Previous Articles Next Articles
SONG Yi-lei,HOU Xue-qin,HAO Ji-fu
Online:
2019-12-26
Published:
2020-03-03
Contact:
郝吉福,教授,硕士生导师;研究方向:药物新剂型与新技术; E-mail:15864769568@163.com
About author:
宋宜蕾,女,药剂学硕士研究生; E-mail:15621339326@163.com
Supported by:
CLC Number:
SONG Yi-lei,HOU Xue-qin,HAO Ji-fu. Advances in Research on Modern Pharmacological Effects and Clinical Application of Cnidium[J]. Acta Neuropharmacologica, DOI: 10.3969/j.issn.2095-1396.2019.06.011.
Add to citation manager EndNote|Ris|BibTeX
URL: http://actanp.hebeinu.edu.cn/EN/10.3969/j.issn.2095-1396.2019.06.011
[1] Cai J N, Purusotam Basnet, Wang Z T, et al. Coumarins from the Fruits of Cnidium monnieri[J]. J Natural Products, 2000, 63(4):485-488. [2] Li Yi-min, Jia Min, Li Hua-qiang, et al. Cnidium monnieri: a review of traditional uses, phytochemical and ethnopharmacological properties[J]. The American J Chinese Medicine, 2015, 43(05):835-877. [3] 汪文来, 于智敏, 鞠大宏, 等. 蛇床子化学及药理研究进展[J]. 中国中医基础医学杂志, 2011, 17(6):704-704. [4] Kitajima Junichi, Toru Ishikawa, Yoshie Aoki. Glucides of Cnidium monnieri fruit [J]. Phytochemistry, 2001, 58(4):641-644. [5] 王小燕,薛云云,何邦平. 分光光度法测定蛇床子中铜、铁、锌含量的研究[J]. 药学实践杂志, 2007, 25(5):325-327. [6] Fabio Fusi, Giampietro Sgaragli, Le Minh Ha, et al. Mechanism of osthole inhibition of vascular Cav1.2 current[J]. European J Pharmacology, 2012, 680(1-3):22-27. [7] 许正新, 郑雪, 朱磊. 蛇床子素对大鼠心室肌细胞钠通道的影响[J]. 实用临床医药杂志, 2016, 20(7):1-5. [8] Liu Sheng-zhong, He Ying, Shi Jun, et al. Downregulation of miRNA‐30a enhanced autophagy in osthole‐alleviated myocardium ischemia/reperfusion injury[J]. J Cellular Physiology, 2019. [9] Wu Jing-guo, Yang Yang, Xun Nan, et al. Osthole attenuates myocardial ischemia/reperfusion injury in rats by inhibiting apoptosis and inflammation[J]. American J Translational Research, 2018, 10(4):1109-1116. [10] Li Kang, Ding Dun, Zhang Ming. Neuroprotection of Osthole against Cerebral Ischemia/Reperfusion Injury through an Anti-apoptotic Pathway in Rats[J]. Biological & Pharmaceutical Bulletin, 2016, 39(3):336-342. [11] He Ya-long, Qu Shou-yao, Wang Jiang, et al. Neuroprotective effects of osthole pretreatment against traumatic brain injury in rats[J]. Brain Research, 2012, 1433:127-136. [12] 沈丽霞, 任雷鸣. 蛇床子素对学习记忆的影响及其机制分析[J]. 药学学报, 1999, 34(6):405-409. [13] 沈丽霞, 金乐群, 张丹参,等. 蛇床子素对AlCl3致急性衰老模型小鼠记忆障碍的保护作用[J]. 药学学报, 2002,37(3):178-180. [14] Yan Yu-hui, Kong Liang, Xia Yang, et al. Osthole promotes endogenous neural stem cell proliferation and improved neurological function through Notch signaling pathway in mice acute mechanical brain injury[J]. Brain Behavior and Immunity, 2018, 67: 118-129. [15] Wang Yu, Zhou Yong, Wang Xiang, et al. Osthole alleviates MPTP-induced parkinson’s disease mice by suppressing Notch signaling pathway[J]. International Journal of Neuroscience, 2019, 129(9):833-841. [16] Liu Wen-bo, Zhou Jun, Qu Yan, et al. Neuroprotective effect of osthole on MPP+-induced cytotoxicity in PC12 cells via inhibition of mitochondrial dysfunction and ROS production[J]. Neurochemistry