups as before or after TP-adding of 8 toads each. The perfusion specimens of isolated toad heart were prepared by Si's method. The specimens were perfused by verapamil (7.27 mg·L-1)
atropine (10 mg·L-1) and isoproterenol (10 mg·L-1) before or after TP adding (200 mg·L-1). The toad myocardial contraction curves were recorded by using BL-420F biological function in vitro experimental system
and the myocardial contractility was analyzed statistically. Result: Myocardial contractility increased when perfusing low calcium and inhibited when perfusing high calcium (P<0.05)
and it could be blocked partially by verapamil and stimulated by isoprenaline (P<0.01). It had both cooperation and antagonism on atropine (P<0.05). Conclusion: The protective effect of TP on isolated toad heart may be associated with calcium channels
M receptor and β receptor.
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