[1]李禹正, 张婷, 王晓民. 生物钟的秘密——2017年诺贝尔生理学或医学奖简介[J]. 首都医科大学学报, 2017, 38(5): 765-769.
[2]王可, 张婷, 王晓民. 大脑中的 “定位系统”——2014年诺贝尔生理学或医学奖简介[J]. 首都医科大学学报, 2014, 35(5): 671-675.
[3]汪璇, 王晓民. 细胞命运的逆转: 体细胞核移植与诱导多能干细胞——2012年诺贝尔生理学或医学奖简介[J]. 首都医科大学学报, 2012, 33(5): 689-694.
[4]张婷, 王晓民. 体外受精与试管婴儿——2010年诺贝尔生理学或医学奖简介[J]. 首都医科大学学报, 2010, 31(5): 678-682.
[5]杨宏彦, 王晓民. 由 “程序性细胞死亡” 透视2002年诺贝尔生理学或医学奖[J]. 生理通讯, 2002, 21(6): 178-181.
[6]王晓民. 攻克器官和组织移植的免疫排斥——1990年诺贝尔生理学或医学奖授与二位美国医生Murray和Thomas[J]. 生理科学进展, 1991, 22(2): 191.
[7]Jia J, Sun Z L, Li B, et al. Electro-acupuncture stimulation improves motor disorders in Parkinsonian rats[J]. Behav Brain Res, 2009, 205(1): 214-218.
[8]Liu X Y, Zhou H F, Pan Y L, et al. Electro-acupuncture stimulation protects dopaminergic neurons from inflammation-mediated damage in medial forebrain bundle-transected rats[J]. Exp Neurol, 2004, 189(1): 189-196.
[9]Liang X B, Luo Y, Liu X Y, et al. Electro-acupuncture improves behavior and upregulates GDNF mRNA in MFB transected rats[J]. Neuroreport, 2003, 14(8): 1177-1181.
[10]Liang X B, Liu X Y, Li F Q, et al. Long-term high-frequency electro-acupuncture stimulation prevents neuronal degeneration and up-regulates BDNF mRNA in the substantia nigra and ventral tegmental area following medial forebrain bundle axotomy[J]. Brain Res Mol Brain Res, 2002, 108(1/2): 51-59.
[11]Jia J, Li B, Sun Z L, et al. Electro-acupuncture stimulation acts on the basal ganglia output pathway to ameliorate motor impairment in Parkinsonian model rats[J]. Behav Neurosci, 2010, 124(2): 305-310.
[12]Jia J, Yu Y, Deng J H, et al. A review of omics research in acupuncture: the relevance and future prospects for understanding the nature of meridians and acupoints[J]. J Ethnopharmacol, 2012, 140(3): 594-603.
[13]Zhen J L, Qian Y J, Weng X C, et al. Gamma rhythm low field magnetic stimulation alleviates neuropathologic changes and rescues memory and cognitive impairments in a mouse model of Alzheimer's disease[J]. Alzheimers Dement (N Y), 2017, 3(4): 487-497.
[14]Zhou H F, Liu X Y, Niu D B, et al. Triptolide protects dopaminergic neurons from inflammation-mediated damage induced by lipopolysaccharide intranigral injection[J]. Neurobiol Dis, 2005, 18(3): 441-449.
[15]Li F Q, Cheng X X, Liang X B, et al. Neurotrophic and neuroprotective effects of tripchlorolide, an extract of Chinese herb Tripterygium wilfordii Hook F, on dopaminergic neurons[J]. Exp Neurol, 2003, 179(1): 28-37.
[16]Zhang T, Gong X L, Hu G Z, et al. EP2-PKA signaling is suppressed by triptolide in lipopolysaccharide-induced microglia activation[J]. J Neuroinflammation, 2015, 12: 50.
[17]Gong Y T, Xue B, Jiao J, et al. Triptolide inhibits COX-2 expression and PGE2 release by suppressing the activity of NF-κB and JNK in LPS-treated microglia[J]. J Neurochem, 2008, 107(3): 779-788.
[18]Zheng Y, Zhang W J, Wang X M. Triptolide with potential medicinal value for diseases of the central nervous system[J]. CNS Neurosci Ther, 2013, 19(2): 76-82.
