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1. 湖北中医药大学针灸骨伤学院
2. 武汉市第一医院针灸科
纸质出版日期:2019
移动端阅览
潘小丽, 周丽, 王丹, 等. 电针“足三里”对功能性消化不良大鼠胃排空及自噬信号通路的影响[J]. 针刺研究, 2019,44(7):486-491.
PAN Xiao-li, ZHOU Li, WANG Dan, et al. Electroacupuncture at “Zusanli”(ST36) promotes gastrointestinal motility possibly by suppressing excessive autophagy via AMPK/ULK1 signaling in rats with functional dyspepsia[J]. Acupuncture research, 2019, 44(7): 486-491.
潘小丽, 周丽, 王丹, 等. 电针“足三里”对功能性消化不良大鼠胃排空及自噬信号通路的影响[J]. 针刺研究, 2019,44(7):486-491. DOI: 10.13702/j.1000-0607.180571.
PAN Xiao-li, ZHOU Li, WANG Dan, et al. Electroacupuncture at “Zusanli”(ST36) promotes gastrointestinal motility possibly by suppressing excessive autophagy via AMPK/ULK1 signaling in rats with functional dyspepsia[J]. Acupuncture research, 2019, 44(7): 486-491. DOI: 10.13702/j.1000-0607.180571.
目的:观察电针"足三里"对功能性消化不良(FD)大鼠胃排空、自噬标记物微管相关蛋白1轻链3(LC3)及自噬信号通路分子腺苷酸活化蛋白激酶(AMPK)的影响
探讨电针改善FD胃肠动力障碍的机制。方法:SD大鼠随机分为空白组、模型组、电针组、抑制剂组、电针+抑制剂组
每组8只。采用多因素应激干预法建立FD模型。电针组电针双侧"足三里"穴
每日1次
连续7d;抑制剂组大鼠予以Compound C腹腔注射(20mg/kg)
每日1次
连续7d;电针+抑制剂组大鼠予以Compound C腹腔注射和电针干预。检测各组大鼠胃内残留率、小肠推进率;Western blot法检测胃窦组织酪氨酸激酶受体(c-kit)、LC3-Ⅱ/Ⅰ、自噬基因Beclin 1、磷酸化腺苷酸活化蛋白激酶(p-AMPK)、磷酸化自噬相关蛋白1(p-ULK1)的表达。结果:与空白组比较
模型组大鼠胃内残留率升高
小肠推进率降低(P<0.01)
胃窦中的c-kit表达明显降低
LC3-Ⅱ/Ⅰ、Beclin 1、p-AMPK、p-ULK1表达明显升高(P<0.01);与模型组比较
电针组、抑制剂组、电针+抑制剂组大鼠胃内残留率降低
小肠推进率升高(P<0.05
P<0.01)
胃窦中的c-kit表达明显升高
LC3-Ⅱ/Ⅰ、Beclin 1、p-AMPK、p-ULK1表达明显降低(P<0.01);与抑制剂组比较
电针组、电针+抑制剂组大鼠胃窦中的c-kit表达均明显升高(P<0.05
P<0.01)
LC3-Ⅱ/Ⅰ、Beclin 1表达明显降低(P<0.05)
p-AMPK、p-ULK1蛋白表达明显降低(P<0.01)。结论:电针"足三里"能够改善FD大鼠胃肠动力障碍
其作用机制可能是通过调控AMPK/ULK1信号通路进而抑制Cajal间质细胞过度自噬水平。
Objective To explore the effect of electroacupuncture(EA)at "Zusanli"(ST36)on gastrointestinal motility and expression of autophagy marker LC3 and autophagy signaling pathway molecule AMP-activated protein kinase(AMPK)in rats with functional dyspepsia(FD)
so as to explore its mechanisms underlying improvement of FD.Methods A total of 40 male SD rats were randomly divided into blank control
model
EA
AMPK inhibitor and EA+AMPK inhibitor groups
with 8 rats in each group.The FD model was established by tail-clip(30 min/time
twice daily)+single day feeding
and gavage of normal saline(2 mL/time
twice a day)for 2 successive weeks.For rats of EA and EA+AMPK inhibitor groups
EA(4 Hz
1.0 mA)was applied to bilateral ST36 for 20 min
once daily for 7 successive days.For rats of the AMPK-inhibitor and EA+AMPK inhibitor groups
Compound C(20 mg/kg)solution was administered by intraperitoneal injection before every EA administration.The gastric residual rate and small intestinal transit rate were calculated based on the weight of stomach and length of ink propelling and total small intestine
respectively.The expression levels of c-kit
microtubule-associated protein 1 light chain 3
Beclin 1
phosphorylated(p)-AMPK and p-unc-51 like autophagy activating kinase 1(ULK1)in the gastric antrum tissue were detected by using Western blot.Results Compared with the blank control group
the gastric residual rate and the expression levels of LC3-Ⅱ/LC3Ⅰ
Beclin 1
p-AMPK and p-ULK1 proteins were significantly increased
and the small intestinal transit rate and the expression of c-kit protein obviously decreased in the model group(P<0.01).After EA intervention
modeling-induced increase of gastric residual rate and the expression of LC3-Ⅱ/LC3Ⅰ
Beclin 1
p-AMPK and p-ULK1 proteins
and decrease of small intestinal transit rate and expression of c-kit protein were reversed in the EA
AMPK inhibitor and EA+AMPK inhibitor groups(P<0.05
P<0.01).The therapeutic effect of EA and EA+AMPK was significantly superior to that of AMPK inhibitor in downregulating the expression of LC3Ⅱ/LC3Ⅰ
Beclin 1
p-AMPK and p-ULK1 proteins and in up-regulating the expression of c-kit protein(P<0.05
P<0.01).No significant differences were found among the EA
AMPK inhibitor and EA+AMPK inhibitor groups in lowering gastric residual rate and elevating the small intestinal transit rate(P>0.05).Conclusion EA at ST36 can promote gastrointestinal motility in FD rats
which is possibly mediated by inhibiting excessive autophagy of interstitial cells of Cajal via down-regulating AMPK/ULK1 signaling.
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