Martins Antonio H, Hu Jing, Xu Zhenfeng, Mu Chaofeng, Alvarez Paloma, Ford Byron D, El Sayed Khalid, Eterovic Vesna A, Ferchmin Pedro A, Hao Jiukuan
Department of Biochemistry, Universidad Central del Caribe. Ave. Laurel #100, Santa Juanita, Bayamon, Puerto Rico, 00956.
Division of Pharmaceutical Sciences, James L. Winkle College of Pharmacy, University of Cincinnati, Cincinnati, OH 45267.
Neuroscience. 2015 Apr 16;291:250-259. doi: 10.1016/j.neuroscience.2015.02.001. Epub 2015 Feb 10.
(1S,2E,4R,6R,-7E,11E)-2,7,11-cembratriene-4,6-diol (4R) is a precursor to key flavor ingredients in leaves of Nicotiana species. The present study shows 4R decreased brain damage in rodent ischemic stroke models. The 4R-pretreated mice had lower infarct volumes (26.2±9.7 mm3) than those in control groups (untreated: 63.4±4.2 mm3, DMSO: 60.2±14.2 mm3). The 4R-posttreated rats also had less infarct volumes (120±65 mm3) than those in the rats of the DMSO group (291±95 mm3). The results from in vitro experiments indicate that 4R decreased neuro2a cell (neuroblastoma cells) apoptosis induced by oxygen-glucose deprivation (OGD), and improved the population spikes' (PSs) recovery in rat acute hippocampal slices under OGD; a phosphatidylinositol 3-kinase (PI3K) inhibitor, wortmannin, abolished the effect of 4R on PSs recovery. Furthermore, 4R also inhibited monocyte adhesion to murine brain-derived endothelial (bEND5) cells and upregulation of intercellular adhesion molecule-1(ICAM-1) induced by OGD/reoxygenation (OGD/R), and restored the p-Akt level to pre-OGD/R values in bEND5 cells. In conclusion, the present study indicates that 4R has a protective effect in rodent ischemic stroke models. Inhibition of ICAM-1 expression and restoration of Akt phosphorylation are the possible mechanisms involved in cellular protection by 4R.
(1S,2E,4R,6R,-7E,11E)-2,7,11-西柏三烯-4,6-二醇(4R)是烟草属植物叶片中关键风味成分的前体。本研究表明,4R可减少啮齿动物缺血性中风模型中的脑损伤。经4R预处理的小鼠梗死体积(26.2±9.7立方毫米)低于对照组(未处理:63.4±4.2立方毫米,二甲基亚砜:60.2±14.2立方毫米)。经4R后处理的大鼠梗死体积(120±65立方毫米)也低于二甲基亚砜组大鼠(291±95立方毫米)。体外实验结果表明,4R可减少氧糖剥夺(OGD)诱导的神经2a细胞(神经母细胞瘤细胞)凋亡,并改善OGD条件下大鼠急性海马切片中群体峰电位(PSs)的恢复;磷脂酰肌醇3-激酶(PI3K)抑制剂渥曼青霉素消除了4R对PSs恢复的影响。此外,4R还抑制单核细胞与小鼠脑源性内皮(bEND5)细胞的黏附以及OGD/复氧(OGD/R)诱导的细胞间黏附分子-1(ICAM-1)的上调,并使bEND5细胞中的p-Akt水平恢复到OGD/R前的值。总之,本研究表明4R在啮齿动物缺血性中风模型中具有保护作用。抑制ICAM-1表达和恢复Akt磷酸化是4R细胞保护作用的可能机制。