[1] Niu XL, Jiang X, Xu GD, et al. Dl-3-n-butylphthalide alleviates vascular cognitive impairment by regulating endoplasmic reticulum stress and the shh/ptch1 signaling-pathway in rats [J]. J Cell Phisol, 2019, 234(8): 12604-12614.
[2] Liu Y, Yue M, Zou YM. Efficacy of cognitive intervention in patients with vascular dementia: a Meta-analysis [J].Chinese Journal of Neuromedicine, 2019,18(2):170-176.(in Chinese)
刘莹, 岳萌, 邹永明. 认知干预对血管性痴呆患者作用效果的meta分析 [J]. 中华神经医学杂志, 2019,18(2):170-176.
[3] Impellizzeri D, Siracusa R, Cordaro M, et al. N-palmitoylethanolamine-oxazoline (pea-oxa): a new therapeutic strategy to reduce neuroinflammation, oxidative stress associated to vascular dementia in an experimental model of repeated bilateral common carotid arteries occlusion [J]. Neurobiol Dis, 2019, 125: 77-91.
[4] Ambati RR, Phang SM, Ravi S, et al. Astaxanthin: sources, extraction, stability, biological activities and its commercial applications--a review [J]. Mar Drugs, 2014,12(1):128-152.
[5] Ying CJ, Zhang F, Zhou XY, et al. Anti-inflammatory effect of astaxanthin on the sickness behavior induced by diabetes mellitus [J]. Cell Mol Neurobiol, 2015,35(7):1027-1037.
[6] Feng Y, Chu A, Luo Q, et al. The protective effect of astaxanthin on cognitive function via inhibition of oxidative stress and inflammation in the brains of chronic t2dm rats [J]. Front Pharmacol, 2018, 9: 748.
[7] Xu Q, Ji XF, Chi TY, et al. Sigma 1 receptor activation regulates brain-derived neurotrophic factor through nr2a-camkiv-torc1 pathway to rescue the impairment of learning and memory induced by brain ischaemia/reperfusion [J]. Psychopharmacology, 2015, 232(10):1779-1791.
[8] Korczyn AD, Vakhapova V, Grinberg LT. Vascular dementia [J]. J Neurol Sci, 2012,322(1-2):2-10.
[9] Wang YCh, Liu B, Mao WJ, et al. Effect of phosphatidylinositol 3-kinase/protein kinase B/mammalian target of rapamycin signaling pathway inhibition on autophagy related protein expressions in CA1 area of hippocampus of vascular dementia rats [J]. Chinese Journal of Neuromedicine, 2017,16(2):127-132. (in Chinese)
王一超, 刘斌, 毛文静, 等. 抑制pi3k/akt/mtor信号通路对血管性痴呆大鼠海马ca1区自噬相关蛋白表达的影响 [J]. 中华神经医学杂志, 2017,16(2):127-132.
[10] Marcelo A, Bix G. The potential role of perlecan domain v as novel therapy in vascular dementia [J].Metab Brain Dis, 2015,30(1):1-5.
[11] Yang W, Zhang J, Shi L, et al. Protective effects of tanshinone iia on sh-sy5y cells against oabeta1-42-induced apoptosis due to prevention of endoplasmic reticulum stress [J]. Int J Biochem Cell Biol, 2019, 107: 82-91.
[12] Misonou H, Morishima-Kawashima M, Ihara Y. Oxidative stress induces intracellular accumulation of amyloid beta-protein (abeta) in human neuroblastoma cells [J]. Biochemistry, 2000,39(23):6951-6959.
[13] Chen X, Bisschops MMM, Agarwal NR, et al. Interplay of energetics and er stress exacerbates alzheimer’s amyloid-beta (abeta) toxicity in yeast [J]. Front Mol Neurosci, 2017, 10: 232.
[14] Luhrs T, Ritter C, Adrian M, et al. 3D structure of alzheimer’s amyloid-beta(1-42) fibrils [J]. Proc Natl Acad Sci USA, 2005,102(48): 17342-17347.
[15] Cosacak MI, Bhattarai P, Reinhardt S, et al. Single-cell transcriptomics analyses of neural stem cell heterogeneity and contextual plasticity in a zebrafish brain model of amyloid toxicity [J]. Cell Rep, 2019, 27(4): 1307-1318.
[16] Yang T, Zhu Z. Alleviation of symptoms of alzheimer’s disease by diminishing Aβ neurotoxicity and neuroinflammation [J]. Chem Sci, 2019,10(43): 10149-10158.
[17] Bhattarai P, Thomas AK, Cosacak MI, et al. Il4/stat6 signaling activates neural stem cell proliferation and neurogenesis upon amyloid-β42 aggregation in adult zebrafish brain [J]. Cell Rep, 2016,17(4):941-948.
|