Yang Jun-Qing, Zhou Qi-Xin, Liu Bei-Zhong, He Bai-Cheng
Department of Pharmacology, Chongqing Medical University, Chongqing, PR China.
CNS Neurosci Ther. 2008 Spring;14(1):10-6. doi: 10.1111/j.1527-3458.2007.00031.x.
The natural product caffeic acid is a specific inhibitor of 5-lipoxygenase (5-LOX); it also possesses antioxidant and antiinflammatory properties. The current study was designed to determine whether the neuroprotective properties of caffeic acid are due to inhibition of 5-LOX. Cerebral damage was induced in mice by intracerebroventricular microinjection of aluminum (5.0 microg aluminum in 2.0 microL, once a day, for 5 days). Caffeic acid was administered intragastrically at 30 min prior to aluminum and repeated daily for an additional 10 days. The brain injury was determined by observation of behavioral changes in mice, as well as by measuring biochemical and pathological changes in the cerebral tissue. The levels of 5-LOX proteins and 5-LOX mRNA expression were measured in brain tissue. Aluminum impaired learning and memory in mice produced neuronal death in hippocampi, elevated brain malondialdehyde levels, increased protein expression of amyloid precursor protein (APP), amyloid beta, and 5-LOX. It also increased 5-LOX mRNA expression and decreased choline acetyl transferase (ChAT) protein expression in the brain tissue of mice. Caffeic acid prevented brain damage as well as behavioral and biochemical changes caused by aluminum overload. The results of this study suggest that overexpression of 5-LOX accompanies the cerebral injury induced by aluminum overload in mice, and that selective inhibitors of 5-LOX may have potential value in the treatment of aluminum neurotoxicity and conceivably of diseases associated with neuronal injury.
天然产物咖啡酸是5-脂氧合酶(5-LOX)的特异性抑制剂;它还具有抗氧化和抗炎特性。本研究旨在确定咖啡酸的神经保护特性是否归因于对5-LOX的抑制作用。通过脑室内微量注射铝(2.0微升中含5.0微克铝,每天一次,共5天)诱导小鼠脑损伤。在注射铝前30分钟经胃给予咖啡酸,并每天重复给药,持续额外10天。通过观察小鼠行为变化以及测量脑组织中的生化和病理变化来确定脑损伤情况。检测脑组织中5-LOX蛋白水平和5-LOX mRNA表达。铝损害了小鼠的学习和记忆能力,导致海马体神经元死亡,提高了脑丙二醛水平,增加了淀粉样前体蛋白(APP)、β-淀粉样蛋白和5-LOX的蛋白表达。它还增加了小鼠脑组织中5-LOX mRNA表达,并降低了胆碱乙酰转移酶(ChAT)蛋白表达。咖啡酸可预防铝过载引起的脑损伤以及行为和生化变化。本研究结果表明,5-LOX的过表达与铝过载诱导的小鼠脑损伤相伴,并且5-LOX的选择性抑制剂在治疗铝神经毒性以及可能与神经元损伤相关的疾病方面可能具有潜在价值。