水杨酸类

  • 网络Salicylates;Salicylic Acid
水杨酸类水杨酸类
  1. 国内外科学家对其研究仍很广泛,本文综述了水杨酸类药物的镇痛作用及其机制的研究进展。

    The paper summarizes the progress of analgesic effect and mechanism for salicylates .

  2. 氨基水杨酸类药物对一氧化氮合成酶、粘附分子及肠道通透性等亦有影响。

    The salicylates also effect nitric oxide synthesis , adhesion molecules and the intestine permeability .

  3. 因此,嘧啶苄胺类化合物的除草作用方式不同于磺酰脲类和嘧啶水杨酸类等典型的ALS抑制剂,它是通过植物体内的代谢活化来发挥除草作用。

    It is Concluded that the mode of action of pyrimidine benzylamine differs from the other typically commercial ALS inhibitors , such as sulfonylurea and pyrimidine salicylic acid herbicides .

  4. 当前,氨基水杨酸类药物如艾迪莎和柳氮磺胺吡啶(sulfasalazin,SASP)是治疗溃疡性结肠炎的主要和基本药物。

    Currently , aminosalicylic acid ( ASA ) including Etiasa and SASP is the main and basic medication for the treatment of UC in human .

  5. 水和非水毛细管电泳-电导检测法分离测定水杨酸类药物

    Separation of salicylic acid drugs by aqueous and nonaqueous capillary electrophoresis with conductance detector

  6. 含钛稀土复合孕育剂的研究水杨酸类稀土配合物的研究进展

    An Investigation on RE and Ti-Containing Combinated Inoculants Progress in Studies on Complexes of Rare Earth with Salicylic Acids

  7. 我们认为,水杨酸类药物是通过直接作用于β细胞、促进胰岛素分泌而降低血糖的。

    We suggest that this effect was mediated through increased insulin secretion induced by salicylate directly on the β - cell .

  8. 综述了水杨酸类稀土配合物的类型、合成方法、结构特征和应用。

    This article reviews the types , synthesis method , structural characterization and applications of rare earth complexes with salicylic acids .

  9. 然而,在水杨酸类药物使用过程中,常伴随着不少的副作用,尤以耳毒性最为常见,主要表现为耳鸣和听力下降。

    However , there are many side effects associated with the use of salicylates , especially the ototoxicity which is most common , mainly characterized by tinnitus and hearing loss .

  10. 临床常用糖皮质激素和5-氨基水杨酸类药物治疗溃疡性结肠炎,但因其副作用较多,限制了长期使用。

    In clinic , glucocorticoid and 5-amino salicylic acid are common in treating ulcerative colitis , but in view of their serious side-effects , they have been limited to use for long time .

  11. 探讨乙酰水杨酸对盐胁迫条件下苗期番茄体内蔗糖代谢相关酶活性与基因表达的影响,为水杨酸类物质调控设施番茄的耐盐性提供新证据。

    The objective of this study was to investigate the effects of acetylsalicylic acid on activity of sucrose-metabolizing enzyme in tomato seedlings under salt stress and to provide a new evidence for tolerating salt stress of cultivated tomato .