Deferoxamine Attenuated Hemorrhagic Transformation in a Rat Model of Transient Focal Cerebral Ischemia 去铁敏减轻大鼠短暂性局灶性脑缺血后出血性转换的研究
A Exploratory-study of the cytoprotection of deferoxamine on endothelium under hypoxia 去铁胺对低氧内皮细胞保护作用机制的探讨
The protective effect of deferoxamine preconditioning on transplanted liver 去铁敏预处理对移植供肝保护作用的研究
Meta-analysis of the efficacy and safety of combined therapy with deferiprone and deferoxamine in thalassemia major patients 去铁酮和去铁胺治疗珠蛋白生成障碍性贫血临床疗效及安全性的Meta分析
Protective Effect of Deferoxamine on Primary Culture of Cardiomyocytes in Rats 铁离子螯合剂去铁敏在大鼠心肌细胞原代培养中对心肌细胞的保护作用
Deferoxamine is like a lubricant. 去铁胺就像是润滑剂。
Protective Effect of Deferoxamine and Ginkgo Biloba Extract ( EGb) on Ototoxicity of Cisplatin 铁螯合剂与银杏叶提取物合用防治顺铂耳毒性
Effect of Deferoxamine on Aquaporin-4 Expression in a Rat Model of Intracerebral Haemorrhage 去铁胺干预对大鼠ICH后水通道蛋白4表达变化的影响
Effect of Combination of Ginkgo Leaf Extract and Deferoxamine in Preventing and Treating Ototoxicity of Cisplatin 银杏叶提取物与去铁胺合用防治顺铂耳毒性实验研究
The effect of deferoxamine ( DFX), the ferric iron chelator, on bovine pulmonary endothelial cell ( BPAEC) injury induced by hydrogen peroxide ( H 2O 2) was examined in vitro. 观察铁离子螯合剂-去铁胺对过氧化氢(H2O2)所致牛肺动脉内皮细胞损伤的影响。
The animal model of iron low-load was created by intravenation of deferoxamine ( DFO) or phlebotomy respectively, and immunological liver damage model was reproduced by injection of BCG ( Bacilli Calmette Guein) and lipopolysaccharide ( LPS). 方法通过放血或去铁胺(DFO)处理建立低铁动物模型。采用卡介苗加脂多糖(BCG+LPS)诱导法复制免疫性肝损伤模型。
Study of Deferoxamine Protection Against Gentamicin Ototoxicity 甲磺酸去铁胺对抗庆大霉素耳毒性的实验研究
Deferoxamine protects against gentamicin ototoxicity Experimental Study on Early Diagnosis and Treatment of Gentamicin Ototoxicity 甲磺酸去铁胺抗庆大霉素耳毒性作用及机理研究庆大霉素耳蜗毒性早期诊断和治疗的实验研究
No data of the other possible mechanisms of deferoxamine except its iron chelation to inhibit iron direct toxication. 尽管可见铁螯合剂一去铁胺治疗脑出血的许多资料报道,但除螯合铁直接抑制铁的毒性作用之外,是否尚有其他可能机制目前未见报道。
Deferoxamine ( DFO)-a potent iron chelator can relieve brain edema resulted from ICH and hemoglobin. 各种导致脑水肿的因素可能最终通过影响水通道蛋白4(AQP4)而发挥作用。去铁胺,一种强有力的铁螯合剂,可减轻脑出血后的脑水肿形成。