Exploration of electroacupuncture at "Fengchi" (GB 20) and "Sishencong" (EX-HN 1) for attenuating learning and memory impairment in vascular dementia rats based on NMDAR/CREB/BDNF signaling pathway
Study on Mechanism|更新时间:2024-12-12
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Exploration of electroacupuncture at "Fengchi" (GB 20) and "Sishencong" (EX-HN 1) for attenuating learning and memory impairment in vascular dementia rats based on NMDAR/CREB/BDNF signaling pathway
Chinese Acupuncture & MoxibustionVol. 44, Issue 12, Pages: 1409-1417(2024)
SONG Yuanyu, CHEN Yinghua, SUN Wei, et al. Exploration of electroacupuncture at "Fengchi" (GB 20) and "Sishencong" (EX-HN 1) for attenuating learning and memory impairment in vascular dementia rats based on NMDAR/CREB/BDNF signaling pathway[J]. Chinese Acupuncture & Moxibustion, 2024, 44(12): 1409-1417.
DOI:
SONG Yuanyu, CHEN Yinghua, SUN Wei, et al. Exploration of electroacupuncture at "Fengchi" (GB 20) and "Sishencong" (EX-HN 1) for attenuating learning and memory impairment in vascular dementia rats based on NMDAR/CREB/BDNF signaling pathway[J]. Chinese Acupuncture & Moxibustion, 2024, 44(12): 1409-1417.DOI: 10.13703/j.0255-2930.20240605-k0003.
Exploration of electroacupuncture at "Fengchi" (GB 20) and "Sishencong" (EX-HN 1) for attenuating learning and memory impairment in vascular dementia rats based on NMDAR/CREB/BDNF signaling pathway
To explore the mechanism of electroacupuncture (EA) at "Fengchi" (GB 20) and "Sishencong" (EX-HN 1) on learning and memory impairment in vascular dementia (VD) rats by observing the influences on the N-methyl-D-aspartate receptor (NMDAR)/cyclic adenosine monophosphate response element-binding protein (CREB)/brain-derived neurotrophic factor (BDNF) signaling pathway and the excitotoxicity induced by hippocampal calciumoverload.
Methods
2
Thirty-two male SD rats of SPF grade were selected and randomized into a normal group (6 rats)
a sham-operation group (6 rats) and an operation group (20 rats). VD model was established with the modified Pulsinelli's four-vessel occlusion (4-VO) method. Twelve rats after successfully modeled were assigned randomly into a model group and an EA group
6 rats in each one. In the EA group
EA was delivered at bilateral "Fengchi" (GB 20) and "Sishencong" (EX-HN 1)
with the continuous wave
the frequency of 2 Hz and the electric current of 1 mA. Stimulation intensity was adjusted depending on the slightly trembling of rat head. EA was given once daily
30 min each time; and EA intervention was delivered for 21 days continuously. Using Morris water maze test
the learning and memory function was assessed. The neuronal morphology in the hippocampal CA1 was observed with HE staini
ng; the level of glutamate (GLU) in serum and hippocampal tissue
as well as the activity of calcium pump (Ca
2+
-ATP) in the hippocampus were detected using colorimetric method. The protein expression of NMDAR
calmodulin-dependent protein kinase Ⅱ (CaMKⅡ)
phosphorylated calmodulin-dependent protein kinase Ⅱ (p-CaMKⅡ)
phosphorylated cyclic phosphoradenosine effector element binding proteins (p-CREB)
CREB
and BDNF in the hippocampal CA1 was detected using immunohistochemistry. The protein expression of NMDAR
CREB
p-CREB and BDNF in the hippocampal tissue was detected using Western blot method.
Results
2
Compared to the sham-operation group
in the model group
the escape latency was prolonged and the platform crossing times of rats were reduced (
P
<
0.01)
the hippocampal neuron structure was damaged to different degrees
the structure in hippocampal CA1 was loosened
the arrangement disorganized
with clear grid-like structure; the neuronal morphology was irregular
pyknosis and even dissolution occurred
glial cells increased
blood capillary was dilated and the inflammatory cells were infiltrated and scattered. The level of GLU in the serum and hippocampal tissue and the protein expression of hippocampal NMDAR were elevated (
P
<
0.01)
the activity of Ca
2+
-ATP and the protein expression of CaMKⅡ
p-CaMKⅡ
CREB
p-CREB and BDNF were reduced (
P
<
0.01
P
<
0.05); and the ratio of p-CaMKⅡ/CaMKⅡ and that of p-CREB/CREB were dropped (
P
<
0.05). In comparison with the model group
in the EA group
the escape latency was shortened and the platform crossing times of rats rose (
P
<
0.01)
the arrangement was improved in the hippocampal CA1
the neuronal morphology was intact
the nucleoli were clear relatively and the pyknosis or dissolution were attenuated
the numbers of glial cells reduced relatively
the dilation of blood capillary was alleviated. The lev
el of GLU in the serum and hippocampal tissue and the protein expression of NMDAR were reduced in the hippocampal tissue (
P
<
0.01)
the activity of Ca
2+
-ATP and the protein expression of CaMKⅡ
p-CaMKⅡ
CREB
p-CREB and BDNF were elevated (
P
<
0.05
P
<
0.01); and the ratio of p-CaMKⅡ/CaMKⅡ and that of p-CREB/CREB increased (
P
<
0.05).
Conclusion
2
EA at "Fengchi" (GB 20) and "Sishencong" (EX-HN 1) can attenuate learning and memory impairment in VD rats
which may be obtained by reducing GLU level in hippocampal tissue
inhibiting hippocampal excitotoxicity
mediating protein expression related to the NMDAR/CREB/BDNF signaling pathway
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Related Author
SUN Wei
CHEN Yinghua
WU Tong
ZHAO Hongxu
SONG Yuanyu
MIAO Yue
LI Xinran
HAN Yusheng
Related Institution
Graduate School, Heilongjiang University of CM
Experimental Center, Heilongjiang University of CM
School of Acupuncture-Moxibustion and Tuina, Shaanxi University of CM
Shaanxi Provincial Key Laboratory of Acupuncture and Medicine
Second Clinical Medical College, Shaanxi University of CM