The Tao Hong Si Wu Decoction ameliorates diabetes‐associated cognitive dysfunction by inhibiting the formation of amyloid plaques

Author:

Cai Ming123,Chen Zhen45,Zhang Mengling13,Xia Wenwen6,Dai Wentao13,Zhao Mengdie13,Xie Ruonan2,Ji Zhaojie13,Han Lan13,Peng Daiyin13

Affiliation:

1. School of Pharmacy Anhui University of Chinese Medicine Hefei Anhui China

2. Department of Pharmacy The Second Affiliated Hospital of Anhui University of Chinese Medicine Hefei Anhui China

3. Key Laboratory of Chinese Medicinal Formula Research Anhui University of Chinese Medicine Hefei Anhui China

4. Department of Pharmacy The Third People's Hospital of Hefei Hefei Anhui China

5. Department of Pharmacy Hefei Third Clinical College of Anhui Medical University Hefei Anhui China

6. Department of Pharmacy Lu'an City Hospital of Traditional Chinese Medicine Lu'an Anhui China

Abstract

AbstractObjectivesThe herbs in Tao Hong Si Wu Decoction (THSWD) are beneficial in the treatment of cognitive impairment. However, the underlying mechanisms of THSWD in treating diabetes‐associated cognitive dysfunction (DACD) are not entirely explored. This study is aimed to investigate the therapeutic effects of THSWD in DACD model rats and the underlying mechanism.MethodsUltra‐high‐phase liquid chromatography was employed to identify the main compounds contained in the THSWD extract. DACD rat model was induced by feeding with a high‐sugar and high‐fat diet and injecting streptozotocin (35 mg/kg). DACD rats were gavaged with THSWD for 1 week. The learning and memory abilities of the rats were measured by using the Morris water maze. Western blotting was used to detect the changes in DACD rat targets. Statistical methods were used to evaluate the correlation between proteins.ResultsThe results show that THSWD effectively reduced the escape latency, hippocampal neuron damage, glycosylated hemoglobin, type A1C, and blood lipid levels in DACD rats. Furthermore, DACD rats showed significantly increased amyloid precursor protein, β‐secretase, Aβ1−40, Aβ1−42, Tau phosphorylation, and advanced glycation end products (AGEs) expression. However, THSWD treatment can reverse this phenomenon.ConclusionsTHSWD can improve the learning and memory abilities of DACD rats by inhibiting the expression of AEGs‐AGE receptors pathway, which provides an experimental basis for the clinical application of THSWD. In addition, the experiment combines pharmacological and statistical methods, which offers a new perspective for the study of Chinese herbal medicine.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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