International, 2010, 57(3):206-215. [17] Chu Qiu-bo, Zhu Yan-feng, Cao Tian-jiao, et al. Studies on the Neuroprotection of Osthole on glutamate-induced apoptotic cells and an Alzheimer's disease mouse model via modulation oxidative stress[J]. Appl Biochem Biotechnol, 2019, DOI: 10.1007/s12010-019-03101-2. [18] Lin Ying, Liang Xi-cai, Yao Ying-jia, et al. Osthole attenuates APP-induced Alzheimer's disease through up-regulating miRNA-101a-3p[J]. Life Sciences, 2019, 225: 117-131. [19] Yao Y, Wang Y, Kong L, et al. Osthole decreases tau protein phosphorylation via PI3K/AKT/GSK-3β signaling pathway in Alzheimer's disease[J]. Life Sciences, 2019, 217: 16-24. [20] Hu Yu, Wen Qing-qing, Liang Wen-bo, et al. Osthole reverses beta-amyloid peptide cytotoxicity on neural cells by enhancing cyclic AMP response element-binding protein phosphorylation[J]. Biological and Pharmaceutical Bulletin, 2013, 36(12):1950-1958. [21] Devin J Cross, José E Cavazos. Synaptic reorganization in subiculum and CA3 after early-life status epilepticus in the kainic acid rat model[J]. Epilepsy Research, 2007, 73(2):156-165. [22] Du Meng, Sun Zheng, Lu Yao, et al. Osthole inhibits proliferation and induces apoptosis in BV-2 microglia cells in kainic acid-induced epilepsy via modulating PI3K/AKt/mTOR signalling way[J]. Pharmaceutical Biology, 2019, 57(1):238-244. [23] 佟凤芝, 曾常茜. 蛇床子素对海人酸致痫大鼠海马神经元Puma表达的影响[J]. 中国中医药科技, 2015, 22(1):41-43. [24] Lawrence G Raisz. Pathogenesis of osteoporosis: concepts, conflicts, and prospects[J].J Clinical Investigation, 2005, 115(12): 3318-3325. [25] Zheng X, Yu Y, Shao B, et al. Osthole improves therapy for osteoporosis through increasing autophagy of mesenchymal stem cells[J]. Experimental animals / Japanese Association for Laboratory Animal Science, 2019. [26] Zhang Zhong-Rong, Wing Nang Leung, Gang Li, et al. Osthole enhances osteogenesis in osteoblasts by elevating transcription factor osterix via cAMP/CREB signaling in vitro and in vivo[J]. Nutrients, 2017, 9(6):588. [27] Tang De-zhi, Hou Wei, Zhou Quan, et al. Osthole stimulates osteoblast differentiation and bone formation by activation of beta-catenin-BMP signaling[J].J Bone And Mineral Research : The Official J The American Society For Bone And Mineral Research, 2010, 25(6):1234-1245. [28] Jia Min, Li Yuan, Xin Hai-liang, et al. Estrogenic activity of osthole and imperatorin in MCF-7 cells and their osteoblastic effects in Saos-2 cells[J].Chinese J Natural Medicines, 2016,14(6):413-420. [29] 张夏微. 蛇床子素对大鼠雌激素样作用的实验研究[J]. 中国药理学通报, 2013, 29(7):1031-1032. [30] 梁龙龙, 潘志强, 王晓敏, 等. 蛇床子素对TM3小鼠睾丸间质细胞增殖及雄激素合成与分泌的影响[J]. 中药药理与临床, 2017,33(03):47-51. [31] 袁娟丽, 谢金鲜. 蛇床子素对生殖系统损伤小鼠睾丸和附睾组织形态的影响[J]. 