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guanosine相关的网络例句

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与 guanosine 相关的网络例句 [注:此内容来源于网络,仅供参考]

Twenty-four hours after the last oral administration, the blood were obtained and used for testing adrenocorticotrophic hormone, cyclic adenosine monophosphate, cyclic guanosine monophosphate, glucose, cholesterol, alanine aminotransferase, urea nitrogen. Results Before taking medicine, model rats' cAMP/cGMP and ACTH were lower than normal rats', and they showed a trend of rise with adding dose. Before taking medicine, model rats' GLU was lower than normal rats'. With adding dose, model rats' GLU increased, however, normal rats' GLU reduced. When taken medium dose white prepared lateral root of aconite, model rats' CHO was higher than normal rats'. Taking medicine made both groups ALT rise, but normal rats' went up more quickly than model rats'. Model rats' BUN was higher than normal rats', and taking low dose or little dose medicine could lead to incline of reduction.

结果 给药前模型组环磷酸腺苷/环磷酸鸟苷和促肾上腺皮质激素低于正常组,随着给药剂量的增加,两者有升高的趋势;给药前模型组血糖低于正常组,随着给药剂量的增加,模型组GLU有升高的趋势,而正常组有下降的趋势;中剂量给药时模型组总胆固醇显著高于正常组;随着给药剂量的增加,2组丙氨酸氨基转移酶均有升高的趋势,且正常组ALT升高的幅度更大;给药前模型组尿素氮高于正常组,低、小剂量给药有降低模型组BUN的趋势。

The contents of Riboncules acid, 5 -hydroxyptamine (5-HT), Cyclic adenosine monophosphate , Cyclic guanosine monophosphate in milk; and the activites of Alkine phosphatese , lactic dehydrogemase in serum were determined by Chromometry and radioimmunoassay.

采用比色法和放射性免疫法测定了西农莎能奶山羊乳中RNA,S-HT,CAMP,CGMP和血清中LDH,AKP的含量为:0.432,0.408,0.405,0.473,0.194,0.405。

Guanosine monophosphate reductase catalyzes the NADPH-dependent reductive deamination of Guanosine monophosphate to inosine monophosphate .

鸟苷酸还原酶(guanosine monophosphate reductase,GMPR)(EC 1.6.6.8)主要催化鸟嘌呤核苷酸向次黄嘌呤核苷酸的转化:GMP+NADPH+2〓→IMP+〓+NADP〓。

It is very important in the guanosine industry that guanosine must be completely separated from byproduct-inosine.

鸟苷发酵液中鸟苷与副产物肌苷的分离对鸟苷工业有重要的意义。

Objective To optimize the medium for fermentation culture of guanosine by response surface analysis and in-crease the yield of guanosine.

目的 利用响应面分析法对鸟苷发酵培养基进行优化,提高鸟苷产量。

The medium for fermentation culture of guanosine was optimized by response surface analysis, and the yield of guanosine increased significantly.

利用响应面分析法可优化鸟苷发酵培养基,显著提高鸟苷的产量。

Part II:The electrocatalytic oxidation of guanine, adenine, guanosine-5'-monophosphate and ssDNA was performed in the presence of iron bis(2,2':6',2"-terpyridine) and Fe tris(1,10-phenanthroline) complexes as a homogeneous catalysts with Fe redox couple. The electrocatalytic and electroanalytic properties of guanine with an iron bis(2,2':6',2"-terpyridine) complex was measured by the amperometry method using the rotating disk electrodes. Electropolymerization of iron tris(5-amino-1,10-phenanthroline) complex produced thin polymer films on a gold, platinum, nickel, and glassy carbon electrode.

第二部分利用iron bis(2,2':6',2&-terpyridine)和Fetris(1,10-phenanthroline)之金属错合物当作均相的催化剂对於鸟嘌呤、腺嘌呤、5'-鸟嘌呤核苷单磷酸盐(guanosine-5'-monophosphate)和单股DNA进行电催化氧化的研究。iron bis(2,2':6',2&-terpyridine)之金属错合物对於鸟嘌呤的电催化和电分析性质可利用计时安培法并使用旋转环-碟电极进行测量。rontris(5-amino-1,10-phenanthroline)之金属错合物可经由电聚合过程所形成的聚合薄膜固定在黄金、白金、镍和玻璃碳电极上。

Firstly, based on phenomenal characteristic parameter collection and its further correlation analysis, the metabolic flux shift during late phase of guanosine fermentation was preliminarily deduced and confirmed by combining intermediates detection and the product biosynthesis pathway analysis. That is, the metabolic flux shifted from Hexose Monophosphate Pathway , from which guanosine was generated mainly, to Embden-Meyerhof Pathway and Tricarboxylic acid cycle to form amino acids and organic acids.

首先通过对发酵过程现象特征的收集和进一步的相关分析,初步推断在发酵过程后期存在有代谢流的迁移,结合中间代谢产物的分析和产物合成的代谢途径初步确认了代谢流迁移的存在,即代谢流从形成产物的HMP途径向形成有机酸、氨基酸的EMP途径、TCA循环迁移。

They were two new compounds, [cyclo(Pro-Val-Phe-Phe-Pro-Val-Phe-Ser-Leu),7],[2-N-(1-methoxycarbonylethyl)guanosine, 10], and eight known compounds,(p-hydroxybenzoic acid, 1),(methyl succinate, 2),(russulaceramide, 3),(phenylalanine, 4),(guanine, 5),(β-carboline, 6),(uridine, 8), and (adenosine, 9). All the compounds were isolated from Amanita exitialis for the first time.

分别为:对羟基苯甲酸(p-hydroxybenzoic acid,1)、丁二酸二甲酯(methyl succinate,2)、神经酰胺(russulaceramide,3)、苯丙氨酸(phenylalanine,4)、鸟嘌呤核苷(guanine,5)、β-咔啉(β-carboline,6)、环(脯氨酸-缬氨酸-苯丙氨酸-苯丙氨酸-脯氨酸-缬氨酸-苯丙氨酸-丝氨酸-亮氨酸) [cyclo(Pro-Val-Phe-Phe-Pro-Val-Phe-Ser-Leu),7]、尿嘧啶核苷(uridine,8)、腺嘌呤核苷(adenosine,9)、2-N-(1-甲氧羰基乙基)鸟苷[2-N-(1-Methoxycarbonylethyl)guanosine, 10]。10个化合物均为首次从致命鹅膏中分离得到,其中化合物7和10为新化合物。

The result in this part accorded to that of HPLC in the second chapter(The totle content of uridine、hypoxanthosine、guanosine、adenosine in Cordyceps sinensis .was higher than 2.50mg/g, the content of adenosine was higher than 0.75 mg/g). The totle content of uridine、hypoxanthosine、guanosine、adenosine in the counterfeits and adulterations was from 1.219 mg/g to1.803mg/g ,the content of adenosine was from 0.364 mg/g to0.423 mg/g .

应用HPLC-MS对冬虫夏草及其混淆品与伪品进行二级质谱定量分析,结果显示,冬虫夏草中I 、II、III、V四个核苷的总量介于2.473 mg/g~2.830 mg/g,V的含量介于0.850 mg/g~1.009 mg/g,与第二章高效液相的研究结果吻合(冬虫夏草四个核苷成分的总量大于2.50mg/g,V的含量大于0.75 mg/g)。

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