| 1 |
RYABKOVA V A, CHURILOV L P, SHOENFELD Y.Influenza infection, SARS, MERS and COVID-19: Cytokine storm - The common denominator and the lessons to be learned[J]. Clin Immunol, 2021, 223: 108652.
|
| 2 |
LI B, LU F, WEI X J, et al. Fucoidan: structure and bioactivity[J]. Molecules, 2008, 13(8): 1671-1695.
|
| 3 |
王亚囡, 仇文峰, 杨 毅, 等. 分子量对海参岩藻聚糖硫酸酯在体内吸收的影响[J]. 中国海洋药物, 2020, 39(2): 42-49.
|
| 4 |
宋小雨, 玄光善, 于广利. 岩藻聚糖硫酸酯药理学活性研究进展[J]. 中国海洋药物, 2017, 36(1): 92-97.
|
| 5 |
ORECCHIONI M, GHOSHEH Y, PRAMOD A B,et al.Macrophage polarization: different gene signatures in M1(LPS+) vs. classically and M2(LPS-) vs. alternatively activated macrophages[J].Front Immunol,2019,10: 1084.
|
| 6 |
APOSTOLOVA E, LUKOVA P, BALDZHIEVA A, et al. Immunomodulatory and anti-inflammatory effects of fucoidan: a review[J]. Polymers,2020,12(10): 2338.
|
| 7 |
刘爱良, 鲍燕敏, 郑跃杰, 等. 呼吸道病毒感染相关细胞因子风暴与靶向治疗策略[J]. 中华实用儿科临床杂志, 2021, 36(24): 1913-1917.
|
| 8 |
李俏琦, 杨 茜, 高 玲, 等. 细胞因子风暴与病毒性肺炎[J].中国呼吸与危重监护杂志,2021,20(1):70-75.
|
| 9 |
JANG J Y, MOON S Y, JOO H G. Differential effects of fucoidans with low and high molecular weight on the viability and function of spleen cells[J]. Food Chem Toxicol, 2014, 68: 234-238.
|
| 10 |
TABARSA M, DABAGHIAN E H, YOU S G, et al. The activation of NF-κB and MAPKs signaling pathways of RAW264.7 murine macrophages and natural killer cells by fucoidan from Nizamuddinia zanardinii[J]. Int J Biol Macromol, 2020, 148: 56-67.
|
| 11 |
刘 亮, 孟 圆, 高全立. 细胞因子风暴综合征和细胞因子释放综合征的研究进展[J]. 中国肿瘤临床, 2022, 49(12): 607-611.
|
| 12 |
ASANKA SANJEEWA K K A, FERNANDO I P S, KIM S Y, et al. In vitro and in vivo anti-inflammatory activities of high molecular weight sulfated polysaccharide; containing fucose separated from Sargassum horneri: short communication[J]. Int J Biol Macromol, 2018, 107(Pt A): 803-807.
|
| 13 |
杨鹏翔, 高玉雪, 刘 欢, 等. 胆汁中趋化因子C-X3-C-基元受体1和可溶性CD40配体在肝移植术后肝损伤中的预测价值[J].临床肝胆病杂志,2021,37(4):841-845.
|
| 14 |
COPERCHINI F, CHIOVATO L, RICCI G, et al. The cytokine storm in COVID-19: further advances in our understanding the role of specific chemokines involved[J]. Cytokine Growth Factor Rev, 2021, 58: 82-91.
|
| 15 |
谭丙绣, 王 艳, 侯 喆, 等. 新型冠状病毒诱发细胞因子风暴机制的研究进展[J]. 国际病毒学杂志, 2023, 30(3): 251-254.
|
| 16 |
张 晶, 王晓非. 高迁移率族蛋白B1白细胞介素-6及白细胞介素-9在系统性红斑狼疮患者血清中表达及临床意义[J]. 中国实用内科杂志, 2022,42(12):1022-1025.
|
| 17 |
HUANG C L, WANG Y M, LI X W, et al. Clinical features of patients infected with 2019 novel coronavirus in Wuhan,China[J].Lancet,2020,395(10223):497-506.
|
| 18 |
XIONG Y, LIU Y, CAO L, et al. Transcriptomic characteristics of bronchoalveolar lavage fluid and peripheral blood mononuclear cells in COVID-19 patients[J].Emerg Microbes Infect,2020,9(1):761-770.
|
| 19 |
王冬梅, 袁宝军, 袁 伟, 等. 壹期矽肺患者血清中MIP-1α、MIP-1β和MIP-3α水平及其与肺功能关系[J]. 职业与健康, 2016, 32(5): 592-594, 602.
|
| 20 |
陈 慧. 血清MIP-1α、sTREM-1水平对重症肺炎患者预后的预测价值[J]. 临床医学, 2021, 41(12): 35-37.
|
| 21 |
逯 玲. 急性呼吸窘迫综合征病人血清可溶性髓样细胞触发受体1、巨噬细胞炎症蛋白-1α的表达[J]. 安徽医药, 2021, 25(7): 1442-1446.
|
| 22 |
YU H H, CHENGCHUAN KO E, CHANG C L,et al. Fucoidan inhibits radiation-induced pneumonitis and lung fibrosis by reducing inflammatory cytokine expression in lung tissues[J]. Mar Drugs, 2018, 16(10): 392.
|
| 23 |
BUIJSERS B, MACIEJ-HULME M, JACOBS M,et al.Glycosaminoglycans and fucoidan have a protective effect on experimental glomerulonephritis[J].Front Mol Biosci, 2023, 10: 1223972.
|
| 24 |
HUWAIT E, AL-SAEDI D A, MIRZA Z. Anti-inflammatory potential of fucoidan for atherosclerosis: in silico and in vitro studies in THP-1 cells[J]. Molecules, 2022, 27(10): 3197.
|
| 25 |
胡世伟, 王静凤, 李世杰, 等. 海地瓜岩藻聚糖硫酸酯对胰岛素抵抗小鼠肝脏炎症反应的影响[J]. 营养学报, 2016, 38(1): 24-29, 35.
|
| 26 |
WANG J H, HU S W, JIANG W, et al. Fucoidan from sea cucumber may improve hepatic inflammatory response and insulin resistance in mice[J]. Int Immunopharmacol, 2016, 31: 15-23.
|
| 27 |
WANG J H, HU S W, WANG J F, et al. Fucoidan from Acaudina molpadioides protects pancreatic islet against cell apoptosis via inhibition of inflammation in type 2 diabetic mice[J]. Food Sci Biotechnol, 2016, 25(1): 293-300.
|