南昌大学学报: 医学版, 2008, 48(2):23-25. [32] Huang T. Osthole protects against inflammation in a rat model of chronic kidney failure via suppression of nuclear factor-κB, transforming growth factor-β1 and activation of phosphoinositide 3-kinase/protein kinase B/nuclear factor (erythroid-derived 2)-like 2 signaling[J].Molecular medicine reports, 2017,16(4):4915-4921. [33] Fu Xiang-ping. Osthole attenuates mouse atopic dermatitis by inhibiting thymic stromal lymphopoietin production from keratinocytes[J].Experimental Dermatology, 2019, 28(5): 561-567. [34] Bao Y, Meng X, Liu F, et al. Protective effects of osthole against inflammation induced by lipopolysaccharide in BV2 cells[J].Molecular Medicine Reports, 2018,17(3): 4561-4566. [35] Hao Yue-wen. Osthole alleviates bleomycin-induced pulmonary fibrosis via modulating angiotensin-converting enzyme 2/angiotensin-(1-7) axis and decreasing inflammation responses in rats[J].Biological & Pharmaceutical Bulletin, 2016, 39(4): 457-465. [36] Donald Macglashan. FceRI density and spontaneous secretion from human basophils[J]. PLoS One, 2017, 12(7):e0179734. [37] 张秋秋, 雷铁池. 蛇床子素抑制佛波酯诱导RBL-2H3大鼠嗜碱性粒细胞脱颗粒[J]. 中国中西医结合皮肤性病学杂志, 2018, 17(02):13-16. [38] Wang Jing-jing, Fu Yun-he, Wei Zheng-kai, et al. Anti-asthmatic activity of osthole in an ovalbumin-induced asthma murine model[J]. Respiratory Physiology & Neurobiology, 2017, 239: 64-69. [39] Zou TL, Wang HF, Ren T, et al. Osthole inhibits the progression of human gallbladder cancer cells through JAK/STAT3 signal pathway both in vitro and in vivo[J].Anti-Cancer Drugs,2019 [40] Rebecca Dent, Maureen Trudeau, Kathleen I Pritchard, et al. Triple-negative breast cancer: clinical features and patterns of recurrence[J]. Clinical Cancer Research, 2007, 13(15):4429-4434. [41] Dai Xuan-xuan, Yin Chang-tian, Zhang Yi, et al. Osthole inhibits triple negative breast cancer cells by suppressing STAT3[J].J Experimental & Clinical Cancer Research : CR, 2018, 37(1): 322-332. [42] Yao Y, Zhao X, Xin J, et al. Coumarins improved type 2 diabetes induced by high-fat diet and streptozotocin in mice via antioxidation[J].Canadian J Physiology and Pharmacology, 2018, 96(8):765-771. [43] Mo Ze-jun, Li Ling-huan, Yu Hai-wen, et al. Coumarins ameliorate diabetogenic action of dexamethasone via Akt activation and AMPK signaling in skeletal muscle[J].J Pharmacological Sciences, 2019, 139(3): 151-157. [44] 宋美卿, 冯玛莉, 贾力莉, 等. 蛇床子的镇静催眠作用、宿醉反应和耐受性[J]. 现代药物与临床, 2010, 25(1):41-44. [45] Wu Sheng-nan, Lo Yuk-kang, Chen Chien-Chich, et al. Inhibitory effect of the plant-extract osthole on L-type calcium current in NG108-15 neuronal cells[J].Biochemical Pharmacology, 2002, 63(2): 199-206. [46] 杨小红, 马福广, 梁佩红. 复方蛇床子水剂对金黄色葡萄球菌凝固酶活性的影响[J]. 新中医, 2000, 32(3):37-38. [47] Toshihiro Okamoto, Toru Kawasaki, Okio Hino. Osthole prevents anti-Fas antibody-induced hepatitis in mice by affecting the caspase-3-mediated apoptotic pathway[J]. Biochemical Pharmacology, 2003, 65(4):677-681. [48] 王东海. 除湿汤外洗治疗湿疹58例[J]. 中医外治杂志, 2006, 15(1):12-13. [49] 左艳芬.蛇床子散加减熏洗与护理干预治疗阴道炎的效果观察[J].青海医药杂志, 2019,49(4):55-56. [50] 段亚芬. 中医药治疗肛门瘙痒症[J]. 湖北中医杂志, 2015, 37(3):56-57. [51] 冯仰梁.蛇床子在男科疾病的临床应用体会[J].黑龙江中医药, 2000, (05):24-25. |
[1] | ZHAO Jiao-jiao, YANG Lei, ZHANG Wei. Multidimensional Advances in Epilepsy Treatment: From Molecular Mechanisms to Clinical Strategies and Future Directions [J]. ACTA NEUROPHARMACOLOGICA, 2025, 15(3): 24-. |
