Zuogui Jiangtang Jieyu Formula regulates the CD300f/GLUT1 signaling pathway to improve the synaptic damage of hippocampal neurons in rats with diabetes-related depression
10.3969/j.issn.1006-2157.2024.11.012
- VernacularTitle:左归降糖解郁方调控CD300f/GLUT1信号通路改善糖尿病并发抑郁症大鼠海马神经元突触损伤的作用机制
- Author:
Jian LIU
1
;
Lin TANG
;
Hongqing ZHAO
;
Fan JIANG
;
Lin LIU
;
Chao HU
Author Information
1. 湖南中医药大学第一附属医院,长沙 410007
- Keywords:
diabetes mellitus;
depression disorder;
Zuogui Jiangtang Jieyu Formula;
microglia;
glucose metabolism;
leukocyte mono-immunoglobulin-like receptor 3/glucose transporter type 1 signaling pathway;
hippocampal neurons;
synaptic damage;
rats
- From:
Journal of Beijing University of Traditional Chinese Medicine
2024;47(11):1573-1584
- CountryChina
- Language:Chinese
-
Abstract:
Objective To explore the protective mechanism of Zuogui Jiangtang Jieyu Formula(ZGF)on synaptic damage of hippocampal neurons based on leukocyte mono-immunoglobulin-like receptor 3(CD300f)/glucose transporter 1(GLUT1)signal-mediated microglial glucose metabolism in rats with diabetes-related depression.Methods Eighty male SD rats were randomly selected using random number table method,with 10 rats serving as the normal group.The remaining 70 rats were fed a high-fat diet for 4 weeks and then injected once with 38 mg/kg of streptozotocin via the tail vein to replicate the diabetes rat model.Sixty rats were screened and successfully modeled,which were randomly divided into the model,CD300f blocker,CD300f agonist,metformin+fluoxetine(metformin 0.18 g/kg+fluoxetine 1.8 mg/kg),and ZGF high-and low-dose(20.52 and 10.26 g/kg,respectively)groups using random number table method.In addition to the normal group,the rats in the other groups underwent chronic unpredictable mild stress combined with isolation feeding for 28 days to replicate the diabetes-related depression rat model.The metformin+fluoxetine and ZGF high-and low-dose groups were subjected to continuous intragastrial administration for 14 days after the second week of modeling.The normal and model groups were administered an equal amount of distilled water by gavage.The CD300f blocker group and agonist group received microinjection into the hippocampus,with injection of myeloid cell trigger receptor inhibitory factor(CLM1,2 μg/kg)and immunoglobulin Fc surface protein(Fcγ,5 μg/kg)once a week,respectively.Depression-like behavior in rats was evaluated using open-field and forced swimming tests after the intervention.Biochemical analysis was used to detect the glucose,lactic acid,and adenosine diphosphate(ADP)/adenosine triphosphate(ATP)ratio contents.The insulin,5-hydroxytryptamine(5-HT),and dopamine(DA)levels in the hippocampus were detected using an enzyme-linked immunosorbent assay.Immunofluorescence was used to detect the average fluorescence intensity of CD300f,GLUT1,regulating synaptic membrane wxocytosis 3(RIMS3),and synapse-associated protein 102(SAP102)in hippocampal tissue.Western blotting was used to detect the CD300f,GLUT1,RIMS3,and SAP102 protein expression levels in the hippocampus.The synaptic damage of hippocampal neurons was observed using Nissl staining and transmission electron microscope.Results Compared with the normal group,the model group showed a decrease in the total active distance in the open-field test and an increase in forced swimming immobility time,with an increase in glucose and lactic acid contents and ADP/ATP ratio,whereas a decrease in insulin,5-HT,and DA levels was observed in the hippocampus.The average fluorescence intensity and relative protein expression levels of CD300f,GLUT1,RIMS3,and SAP102 in hippocampal tissue decreased(P<0.05),and the synaptic ultrastructure of hippocampal neurons was damaged.Compared with the model group,depression-like behavioral changes,glucose metabolism,and monoamine neurotransmitter imbalance were alleviated in the CD300f agonist group and ZGF high-and low-dose group(P<0.05).The average fluorescence intensity and relative protein expression levels of CD300f,GLUT1,RIMS3,and SAP102 in the hippocampus of the CD300f agonist group and the ZGF high-dose group were all increased(P<0.05),and synaptic damage was alleviated.The abnormal levels of glucose,lactate,ADP/ATP,5-HT,and CD300f protein expression were aggravated in the CD300f blocker group(P<0.05),and synaptic damage was aggravated.Conclusion ZGF can alleviate glucose metabolism disorders in hippocampal microglia and synaptic damage in hippocampal neurons in rats with diabetes-related depression.Its mechanism may be related to regulating the CD300f/GLUT1 signaling pathway.