机构:[a]Department of Anesthesiology, Beijing Tian Tan Hospital, Capital Medical University, #6 Tian Tan Xi Li, Beijing 100050, PR China诊疗科室麻醉科首都医科大学附属天坛医院[b]Department of Anesthesiology, Beijing Children’s Hospital, Capital Medical University, National Center for Children’s Health, #56 Nan Li Shi Lu, Beijing 100045, PR China临床科室职能科室临床流行病与循证医学中心手术麻醉科首都医科大学附属北京儿童医院[c]Department of Neurobiology and Beijing Institute for Neuroscience, Capital Medical University, #10 You An Men Wai Xi TouTiao, Beijing 100069, PR China[d]Department of Anesthesiology, University of California San Diego, 3350 La Jolla Village Dr., San Diego, CA 92161, USA
Long-term repeated application of morphine induces plasticity changes in sensitive neurons, which represents the neurobiological basis of morphine addiction. Caveolin-1 (Cav-1) is an important scaffolding protein that plays a key role in the regulation of neurostructural plasticity. However, in-depth studies focused on the role of Cav-1 in morphine-induced changes in neurostructural plasticity are lacking. The present study explored the effects of Cav-1 on the expression levels of 2 markers of neurite outgrowth, growth association protein 43 (GAP 43) and microtubule-associated protein 2 (MAP-2), during the process of morphine-induced changes in the structural plasticity. A primary mouse cerebral cortical neuron culture was established, and Cav-1 knockdown was achieved. The results showed that morphine at a concentration of 10.0 mu mol/L had no adverse effect on neuronal viability, but enhanced the Cav-1 and GAP-43 levels and induced the outgrowth of MAP-2-labeled neurites. The qRT-PCR data showed that 10.0 mu mol/L of morphine increased the Cav-1 mRNA level and promoted Cav-1 expression at the transcriptional level. Moreover, Cav-1 knockdown inhibited the morphine-induced upregulation of GAP-43 expression and the prolongation of MAP-2-labeled neurites. In conclusion, morphine was capable of inducing changes in the structural plasticity of primary cultured mouse cortical neurons, and Cav-1 played an important role in this process. Inhibition of Cav-1 expression reduced the morphine induced increase in the neuronal growth markers GAP-43 and MAP-2. Thus, Cav-1 may be a potential molecular target for inhibiting morphine-induced neuroplasticity.
基金:
Capital Medical University [16JL51]; National Natural Science Foundation of ChinaNational Natural Science Foundation of China [81100823]; Beijing Natural Science FoundationBeijing Natural Science Foundation [7173255]
第一作者机构:[a]Department of Anesthesiology, Beijing Tian Tan Hospital, Capital Medical University, #6 Tian Tan Xi Li, Beijing 100050, PR China
共同第一作者:
通讯作者:
通讯机构:[a]Department of Anesthesiology, Beijing Tian Tan Hospital, Capital Medical University, #6 Tian Tan Xi Li, Beijing 100050, PR China
推荐引用方式(GB/T 7714):
Weihua Cui,Yi Ren,Shanshan Wang,et al.The role of caveolin-1 in morphine-induced structural plasticity in primary cultured mouse cerebral cortical neurons[J].NEUROSCIENCE LETTERS.2018,665:38-42.doi:10.1016/j.neulet.2017.11.033.
APA:
Weihua Cui,Yi Ren,Shanshan Wang,Min Zeng,Song Han...&Ruquan Han.(2018).The role of caveolin-1 in morphine-induced structural plasticity in primary cultured mouse cerebral cortical neurons.NEUROSCIENCE LETTERS,665,
MLA:
Weihua Cui,et al."The role of caveolin-1 in morphine-induced structural plasticity in primary cultured mouse cerebral cortical neurons".NEUROSCIENCE LETTERS 665.(2018):38-42