Role of spinal cord neuron SAM68-TRPV1 signaling pathway in diabetic neuropathic pain in mice
10.3760/cma.j.cn131073.20240123.00513
- VernacularTitle:脊髓神经元SAM68-TRPV1信号通路在小鼠糖尿病神经病理性痛中的作用
- Author:
Hanmin XIANG
1
;
Wanyou HE
;
Zhe JIN
;
Fuyu WANG
;
Hanbing WANG
;
Yanlin WANG
Author Information
1. 武汉大学中南医院麻醉科,武汉 430000
- Keywords:
Diabetic neuropathies;
TRPV cation channels;
RNA-binding proteins;
Spinal cord
- From:
Chinese Journal of Anesthesiology
2024;44(5):593-598
- CountryChina
- Language:Chinese
-
Abstract:
Objective:To evaluate the role of spinal cord neuron Src-associated-in-mitosis-68-kDa (SAM68)-transient receptor potential vanilloid-1 channel (TRPV1) signaling pathway in diabetic neuropathic pain (DNP) in mice.Methods:Forty SPF male C57BL/6 mice, aged 8 weeks, weighing 18-22 g, were used in this study. Diabetes mellitus was induced by intraperitoneal streptozotocin 0.12 mg/g, and successful DNP model was defined as decrease in the mechanical paw withdrawal threshold (MWT) of the hind limb≥50% of the baseline value. Twenty-four mice with DNP at 4 weeks after developing the model were divided into 3 groups ( n=8 each) using a simple random sampling: DNP group, SAM68 knocked down group (KD group) and virus control group (VC group). Eight diabetic mice with decrease in MWT <50% were randomly selected as non-DNP group (ND group), and 8 normal mice were randomly selected as control group (NC group). At 4 weeks after developing the diabetes mellitus model, SAM68 gene silencing virus and empty virus were injected into the lumbar enlargement of the spinal cord in KD group and VC group, respectively. MWT was measured before developing the diabetes mellitus model and at 4 and 6 weeks after developing the diabetes mellitus model. The mice were sacrificed after the end of MWT measurement at week 6 after developing the model, spinal cord tissues were collected and the expression of SAM68 and TRPV1 was detected by Western blot, and their localization in the spinal cord was observed by immunofluorescence. Results:Compared with NC and ND groups, the MWT was significantly decreased at 4 and 6 weeks after developing the model, and the expression of SAM68 and TRPV1 in spinal cord tissues was up-regulated in DNP group ( P<0.05). Compared with DNP group, the MWT was significantly increased at 6 weeks after developing the model, the expression of SAM68 and TRPV1 in spinal cord tissues was down-regulated, and no significant change was found in the parameters mentioned above in VC group ( P>0.05). SAM68 and TRPV1 were expressed in neurons in the same region of the spinal cord. Conclusions:Activation of SAM68-TRPV1 signaling pathway in spinal cord neurons is involved in the pathophysiological mechanism of DNP in mice.