Study on Mechanisms of Pricking Blood at "Twelve-well Points of the Hand" in Resisting Experimental Cerebral Ischemia in the Rabbit
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Study on Mechanisms of Pricking Blood at "Twelve-well Points of the Hand" in Resisting Experimental Cerebral Ischemia in the Rabbit
Acupuncture ResearchIssue 2, Pages: 101-104(1999)
作者机构:
湖南中医学院,长沙,410007
作者简介:
基金信息:
DOI:
CLC:
Published:1999
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Study on Mechanisms of Pricking Blood at "Twelve-well Points of the Hand" in Resisting Experimental Cerebral Ischemia in the Rabbit[J]. Acupuncture research, 1999, (2): 101-104.
DOI:
Study on Mechanisms of Pricking Blood at "Twelve-well Points of the Hand" in Resisting Experimental Cerebral Ischemia in the Rabbit[J]. Acupuncture research, 1999, (2): 101-104.DOI:
Study on Mechanisms of Pricking Blood at "Twelve-well Points of the Hand" in Resisting Experimental Cerebral Ischemia in the Rabbit
the effect of pricking blood of "twelve-well points of the hand" in resisting cerebral ischemia was observed in 31 rabbits. These rabbits were randomly divided into control group (n = 10 )
ischemia group (n = 11 ) and ischemia plus blood letting group (n = 10). Results showed that two hours after occlusion of rabbit bilateral common carotid arteries
contents of Ca(2+)超负荷,防止氧自由基的毒副作用。
Abstract
In the present study
the effect of pricking blood of "twelve-well points of the hand" in resisting cerebral ischemia was observed in 31 rabbits. These rabbits were randomly divided into control group (n = 10 )
ischemia group (n = 11 ) and ischemia plus blood letting group (n = 10). Results showed that two hours after occlusion of rabbit bilateral common carotid arteries
contents of Ca
(2+)
lipid peroxide (LPO) and cAMP of the brain tissues all increased significantly (P
<
0. 05)
but the activity of both superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) lowered evidently (P
<
0. 01
0. 05)
indicating overload of intracellular Ca(2+)
lipid peroxide (LPO) and cAMP of the brain tissues all increased significantly (P
<
0. 05)
but the activity of both superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) lowered evidently (P
<
0. 01
0. 05)
indicating overload of intracellular Ca
(2+)
and increase of oxygen free radical. After bloodletting of "twelve-well points"
contents of Ca(2+) and increase of oxygen free radical. After bloodletting of "twelve-well points"
contents of Ca
(2+)
malonyldialdehyde (MDA) and cAMP lowered sig- nificantly (P
<
0. 05 )
while the activity of SOD increased considerably (P
<
0. 01 ). Results suggested that blood-letting of "twelve-well points" could resist cerebral ischemia-induced overload of intracellular Ca(2+)
malonyldialdehyde (MDA) and cAMP lowered sig- nificantly (P
<
0. 05 )
while the activity of SOD increased considerably (P
<
0. 01 ). Results suggested that blood-letting of "twelve-well points" could resist cerebral ischemia-induced overload of intracellular Ca
(2+)
of the brain tissues and prevented the toxic action of oxygen free radical.