Upregulation of spinal glucose-dependent insulinotropic polypeptide receptor induces membrane translocation of PKC gamma and synaptic target of AMPA receptor GluR1 subunits in dorsal horns in a rat model of incisional pain
单位:[1]Department of Anesthesiology, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China临床科室麻醉科麻醉科首都医科大学附属北京友谊医院[2]Department of Anesthesiology, Beijing Chaoyang Hospital, Capital Medical University, Beijing, 100020, China北京朝阳医院
It is unclear whether glucose-dependent insulinotropic polypeptide receptor (GIPR) signaling plays an important role in spinal nociception. We hypothesized that the spinal GIPR is implicated in central sensitization of postoperative pain. Our data showed that the cumulative pain scores peaked at 3 h, kept at a high level at 1 d after incision, gradually decreased afterwards and returned to the baseline values at 5 d after incision. Correspondingly, the expression of GIPR in spinal cord dorsal horn peaked at 1 d after incision, and returned to the baseline value at 5 d after incision. The double-labeling immunofluorescence demonstrated that spinal GIPR was expressed in dorsal horn neurons, but not in astrocyte or microglial cells. At 1 d after incision, the effects of intrathecal saline, GIPR antagonist (Pro3)GIP on pain behaviors were investigated. Our data showed that at 30 min and 60 min following intrathecal treatments of 300 ng (Pro3)GIP, the cumulative pain scores were decreased and paw withdrawal thresholds to mechanical stimuli were increased when compared to those immediately before intrathecal treatments. Accordingly, at 30 min after intrathecal injections, the membrane translocation levels of PKC gamma and the GluR1 expression in postsynaptic membrane in ipsilateral dorsal horns to the incision were significantly upregulated in rats with intrathecal saline injections, as compared to normal control group. At 30 min after intrathecal treatment, (Pro3)GIP inhibited the membrane translocation levels of PKC gamma and the GluR1 expression in postsynaptic membrane in ipsilateral dorsal horns. Our study indicates that upregulation of spinal GIPR may contribute to pain hypersensitivity through inducing membrane translocation level of PKC gamma and synaptic target of AMPA receptor GluR1 subunits in ipsilateral dorsal horns of rats with plantar incision.
基金:
National Natural Science Foundation of ChinaNational Natural Science Foundation of China (NSFC) [81571065, 81771181]; Beijing Hospitals Authority Youth Program [QML20180105]; Scientific Research Common Program of Beijing Municipal Commission of EducationBeijing Municipal Commission of Education [KM201910025018]
第一作者单位:[1]Department of Anesthesiology, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China
共同第一作者:
通讯作者:
通讯机构:[2]Department of Anesthesiology, Beijing Chaoyang Hospital, Capital Medical University, Beijing, 100020, China[*1]Department of Anesthesiology, Beijing Chaoyang Hospital, Capital Medical University, No. 8, Gongtinan Road, Chaoyang District, Beijing, 100020, China.
推荐引用方式(GB/T 7714):
Guo Ruijuan,Sun Yuqing,Li Huili,et al.Upregulation of spinal glucose-dependent insulinotropic polypeptide receptor induces membrane translocation of PKC gamma and synaptic target of AMPA receptor GluR1 subunits in dorsal horns in a rat model of incisional pain[J].NEUROCHEMISTRY INTERNATIONAL.2020,134:doi:10.1016/j.neuint.2019.104651.
APA:
Guo, Ruijuan,Sun, Yuqing,Li, Huili,Ma, Danxu&Wang, Yun.(2020).Upregulation of spinal glucose-dependent insulinotropic polypeptide receptor induces membrane translocation of PKC gamma and synaptic target of AMPA receptor GluR1 subunits in dorsal horns in a rat model of incisional pain.NEUROCHEMISTRY INTERNATIONAL,134,
MLA:
Guo, Ruijuan,et al."Upregulation of spinal glucose-dependent insulinotropic polypeptide receptor induces membrane translocation of PKC gamma and synaptic target of AMPA receptor GluR1 subunits in dorsal horns in a rat model of incisional pain".NEUROCHEMISTRY INTERNATIONAL 134.(2020)