Lianmei Qiwu Decoction relieves diabetic cardiac autonomic neuropathy by regulating AMPK/TrkA/TRPM7 signaling pathway.
10.19540/j.cnki.cjcmm.20230103.702
- Author:
Xue-Mei SUN
1
;
Hai-Gang JI
2
;
Xin GAO
3
;
Xin-Dong WANG
3
Author Information
1. the Third School of Clinical Medicine,Nanjing University of Chinese Medicine Nanjing 210028,China Changzhou Hospital of Traditional Chinese Medicine Changzhou 213004,China.
2. Changzhou Hospital of Traditional Chinese Medicine Changzhou 213004,China.
3. the Third School of Clinical Medicine,Nanjing University of Chinese Medicine Nanjing 210028,China.
- Publication Type:Journal Article
- Keywords:
AMPK;
Lianmei Qiwu Decoction;
TRPM7;
TrkA;
diabetic cardiac autonomic neuropathy
- MeSH:
Rats;
Animals;
AMP-Activated Protein Kinases/metabolism*;
Nerve Growth Factor/metabolism*;
Diabetes Mellitus, Experimental/drug therapy*;
TRPM Cation Channels/metabolism*;
GAP-43 Protein/metabolism*;
Signal Transduction;
Diabetic Neuropathies/genetics*;
Fibrosis
- From:
China Journal of Chinese Materia Medica
2023;48(7):1739-1750
- CountryChina
- Language:Chinese
-
Abstract:
This study investigated the effect of Lianmei Qiwu Decoction(LMQWD) on the improvement of cardiac autonomic nerve remodeling in the diabetic rat model induced by the high-fat diet and explored the underlying mechanism of LMQWD through the AMP-activated protein kinase(AMPK)/tropomyosin receptor kinase A(TrkA)/transient receptor potential melastatin 7(TRPM7) signaling pathway. The diabetic rats were randomly divided into a model group, an LMQWD group, an AMPK agonist group, an unloaded TRPM7 adenovirus group(TRPM7-N), an overexpressed TRPM7 adenovirus group(TRPM7), an LMQWD + unloaded TRPM7 adenovirus group(LMQWD+TRPM7-N), an LMQWD + overexpressed TRPM7 adenovirus group(LMQWD+TRPM7), and a TRPM7 channel inhibitor group(TRPM7 inhibitor). After four weeks of treatment, programmed electrical stimulation(PES) was employed to detect the arrhythmia susceptibility of rats. The myocardial cell structure and myocardial tissue fibrosis of myocardial and ganglion samples in diabetic rats were observed by hematoxylin-eosin(HE) staining and Masson staining. The immunohistochemistry, immunofluorescence, real-time quantitative polymerase chain reaction(RT-PCR), and Western blot were adopted to detect the distribution and expression of TRPM7, tyrosine hydroxylase(TH), choline acetyltransferase(ChAT), growth associated protein-43(GAP-43), nerve growth factor(NGF), p-AMPK/AMPK, and other genes and related neural markers. The results showed that LMQWD could significantly reduce the arrhythmia susceptibility and the degree of fibrosis in myocardial tissues, decrease the levels of TH, ChAT, and GAP-43 in the myocardium and ganglion, increase NGF, inhibit the expression of TRPM7, and up-regulate p-AMPK/AMPK and p-TrkA/TrkA levels. This study indicated that LMQWD could attenuate cardiac autonomic nerve remodeling in the diabetic state, and its mechanism was associated with the activation of AMPK, further phosphorylation of TrkA, and inhibition of TRPM7 expression.