Hong-ping HOU, Guang-ping ZHANG, Li-na MA, 等. Effects and Mechanism of Action of Artemisinin on Mitochondria of Plasmodium berghei[J]. Chinese Journal of Integrative Medicine, 2020,26(4):277-282.
Hong-ping HOU, Guang-ping ZHANG, Li-na MA, et al. Effects and Mechanism of Action of Artemisinin on Mitochondria of Plasmodium berghei[J]. Chinese Journal of Integrative Medicine, 2020,26(4):277-282.
Hong-ping HOU, Guang-ping ZHANG, Li-na MA, 等. Effects and Mechanism of Action of Artemisinin on Mitochondria of Plasmodium berghei[J]. Chinese Journal of Integrative Medicine, 2020,26(4):277-282. DOI: 10.1007/s11655-019-3164-x.
Hong-ping HOU, Guang-ping ZHANG, Li-na MA, et al. Effects and Mechanism of Action of Artemisinin on Mitochondria of Plasmodium berghei[J]. Chinese Journal of Integrative Medicine, 2020,26(4):277-282. DOI: 10.1007/s11655-019-3164-x.
Effects and Mechanism of Action of Artemisinin on Mitochondria of Plasmodium berghei
摘要
Abstract
Objective:
2
To study the antimalarial effects and mechanisms of artemisinin (Qinghaosu in Chinese
QHS) on mitochondria in mice infected with
Plasmodium berghei
.
Methods:
2
A total of 108 C57 mice infected with
Plasmodium berghei
were randomly divided into 3 groups by weight: the control group
200 and 400 mg/kg QHS groups. The two QHS treatment groups were further divided into 4 sub-groups with 12 animals each time according to the treatment time
0.5
1
2
and 4 h. Normal saline was intragastrically (i.g.) administered to the control group. The other two groups received different doses of QHS by i.g. administration. Animals were treated once with QHS for different detection time as follows: 0.5
1
2
and 4 h. The mitochondrial energy metabolism
oxidative damage
membrane potential
and membrane permeability and other indexes were detected.
Results:
2
After administration of 200 and 400 mg/kg QHS
adenosine triphosphate (ATP) levels in
Plasmodium
and its mitochondria were reduced (
P
<
0.05)
the levels of reactive oxygen species (ROS) and malondialdehyde (MDA) were increased (
P
<
0.05)
and the activity of superoxide dismutase (SOD) was also increased (
P
<
0.05). At the same time
the membrane potential of the mitochondria was reduced and the degree to which the membrane permeability transition pore was opened was irreversibly increased (
P
<
0.05).
Conclusions:
2
Mitochondria in
Plasmodium
were the targets of QHS
which can adversely affect mitochondrial energy metabolism
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相关作者
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相关机构
Institute of Chinese (Tibetan) Medicine Resources, Gansu University of Chinese Medicine
College of Pharmacy, Gansu University of Chinese Medicine
Gansu Provincial Hospital
First School of Clinical Medicine, Gansu University of Chinese Medicine
Institute of Integrated Traditional Chinese and Western Medicine, Sun Yat-Sen University