Page 132 - 《中国药房》2022年8期
P. 132

参考文献                                                [16]  LI Y W,LI Q Y,WANG J H,et al. Contribution of p38
        [ 1 ]  史慧玲,张敏,汪梦月,等.脑卒中后认知障碍病人筛查与                        MAPK to the ameliorating effect of enriched environment
             管理最佳证据总结[J].护理研究,2021,35(8):1346-                   on the cognitive deficits induced by chronic cerebral hypo-
             1352.                                               perfusion[J]. Cell Physiol Biochem,2016,40(3/4):549-
        [ 2 ]  许志祥,吴云成.卒中后认知功能障碍发病机制的研究进                         557.
             展[J].上海医药,2018,39(17):5-8.                     [17]  FALCICCHIA C,TOZZI F,ARANCIO O,et al. Involve-
        [ 3 ]  CAUNT C J,KEYSE S M.Dual-specificity MAP kinase   ment of p38 MAPK in synaptic function and dysfunc-
             phosphatases(MKPs):shaping the outcome of MAP       tion[J]. Int J Mol Sci,2020,21(16):5624.
             kinase signalling[J].FEBS J,2012,280(2):489-504.  [18]  ASIH P R,PRIKAS E,STEFANOSKA K,et al. Functions
                                                                 of p38 MAP kinases in the central nervous system[J].
        [ 4 ]  刘飞来.电针神庭、百会对缺血性卒中后认知障碍大鼠
                                                                 Front Mol Neurosci,2020,13:570586.
             p38 MAPK 信号通路的影响[D].郑州:河南中医学院,
                                                            [19]  GHASEMLOU N,LOPEZ-VALES R,LACHANCE C,
             2014.
                                                                 et al. Mitogen-activated protein kinase-activated protein
        [ 5 ]  申伟,曾子修,金香兰,等.中药治疗卒中后认知障碍疗效
                                                                 kinase 2(MK2)contributes to secondary damage after
             和安全性的系统评价[J].中国实验方剂学杂志,2020,26
                                                                 spinal cord injury[J]. J Neurosci,2010,30(41):13750-
             (11):185-193.
                                                                 13759.
        [ 6 ]  曾子修,申伟,魏竞竞,等.基于网络药理学探讨健脾益肾
                                                            [20]  ZHANG X X,BI X. Post-stroke cognitive impairment:a
             化浊方治疗卒中后认知障碍的作用机制[J].世界中医
                                                                 review focusing on molecular biomarkers[J]. J Mol Neuro-
             药,2021,16(23):3545-3460.
                                                                 sci,2020,70(8):1244-1254.
        [ 7 ]  LI Z,WANG H,XIAO G,et al. Recovery of post-stroke
                                                            [21]  BONAVENTURA A,LIBERALE L,VECCHIÉ A,et al.
             cognitive and motor deficiencies by Shuxuening injection
                                                                 Update on inflammatory biomarkers and treatments in
             via regulating hippocampal BDNF-mediated neurotro-
                                                                 ischemic stroke[J]. Int J Mol Sci,2016,17(12):1967.
             phin/Trk signaling[J]. Biomed Pharmacother,2021,141:
                                                            [22]  GRIGOLASHVILI M A,MUSTAFINA R M. The role of
             111828.
                                                                 the  inflammatory  process  in  the  development  of
        [ 8 ]  ARTHUR J S C ,LEY S C. Mitogen-activated protein
                                                                 post-stroke cognitive impairment[J]. Zh Nevrol Psikhiatr
             kinases in innate immunity[J]. Nat Rev Immunol,2013,13
                                                                 Im S S Korsakova,2021,121(3. Vyp. 2):16-21.
             (9):679-692.
                                                            [23]  NARASIMHALU K,LEE J,LEONG Y L,et al. Inflam-
        [ 9 ]  GUO Y J,PAN W W,LIU S B,et al. ERK/MAPK signal-
                                                                 matory markers and their association with post stroke cog-
             ling pathway and tumorigenesis[J]. Exp Ther Med,2020,
                                                                 nitive decline[J]. Int J Stroke,2015,10(4):513-518.
             19(3):1997-2007.
                                                            [24]  WAN L,CHENG Y F,LUO Z Y,et al. Neuroprotection,
        [10]  TUBITA A,LOMBARDI Z,TUSA I,et al. Beyond kinase
                                                                 learning and memory improvement of a standardized ex-
             activity:ERK5 nucleo-cytoplasmic shuttling as a novel
                                                                 tract from Renshen Shouwu against neuronal injury and
             target for anticancer therapy[J]. Int J Mol Sci,2020,21
                                                                 vascular dementia in rats with brain ischemia[J]. J Ethno-
             (3):938.
                                                                 pharmacol,2015,165:118-126.
        [11]  YANG Z H,LU Y J,GU K P,et al. Effect of ulinastatin  [25]  LIU H,ZHANG Z H,ZANG C X,et al. GJ-4 ameliorates
             on myocardial ischemia-reperfusion injury through JNK  memory impairment in focal cerebral ischemia/reperfu-
             and p38 MAPK signaling pathways[J]. Eur Rev Med Phar-  sion of rats via inhibiting JAK2/STAT1-mediated neuroin-
             macol Sci,2019,23(19):8658-8664.                    flammation[J]. J Ethnopharmacol,2021,267:113491.
        [12]  MUNOZ L,AMMIT A J. Targeting p38 MAPK pathway  [26]  LIM H S,KIM Y J,KIM B Y,et al. Bakuchiol suppresses
             for the treatment of Alzheimer’s disease[J]. Neuropharma-  inflammatory responses via the downregulation of the p38
             cology,2010,58(3):561-568.                          MAPK/ERK signaling pathway[J]. Int J Mol Sci,2019,20
        [13]  BREWSTER J L,DE VALOIR T,DWYER N D,et al. An      (14):3574.
             osmosensing signal transduction pathway in yeast[J].  [27]  CAI M Y,ZHUANG W X,LV E,et al. Kaemperfol alle-
             Science,1993,259(5102):1760-1763.                   viates pyroptosis and microglia-mediated neuroinflamma-
        [14]  CUENDA A,NEBREDA A R. p38delta and PKD1:kinase     tion in Parkinson’s disease via inhibiting p38 MAPK/NF-κB
             switches for insulin secretion[J]. Cell,2009,136(2):209-  signaling pathway[J]. Neurochem Int,2022,152:105221.
             210.                                           [28]  ZHU Z J,GE M,LI C L,et al. Effects of p38 MAPK sig-
        [15]  NAVARRETE M,CUARTERO M I,PALENZUELA R,             naling pathway on cognitive function and recovery of neu-
             et al. Astrocytic p38α MAPK drives NMDA receptor-de-  ronal function after hypoxic-ischemic brain injury in new-
             pendent long-term depression and modulates long-term  born rats[J]. J Clin Neurosci,2020,78:365-370.
             memory[J]. Nat Commun,2019,10(1):2968.         [29]  QIANG L,SUN X H,AUSTIN T O,et al. Tau does not


        ·1018 ·  China Pharmacy 2022 Vol. 33 No. 8                                   中国药房    2022年第33卷第8期
   127   128   129   130   131   132   133   134   135   136   137