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1)  Sialic acid
唾液酸
1.
Study on the dynamic variation rule of Sialic acid content in milk;
牛奶中唾液酸含量的动态变化规律研究
2.
Relationship between levels of serum CA19-9,sialic acid and Lewis blood group in diabetic patients;
糖尿病患者血清中CA19-9水平与唾液酸及Lewis血型的关系
3.
Determination of sialic acid and serum Ca in patients with lung cancer;
肺癌患者血清唾液酸含量及微量元素钙含量的测定
2)  SA
唾液酸
1.
Investigation of serum SA level in gynecological tumor;
妇科肿瘤患者血清唾液酸水平测定的临床意义
2.
Objective To detect the changes of serum CA153、SA、TNF-a contents both before and aftar treatment in patient with breast cancer.
目的探讨乳腺癌患者治疗前后血清糖类抗原CA153(CA153)、唾液酸(SA)和肿瘤坏死因子-a(TNF-a)含量。
3.
Objective To investigate the clinical usefulness of determination of serum SA, CEA and CRP levels in patients with colo-rectal cancer.
目的:探讨血清唾液酸(SA)、癌胚抗原(CEA)和C反应蛋白(CRP)在诊断结直肠癌患者的临床意义。
3)  Sialic Acids
唾液酸
1.
The quantity of Nc-glycans and sialic acids in recombinant human pro-urokinase was determined by combination of enzyme methods with biological mass spectrometry.
酶法结合生物质谱技术测定了基因重组糖蛋白 人尿激酶原(rhProUK)的N 糖含量、唾液酸含量分 别为9%和5%。
2.
A new method was described which allowed the analysis of sialic acids in glycoproteins at femtomole.
利用毛细管电泳分析唾液酸2氨基吖啶酮(AMAC)衍生物方法,可在飞摩尔水平分析糖蛋白中唾液酸
4)  saliva acid
唾液酸
1.
Diagnosis value of β_2-microglobulin and saliva acid in pleural effusion;
胸水β_2-微球蛋白和唾液酸检测鉴别良恶性胸水的价值
2.
The ATP enzyme activity and content of saliva acid of RBC membrane were detected.
检测雏鸡红细胞膜ATPase活性和唾液酸(SA)含量。
3.
Objective To study relativity of saliva acid and biologic effect of recombinant human erythropoietin.
方法 采用间苯二酚显色法测定rhEPO的唾液酸含量 ;网织红细胞法测定rhEPO的生物活性 ;并对二者进行相关性分析。
5)  polysialic acid
聚唾液酸
1.
Effects of the N~+implantation on the strain of polysialic acid;
N~+注入对产聚唾液酸菌株的影响
2.
Studies on kinetics of polysialic acid fermentation process;
唾液酸的发酵动力学研究
3.
Recent progress in polysialic acid and sialic acid research;
唾液酸唾液酸的研究进展
6)  sialic acid (SA)
唾液酸(SA)
补充资料:唾液酸
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性质:唾液酸是N或O位脂酰神经氨酸,神经氨酸是由氨基甘露糖和丙酮酸派生的9碳糖。人体组织中的唾液酸主要是N-乙酰神经氨酸(NeuAc),NeuAc是糖蛋白和神经节苷脂的组成成分。用唾液酸苷酶处理某些血浆蛋白(如铜蓝蛋白),去掉其糖链末端NeuAc,暴露出次末端半乳糖残基,可被肝受体识别,迅速被内吞,使之从血浆中消失。这表明唾液酸在调节某些糖蛋白的生物学性质(如在血循环中居留时间)上起重要作用。

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