Han Rong-Bin, Yuan Ying-Jin
Department of Pharmaceutical Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, P. R. China.
Biotechnol Prog. 2004 Mar-Apr;20(2):507-13. doi: 10.1021/bp034242p.
Generation of active oxidative species induced by shear stress in suspension cultures of Taxus cuspidata was investigated in a Couette-type shear reactor. It was found that T. cuspidata cells respond to a shear rate of 95 s(-)(1) with oxidative bursts. Their triphasic characteristics in 6 h were similar in both intracellular H(2)O(2) production and extracellular O(2)(-)( )() production. Additionally, inhibition studies with diphenylene iodonium and azide suggested that the key enzyme responsible for oxidative bursts under the shear rate of 95 s(-)(1) is primarily NADPH oxidase and the contribution of peroxidase for oxidative bursts was less. Investigation of the relationship between active oxidative species and defense responses induced by the shear stress indicated that the O(2)(-)( )() burst may account for the change of membrane permeability, and the H(2)O(2) burst plays an important role in inducing secondary metabolites such as the activation of phenylalanine ammonia lyase enzyme and phenolic accumulation. Furthermore, oxidative bursts elicited by the shear rate of 95 s(-)(1) were suppressed by treatment with suramin, nifedipine, and neomycin prior to the shear stress treatment, suggesting that G-protein, Ca(2+) channel, and phospholipase C are involved in the signal pathway for oxidative bursts induced by the shear stress. A model is proposed to explain the oxidative burst in cultured T. cuspidata cells challenged with the shear stress.
在库埃特型剪切反应器中研究了东北红豆杉悬浮培养物中剪切应力诱导的活性氧化物质的产生。发现东北红豆杉细胞对95 s⁻¹的剪切速率会产生氧化爆发反应。它们在6小时内的三相特征在细胞内H₂O₂产生和细胞外O₂⁻·产生方面相似。此外,用二苯基碘鎓和叠氮化物进行的抑制研究表明,在95 s⁻¹的剪切速率下负责氧化爆发的关键酶主要是NADPH氧化酶,过氧化物酶对氧化爆发的贡献较小。对活性氧化物质与剪切应力诱导的防御反应之间关系的研究表明,O₂⁻·爆发可能解释了膜通透性的变化,而H₂O₂爆发在诱导次生代谢产物如苯丙氨酸解氨酶的激活和酚类物质积累方面起着重要作用。此外,在剪切应力处理之前用苏拉明、硝苯地平和新霉素处理可抑制95 s⁻¹的剪切速率引发的氧化爆发,这表明G蛋白、Ca²⁺通道和磷脂酶C参与了剪切应力诱导的氧化爆发的信号通路。提出了一个模型来解释受到剪切应力挑战的东北红豆杉培养细胞中的氧化爆发。