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1.黑龙江中医药大学附属第一医院针灸五科,哈尔滨 150040
2.黑龙江中医药大学
3.光明中医杂志社
陈英华,主任医师、教授。E-mail:chyh9000@163.com
收稿:2023-12-06,
网络首发:2024-03-05,
纸质出版:2024-07-12
移动端阅览
陈英华, 孙玮, 王浩宇, 等. 基于蛋白质组学探讨电针治疗血管性痴呆的作用机制[J]. 中国针灸, 2024,44(7):807-820.
CHEN Yinghua, SUN Wei, WANG Haoyu, et al. Mechanism of electroacupuncture for vascular dementia based on proteomics[J]. Chinese Acupuncture & Moxibustion, 2024, 44(7): 807-820.
陈英华, 孙玮, 王浩宇, 等. 基于蛋白质组学探讨电针治疗血管性痴呆的作用机制[J]. 中国针灸, 2024,44(7):807-820. DOI: 10.13703/j.0255-2930.20231206-k0002.
CHEN Yinghua, SUN Wei, WANG Haoyu, et al. Mechanism of electroacupuncture for vascular dementia based on proteomics[J]. Chinese Acupuncture & Moxibustion, 2024, 44(7): 807-820. DOI: 10.13703/j.0255-2930.20231206-k0002.
目的:
2
基于串联质谱标签(TMT)定量蛋白质组学技术,探讨电针治疗血管性痴呆(VD)的可能作用机制。
方法:
2
选用SPF级雄性SD大鼠80只,采用Morris水迷宫实验筛选出符合标准的78只SD大鼠,将其随机分为假手术组(18只)和手术组(60只)。手术组采用四血管阻断(4-VO)法复制VD模型,将造模成功的36只大鼠随机分为模型组(18只)和电针组(18只)。每组进一步按干预时间分为3个亚组,每亚组6只。造模后7 d对电针组大鼠行电针干预,穴取左右“四神聪”和双侧“风池”,予连续波,频率2 Hz,电流强度1 mA,每日1次,每次30 min,3个亚组分别干预7、14、21 d。采用Morris水迷宫实验于干预前后评估大鼠学习记忆能力,并选择干预后学习记忆能力最优的电针组亚组及相应假手术组、模型组亚组进行蛋白质组学检测,鉴定电针干预VD相关差异表达蛋白并进行生物信息学分析,采用平行反应监测(PRM)技术和Western blot法验证差异表达的目标蛋白。
结果:
2
与假手术组比较,模型组大鼠逃避潜伏期延长、穿越原平台次数减少(
P
<
0.01);与模型组比较,电针组大鼠干预7、14、21 d逃避潜伏期缩短、穿越原平台次数增加(
P
<
0.01,
P
<
0.05)。与干预7、14 d比较,电针组大鼠干预21 d逃避潜伏期缩短、穿越原平台次数增加(
P
<
0.01,
P
<
0.05),选择该亚组进行后续蛋白质组学检测、PRM分析及Western blot验证。与假手术组比较,模型组大鼠差异表达蛋白有71种,其中上调的有50种,下调的有21种;与模型组比较,电针组大鼠差异表达蛋白有54种,其中上调的有30种,下调的有24种。功能富集分析、聚类分析发现,差异表达蛋白主要与细胞过程、代谢过程、吞噬识别、免疫反应、细胞外基质组织的调节等生物过程有关。在哺乳动物雷帕霉素靶蛋白(mTOR)信号通路及神经营养因子信号通路中均富集到了糖原合成酶激酶3β(GSK3β)和丝裂原活化蛋白激酶激酶2(Map2k2)蛋白,PRM分析和Western blot验证与蛋白质组学分析结果一致,即与模型组比较,电针组大鼠海马GSK3β和Map2k2蛋白表达升高(
P
<
0.01,
P
<
0.05)。
结论:
2
电针“四神聪”“风池”可改善VD大鼠认知功能,其作用机制涉及多靶点、多通路,可能与GSK3β、Map2k2蛋白及mTOR、神经营养因子信号通路相关。
Objective
2
To explore the potential mechanism of electroacupuncture (EA) for vascular dementia (VD) using tandem mass tag (TMT) quantitative proteomics technology.
Methods
2
Among 80 male SPF SD rats
78 rats which met the selection criteria through the Morris water maze test were selected and randomly divided into a sham surgery group (18 rats) and a surgery group (60 rats). VD model was established by four-vessel occlusion (4-VO) method in the surgery group
and 36 rats with successful modeling were randomly assigned to a model group (18 rats) and an EA group (18 rats). Each group was further divided into three subgroups based on intervention duration
with each subgroup containing 6 rats. Seven days after model establishment
the EA group received EA intervention at left and right "Sishencong" (EX-HN 1) and bilateral "Fengchi" (GB 20)
with continuous wave at a frequency of 2 Hz and current intensity of 1 mA
daily for 30 min
with subgroups receiving EA for 7
14
or 21 d respectively. Cognitive function before and after interventions was assessed using Morris water maze. Proteomic analysis was conducted on the optimal EA subgroup and corresponding sham surgery and model subgroups
identifying differentially expressed proteins and analyzing them through bioinformatics. Differentially expressed target proteins was performed using parallel reaction monitoring (PRM) and Western blot techniques.
Results
2
Compared to the sham surgery group
the model group exhibited prolonged escape latency and reduced number of platform crossings (
P
<
0.01); compared with model group
the EA group showed reductions in escape latency and increased platform crossings after 7
14
and 21 days of intervention (
P
<
0.01
P
<
0.05). Compared to the 7 and 14-day intervention
the rats in the EA group of 21-day intervention showed the most significant improvements in reductions of escape latency and increased platform crossings (
P
<
0.01
P
<
0.05)
and was selected for further proteomic
PRM analyses
and Western blot validation. Compared to the sham surgery group
the model group displayed 71 differentially expressed proteins
with 50 up-regulated and 21 down-regulated proteins; compared to the model group
the EA group had 54 differentially expressed proteins
with 30 up-regulated and 24 down-regulated proteins. Functional enrichment and clustering analyses indicated that these proteins were pri
marily associated with cellular processes
metabolic processes
phagocytosis recognition
immune response
and regulation of extracellular matrix
etc. Enrichment was observed in the mammalian target of rapamycin (mTOR) signaling pathway and neurotrophic factors signaling pathways
involving glycogen synthase kinase 3β (GSK3β) and mitogen-activated protein kinase kinase 2 (Map2k2)
with PRM and Western blot findings consistent with the proteomic results. Which meant that compared with the model group
the protein expression of GSK3β and Map2k2 of hippocampus was increased in the EA group (
P
<
0.01
P
<
0.05).
Conclusion
2
EA at "Sishencong" (EX-HN 1) and "Fengchi" (GB 20) could improve cognitive function in VD rats
with the mechanism involving multiple targets and pathways
potentially related to GSK3β
Map2k2 proteins
and the mTOR and neurotrophic factor signaling pathways.
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