Mechanism of electroacupuncture on improving insulin resistance and intestinal mucosal barrier injury via the GLP-1R/PKA signaling pathway in type 2 diabetes mellitus rats
Study on Mechanism|更新时间:2026-02-26
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Mechanism of electroacupuncture on improving insulin resistance and intestinal mucosal barrier injury via the GLP-1R/PKA signaling pathway in type 2 diabetes mellitus rats
Chinese Acupuncture & MoxibustionVol. 46, Issue 2, Pages: 244-250(2026)
LIN Jiayi, LI Rui, LI Xiaolu, et al. Mechanism of electroacupuncture on improving insulin resistance and intestinal mucosal barrier injury via the GLP-1R/PKA signaling pathway in type 2 diabetes mellitus rats[J]. Chinese Acupuncture & Moxibustion, 2026, 46(2): 244-250.
DOI:
LIN Jiayi, LI Rui, LI Xiaolu, et al. Mechanism of electroacupuncture on improving insulin resistance and intestinal mucosal barrier injury via the GLP-1R/PKA signaling pathway in type 2 diabetes mellitus rats[J]. Chinese Acupuncture & Moxibustion, 2026, 46(2): 244-250.DOI: 10.13703/j.0255-2930.20250312-k0002.
Mechanism of electroacupuncture on improving insulin resistance and intestinal mucosal barrier injury via the GLP-1R/PKA signaling pathway in type 2 diabetes mellitus rats
To observe the effect of electroacupuncture (EA) on the glucagon-like peptide-1 receptor (GLP-1R)/protein kinase A (PKA) signaling pathway in the colon tissue of type 2 diabetes mellitus (T2DM) rats and explore the mechanisms underlying EA's improvement of insulin resistance and intestinal mucosal barrier injury.
Methods
2
Among 24 SPF-grade male Wistar rats
6 rats were randomly assigned to a blank group
and the remaining 18 rats were used to establish the T2DM model through a combination of high-sucrose/high-fat diet feeding and intraperitoneal injection of streptozotocin. Successfully modeled rats were randomly assigned to a model group
an EA group
and an EA+inhibitor group
with 6 rats per group. The EA group received EA at bilateral "Tianshu" (ST25)
"Shangjuxu" (ST37)
"Pishu" (BL20)
and "Weiwanxiashu" (EX-B3); EA was applied to ipsilateral "Shangjuxu" (ST37) and "Weiwanxiashu" (EX-B3) using disperse-dense wave (2 Hz/50 Hz
1-3 mA) for 20 min per session. The EA+inhibitor group received the same EA treatment combined with intraperitoneal injection of the GLP-1 receptor inhibitor Exenatide. All treatments were administered once daily
six times per week
for 6 weeks. Fasting blood glucose (FBG) was measured before modeling and before/after intervention. After the intervention
serum fasting insulin (FINS) and GLP-1 levels were measured by ELISA
and the homeostasis model assessment of insulin resistance (HOMA-IR) was calculated. Colon morphology was observed using HE staining. Positive expression of zonula occludens-1 (ZO-1) and Occludin in colon tissue was detected by immunohistochemistry. Protein expression of GLP-1R
PKA
GLP-1
ZO-1
and Occludin in colon tissue was analyzed by Western blot.
Results
2
After the intervention
compared with the blank group
the model group showed significantly increased FBG
FINS
and HOMA-IR (
P
<
0.01)
while serum GLP-1 level was significantly decreased (
P
<
0.01); histologically
the colonic mucosal epithelial cells exhibited shedding
crypt atrophy was observed
the number of goblet cells was markedly reduced
and inflammatory cell infiltration was evident in the lamina propria; the positive expression of ZO-1 and Occludin in colon tissue was significantly reduced (
P
<
0.01
P
<
0.05)
and the protein expression of GLP-1R
PKA
GLP-1
ZO-1
and Occludin was also significantly decreased (
P
<
0.05
P
<
0.01). Compared with the model group and the EA+inhibitor group
the EA group showed significantly lower levels of FBG
FINS
and HOMA-IR (
P
<
0.01)
along with higher serum GLP-1 level (
P
<
0.01); the inflammatory cell infiltration in the colon was reduced
the number of goblet cells was increased
and the structure of the mucosal epithelium and crypts was more normalized; the positive expression of ZO-1 and Occludin in colon
tissue was significantly increased (
P
<
0.01
P
<
0.05)
and the protein expression of GLP-1R
PKA
GLP-1
ZO-1
and Occludin was also significantly elevated (
P
<
0.05
P
<
0.01).
Conclusion
2
EA could reduce blood glucose levels
improve insulin resistance
and repair intestinal mucosal barrier injury in T2DM rats. The underlying mechanism may be related to the activation of the GLP-1R/PKA signaling pathway.
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Related Institution
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Clinical Acupuncture Research Institute, Anhui Academy of TCM