[19]Zhang F L, He Y, Zheng Y, et al. Therapeutic effects of fucoidan in 6-hydroxydopamine-lesioned rat model of Parkinson's disease: role of NADPH oxidase-1[J]. CNS Neurosci Ther, 2014, 20(12): 1036-1044.
[20]Cui Y Q, Jia Y J, Zhang T, et al. Fucoidan protects against lipopolysaccharide-induced rat neuronal damage and inhibits the production of proinflammatory mediators in primary microglia[J]. CNS Neurosci Ther, 2012, 18(10): 827-833.
[21]Zhou J X, Zhang H B, Huang Y, et al. Tenuigenin attenuates α-synuclein-induced cytotoxicity by down-regulating polo-like kinase 3[J]. CNS Neurosci Ther, 2013, 19(9): 688-694.
[22]Yuan H L, Li B, Xu J, et al. Tenuigenin protects dopaminergic neurons from inflammation-mediated damage induced by the lipopolysaccharide[J]. CNS Neurosci Ther, 2012, 18(7): 584-590.
[23]Wang J J, Zhang T, Niu D B, et al. Doxycycline-regulated co-expression of GDNF and TH in PC12 cells[J]. Neurosci Lett, 2006, 401(1/2): 142-145.
[24]Wang J J, Niu D B, Zhang T, et al. A tetracycline-regulatable adeno-associated virus vector for double-gene transfer[J]. Neurosci Lett, 2005, 378(2): 106-110.
[25]Wang X, Wu H T, Zhang Z X, et al. Effects of interleukin-6, leukemia inhibitory factor, and ciliary neurotrophic factor on the proliferation and differentiation of adult human myoblasts[J]. Cell Mol Neurobiol, 2008, 28(1): 113-124.
[26]Wang X, Liang X B, Li F Q, et al. Therapeutic strategies for Parkinson's disease: the ancient meets the future-traditional Chinese herbal medicine, electroacupuncture, gene therapy and stem cells[J]. Neurochem Res, 2008, 33(10): 1956-1963.
[27]Wang X, Lu Y Y, Zhang H Q, et al. Distinct efficacy of pre-differentiated versus intact fetal mesencephalon-derived human neural progenitor cells in alleviating rat model of Parkinson's disease[J]. Int J Dev Neurosci, 2004, 22(4): 175-183.
[28]Wang X, Li X X, Wang K, et al. Forskolin cooperating with growth factor on generation of dopaminergic neurons from human fetal mesencephalic neural progenitor cells[J]. Neurosci Lett, 2004, 362(2): 117-121.
[29]Wang L, Gong X L, Liu Y, et al. CD200 maintains the region-specific phenotype of microglia in the midbrain and its role in Parkinson's disease[J]. Glia, 2020, 68(9): 1874-1890.
[30]Fan Z, Pan Y T, Zhang Z Y, et al. Systemic activation of NLRP3 inflammasome and plasma α-synuclein levels are correlated with motor severity and progression in Parkinson's disease[J]. J Neuroinflammation, 2020, 17(1): 11.
[31]张丽娟, 邵海涛, 王跃秀, 等. 帕金森病研究进展[J]. 生命科学, 2014, 26(6): 560-570.
[32]王晓民, 李林. 神经变性病教育部重点实验室的建设与发展[J]. 首都医科大学学报, 2010, 31(4): 497-508.
[33]徐志卿. 新挑战、新机遇、新体制、新蓝图——“北京脑重大疾病研究院”、“国际转化神经科学联盟” 和 “脑重大疾病防治协同创新中心” 隆重成立[J]. 首都医科大学学报, 2012, 33(5): 551-552.
[34]中国生理学会. 根深叶茂 蔚然成荫. 中国生理学人物记[M]. 北京:高等教育出版社, 2011.
[35]中国生理学会. 根深叶茂 蔚然成荫. 中国生理学团队记 [M]. 北京:高等教育出版社, 2011.
[36]王晓民, 王韵, 王世强. 执着和奉献:纪念中国生理学会成立90周年:1926-2016 [M]. 北京:高等教育出版社, 2016.
[37]王晓民. 我国科技计划的布局及脑重大疾病研究战略的思考[J]. 中国药理学与毒理学杂志, 2019, 33(6): 401.
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