应用
3-硝基-L-酪氨酸已用于:
- 蛋白质印迹分析,定量分析小鼠组织蛋白中的硝基酪氨酸水平
- Murashige–Skoog培养基,用于处理野生型和丝裂原活化蛋白激酶6 (mpk6)-2突变体幼苗,推断一氧化氮(NO)和MPK6在调节有丝分裂微管组织中的功能联系
- 免疫细胞化学
生化/生理作用
3-硝基-L-酪氨酸是一种氧化剂和细胞毒剂。在全身性自免疫疾病患者体内,3-硝基酪氨酸可作为氮自由基改性蛋白质的生物标记物。它是过氧亚硝酸盐介导的氧化损伤的标志物。硝基酪氨酸与乳腺癌患者体内的VEGF-C表达和淋巴结转移有关。3-硝基酪氨酸由氧化/亚硝化压力介导的化学改性(如在肺癌发生中观测到的蛋白质硝化)产生。
WGK
WGK 3
闪点(°F)
Not applicable
闪点(°C)
Not applicable
个人防护装备
Eyeshields, Gloves, type N95 (US)
Environmental science and pollution research international, 26(21), 21556-21564 (2019-05-28)
The evaluation of the toxicological effects of titanium dioxide nanoparticles (TiO2NPs) is increasingly important due to their growing occupational and industrial use. Curcumin is a yellow curry spice with a long history of use in herbal medicine and has numerous
Scientific reports, 6, 39405-39405 (2016-12-23)
Thalidomide can modulate the TNFα-NFκB and iNOS pathway, which involve in the pathogenesis of hepatopulmonary syndrome (HPS) and muscle wasting in cirrhosis. In bile duct ligated-cirrhotic rats, the increased circulating CD16+ (inflammatory) monocytes and its intracellular TNFα, NFκB, monocyte chemotactic
Toxicology, 372, 52-63 (2016-11-07)
Chronic anthracycline (ANT) cardiotoxicity is a serious complication of cancer chemotherapy. Molsidomine, a NO-releasing drug, has been found cardioprotective in different models of I/R injury and recently in acute high-dose ANT cardiotoxicity. Hence, we examined whether its cardioprotective effects are
Metabolism: clinical and experimental, 63(8), 1000-1011 (2014-06-17)
Consumption of a high-fat/high-fructose Western diet (WD) is linked to rising obesity and heart disease, particularly diastolic dysfunction which characterizes early obesity/metabolic cardiomyopathy. Mounting evidence supports a role for inflammation, oxidative stress and fibrosis in the pathophysiology of metabolic cardiomyopathy.
Journal of pineal research, 67(2), e12584-e12584 (2019-05-03)
Brain insulin resistance, induced by neuroinflammation and oxidative stress, contributes to neurodegeneration, that is, processes that are associated with Aβ accumulation and TAU hyperphosphorylation. Here, we tested the effect of chronic administration of melatonin (MLT) on brain insulin resistance and
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