Department of Anesthesiology, General Hospital of Ningxia Medical University, Yinchuan, 750004, Ningxia, China.
Department of Anaesthesiology, People's Hospital of Ningxia Hui Autonomous Region, Yinchuan, 750002, Ningxia, China.
Sci Rep. 2023 Oct 26;13(1):18364. doi: 10.1038/s41598-023-45572-8.
Bupivacaine (BPV) can cause severe central nervous system toxicity when absorbed into the blood circulation system. Rapid intravenous administration of lipid emulsion (LE) could be used to treat local anaesthetic toxicity. This study aimed to investigate the mechanism by which the BDNF-TrkB/proBDNF-p75 pathway regulation by LE rescues BPV induced neurotoxicity in hippocampal neurons in rats. Seven- to nine-day-old primary cultured hippocampal neurons were randomly divided into 6 groups: the blank control group (Ctrl), the bupivacaine group (BPV), the lipid emulsion group (LE), the bupivacaine + lipid emulsion group (BPV + LE), the bupivacaine + lipid emulsion + tyrosine kinase receptor B (TrkB) inhibitor group (BPV + LE + K252a), the bupivacaine + lipid emulsion + p75 neurotrophic factor receptor (p75) inhibitor group (BPV + LE + TAT-Pep5). All hippocampal neurons were incubated for 24 h, and their growth state was observed by light microscopy. The relative TrkB and p75 mRNA levels were detected by real-time PCR. The protein expression levels of brain-derived neurotrophic factor (BDNF), proBDNF, TrkB, p75 and cleaved caspase-3 were detected by western blotting. The results showed that primary hippocampal neuron activity was reduced by BPV. As administration of LE elevated hippocampal neuronal activity, morphology was also somewhat improved. The protein expression and mRNA levels of TrkB and p75 were decreased when BPV induced hippocampal neuronal toxicity, while the expression of BDNF was increased. At the same time, BPV increased the original generation of cleaved caspase-3 protein content by hippocampal neurons, while the content of cleaved caspase-3 protein in hippocampal neurons cotreated with LE and BPV was decreased. Thus, this study has revealed LE may reduce apoptosis and promote survival of hippocampal neurons by regulating the BDNF-TrkB pathway and the proBDNF-p75 pathway to rescue BPV induced central neurotoxicity in rats.
布比卡因(BPV)吸收到血液循环系统后会引起严重的中枢神经系统毒性。快速静脉内给予脂肪乳剂(LE)可用于治疗局部麻醉毒性。本研究旨在探讨 LE 通过调节 BDNF-TrkB/proBDNF-p75 通路对大鼠海马神经元中 BPV 诱导的神经毒性的作用机制。将 7-9 天龄的原代培养海马神经元随机分为 6 组:空白对照组(Ctrl)、布比卡因组(BPV)、脂肪乳剂组(LE)、布比卡因+脂肪乳剂组(BPV+LE)、布比卡因+脂肪乳剂+酪氨酸激酶受体 B(TrkB)抑制剂组(BPV+LE+K252a)、布比卡因+脂肪乳剂+p75 神经营养因子受体(p75)抑制剂组(BPV+LE+TAT-Pep5)。所有海马神经元孵育 24 h,通过光镜观察其生长状态。实时 PCR 检测相对 TrkB 和 p75 mRNA 水平。Western blot 检测脑源性神经营养因子(BDNF)、proBDNF、TrkB、p75 和 cleaved caspase-3 的蛋白表达水平。结果显示,BPV 降低原代海马神经元的活性。LE 给药后提高了海马神经元的活性,形态也有所改善。BPV 诱导海马神经元毒性时,TrkB 和 p75 的蛋白表达和 mRNA 水平降低,而 BDNF 表达增加。同时,BPV 增加了海马神经元原代 cleaved caspase-3 蛋白含量,而 LE 和 BPV 共同处理的海马神经元 cleaved caspase-3 蛋白含量降低。因此,本研究揭示了 LE 可能通过调节 BDNF-TrkB 通路和 proBDNF-p75 通路减少海马神经元凋亡,促进其存活,从而挽救大鼠 BPV 诱导的中枢神经毒性。