[2] | GUO Guang-yu, XING Tao, LEI Ning-bo, XIAO Yang, XIE Jia-shu, LI Pan-pan, ZHANG Zhi-long, WANG Zhen-xin. Mechanism and Research Progress of IL-1β Modulation by Traditional Chinese Medicine in the Treatment of Osteoarthritis [J]. ACTA NEUROPHARMACOLOGICA, 2025, 15(1): 49-. |
[3] | ZHOU Xin-mei, ZHU Li-ping. Network Pharmacology Study of Sini SAN in the Treatment of Post-Stroke Depression [J]. ACTA NEUROPHARMACOLOGICA, 2024, 14(5): 19-. |
[4] | LI Na, ZHAO Cui-ying. Research Progress in the Treatment of Thin Endometrium with Traditional Chinese Medicine [J]. ACTA NEUROPHARMACOLOGICA, 2024, 14(4): 49-. |
[5] | XIA Lei, YOU Si-han, YIN Hong-yan, HAO Jun-rong, GUO Chun-yan. Exploring the Active Ingredients and Mechanism of Action of Paeoniae Radix Alba in the Treatment of Epilepsy Based on Network Pharmacology Methods [J]. ACTA NEUROPHARMACOLOGICA, 2024, 14(2): 26-. |
[6] | ZHANG Ran-ran, WU Zhi-gang. Research Progress of Neuroactive Steroid in the Treatment of Depression [J]. ACTA NEUROPHARMACOLOGICA, 2024, 14(1): 49-. |
[7] | CHEN Fan, REN Jun-xu, ZHANG Jing. To study the Mechanism of Astragalus Bupleurum on Hyperthyroidism Based on Network Pharmacology [J]. ACTA NEUROPHARMACOLOGICA, 2023, 13(5): 6-. |
[8] | TAO Yu-jing, WANG Xiang-fu, XIE Yu-tao, et al. Cyberpharmacology-Based Analysis of the Molecular Mechanism of Dokuto Parasite Soup in the Treatment of Intervertebral Disc Degeneration [J]. ACTA NEUROPHARMACOLOGICA, 2023, 13(4): 1-. |
[9] | LI Xiang-bo, HUANG Yu-li, YUAN Li, TENG Jin-liang. Association Between Preoperative Frailty and Perioperative Adverse Events [J]. ACTA NEUROPHARMACOLOGICA, 2023, 13(3): 60-. |
[10] | GAO Jing, ZHANG Shuai. Preliminary Study on the Potential Bioinformatics Mechanism of the Occurrence and Development of Hypertensive Disorder Complication Pregnancy [J]. ACTA NEUROPHARMACOLOGICA, 2023, 13(2): 24-. |
[11] | YU Mei-hua, ZHOU Jing, GAO Shi-jie, BAO Jin-feng. Mechanism of Sirtuins in Neurodegenerative Diseases [J]. ACTA NEUROPHARMACOLOGICA, 2023, 13(1): 35-. |
[12] | YAO Peng-cheng, MA Bin-xiang, CHEN Guo-dong, YAN Wei-ping, GONG Yu-suo, ZHENG Jian-peng, LIU Shuai. Study on the Mechanism of Platelet-Rich Plasma in the Treatment of Pathological Neuralgia of Lumbar Disc Herniation [J]. ACTA NEUROPHARMACOLOGICA, 2023, 13(1): 43-. |
[13] | FAN Rong - zhen, GUO Bao, JING Yong - shuai, ZHANG Dan - shen. Research Progress on Potential Therapeutic Targets of Ulcerative Colitis [J]. ACTA NEUROPHARMACOLOGICA, 2022, 12(6): 57-64. |
[14] | XU Fei, WU Jiu-zai, ZHANG Qiang-qiang, CHEN Zheng-yuan, CHEN Dong. Study on the Prevention and Treatment Mechanism of Single Herb Extract on Acute Lung Injury [J]. ACTA NEUROPHARMACOLOGICA, 2022, 12(3): 34-. |
[15] | ZHAO Hui-qiao, SHI Tong-tong, LI Zhong-ping, et al. Research Progress of Agrimony in the Treatment of Intestinal Diseases [J]. ACTA NEUROPHARMACOLOGICA, 2022, 12(2): 42-. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||