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1)  oxidized and reduced
氧化态和还原态
2)  redox status
氧化还原态
1.
The alteration of the redox status in the tissue of malignant tumors has close relationship with carcinogenesis and cancer progression.
氧化还原态的变化与肿瘤的发生、发展有着密切的关系,但目前相关研究对于肿瘤组织中此种变化尚无一致性结论。
2.
It is known that Rare Earth Elements (REEs) could not only stimulate plant cell growth and biosynthesis of secondary metabolites such as isoflavones in the short time, but also regulate the redox status of plant cell through changing the content of oxidase including SOD, CAT, etc.
为了探究植物细胞次生代谢产物合成与氧化还原态变化之间的关系,本论文选择稀土元素作为诱导子,用合成异黄酮的怀槐培养细胞考察稀土元素刺激异黄酮合成和细胞氧化还原态变化的关系。
3)  redox state
氧化还原态
1.
When the cellular redox state changes, cell functions will change.
由于肿瘤细胞对血管具强烈的促增殖效应,同时又显示出明显的氧化还原态的偏移,那么两者之间是否有关联?在不改变促血管生成因子的前提下,改变内皮细胞的氧化还原态是否可以改变肿瘤细胞对血管的促增殖效应?上述问题的阐明,不仅具有明确的理论价值,亦具有诱人的应用前景。
2.
Polyaniline nanodot array had been fabricated in AAO template with potentiostatic method and the I~V characteristics of nanodots with different redox states were measured by conducting atomic force microscope (C-AFM) in atmosphere at room temperature.
应用电化学恒电位法结合模板法制备聚苯胺纳米点阵列,导电原子力显微镜研究处于不同氧化还原态的聚苯胺纳米点的I~V特性,发现只有处于部分氧化态(导电态)的聚苯胺纳米点才出现库仑台阶效应,还原和全氧化态聚苯胺纳米点不显示库仑台阶。
4)  redox state
氧化还原状态
1.
Effects of buthionine sulfoxine on the redox state of human umbilical vein endothelial cells cultured with K562 cells conditioned media;
BSO对内皮细胞氧化还原状态的影响
2.
The activity of LHCII kinase is controlled by redox state of plastoquinone and the cytochrome b6f complex, and thus LHCII phosphorylation is generally considered to be light dependent.
由于LHCII 激酶的活性受到电子递体质醌和细胞色素b6f 复合体氧化还原状态的调节,因此在通常情况下LHCII 磷酸化是依赖光照的。
3.
The diection of cellular redox reaction was determined by redox state.
细胞内氧化还原状态的变化决定着氧化还原反应的发生方向,并通过一定的机制进行制衡。
5)  Redox status
氧化还原状态
1.
The study presented in this paper probed the effects of nitric oxide, reactive oxygen species and drought stress on redox status in the roots and ABA accumulation in the leaves of wheat as well as the mechanism by which nitric oxide and reactive oxygen species regulated ABA synthesis under drought stress.
通过分析一氧化氮(nitric oxide,NO)、活性氧(reactive oxygen species,ROS)和干旱胁迫对小麦根氧化还原状态和叶片脱落酸(abscisic acid,ABA)积累的影响,探讨了干旱胁迫下NO和H2O2调节ABA合成的可能机制。
6)  Redox homeostasis
氧化还原稳态
补充资料:氧化态
      见氧化数。
  

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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