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1.
建立了新鲜烟叶中三磷酸腺苷(ATP)、二磷酸腺苷(ADP)和单磷酸腺苷(AMP)3种磷酸腺苷同时测定的方法。烟草样品经过对氯苯酚提取、纯化后,采用三乙胺缓冲液作为流动相洗脱,经C18色谱柱分离,在259 nm波长对样品进行检测。与高氯酸(PCA)法,以及DNA常用的苯酚提取法进行了比较,结果均表明:低温下以对氯苯酚提取的效果较佳,使用三乙胺缓冲液流动相具有分离效率高、检出灵敏的优点。在线性范围(5~200μg/mL)内,磷酸腺苷浓度与峰面积具有很好的相关系数(r>0.9999),检出限达到纳克级水平,氯苯酚法对ATP,ADP和AMP的平均回收率分别为96.8%,97.2%和93.3%,RSD均小于5%。  相似文献   

2.
铜绿微囊藻中磷酸腺苷的提取及分析   总被引:1,自引:0,他引:1  
代瑞华  刘会娟  曲久辉 《分析化学》2007,35(12):1701-1705
比较了酸提取、有机溶剂提取、MgSO4水溶液加热提取以及MgSO4水溶液加热超声波提取4种方式对磷酸腺苷(ATP、ADP和AMP)的提取效果,确定以MgSO4水溶液加热超声波提取效果最佳。采用MgSO4加热超声波提取时,2 mL提取液对ATP、ADP和AMP的提取效果较好。将ATP、ADP和AMP的混合标准溶液放于沸水浴中保温时,随着保温时间的延长,对ATP和AMP的影响较大,而对ADP的影响相对较小。实验结果证明,以MgSO4水溶液为提取液,用100℃加热10 min后,在超声波细胞粉碎机中超声破碎10 min的提取效率最高,既简单又无毒。用反相高效液相色谱等强度洗脱分离与紫外检测分析藻细胞中的ATP、ADP和AMP的含量,在较短的时间内(10 min)实现了较好的分离,分析准确而快速,是一较好的定性和定量分析方法。ATP、ADP和AMP的回收率分别为88%~97%、103%~107%和109%~115%,均在80%~120%之间,并且标准偏差和相对标准偏差均小于10%,证实了可以用加热超声波破碎提取,HPLC分析ATP、ADP和AMP的方法来提取和分析藻细胞中的ATP、ADP和AMP。  相似文献   

3.
采用反相高效液相色谱法同时测定小鼠心肌、骨骼肌组织中ATP(三磷酸腺苷 )、ADP(二磷酸腺苷 )、AMP(一磷酸腺苷 )的含量。以150mmol/L磷酸二氢钾缓冲液 (pH=6.25)为流动相 ,采用BDShypersilC18 不锈钢色谱柱 ,紫外检测波长为254nm ,线性范围为1~200mg/L。ATP、ADP和AMP的平均加标回收率均在90 %以上 ,检出限分别为10ng、10ng、15ng。该法灵敏、准确 ,试剂费用低。  相似文献   

4.
测定生物组织中腺苷三磷酸(ATP)、腺苷二磷酸(ADP)和腺苷一磷酸(AMP)的含量,在研究生物的一些生理生化现象中有重要意义。利用不同方法定量分析这三种腺苷酸的报道已有很多。本文所述是用反相高效液相色谱法,对棉籽中的ATP、ADP和AMP进行测定。  相似文献   

5.
提出了超声辅助提取-反相高效液相色谱法测定虾中三磷酸腺苷(ATP)、二磷酸腺苷(ADP)、腺苷酸(AMP)、肌苷酸(IMP)、肌苷(HxR)和次黄嘌呤(Hx)含量的方法,并研究了贮藏条件对K值的影响。称取2.0 g粉碎后的虾肉,加入10%(体积分数)高氯酸溶液20 mL,在冰水浴中均质1 min,超声提取5 min,于4℃离心2 min。用5%(体积分数)高氯酸溶液20 mL重复上述操作,合并两次上清液,用水定容至50 mL。分取5 mL,用5.0 mol·L^(-1)和2.5 mol·L^(-1)氢氧化钠溶液调节溶液酸度至pH 6.0~6.4后,再用0.048 mol·L^(-1)磷酸二氢钾溶液(pH 5.7)定容至10 mL。以Ultimate■XB-C_(4)反相色谱柱(250 mm×4.6 mm,5μm)为固定相,以不同体积比的0.048 mol·L^(-1)磷酸二氢钾溶液(pH 5.7)-甲醇混合溶液为流动相进行梯度洗脱,外标法定量。结果显示:ATP、ADP、IMP标准曲线的线性范围为1.250×10^(-1)~1.000×10^(2)mg·L^(-1),AMP、HxR、Hx标准曲线的线性范围为6.250×10^(-2)~5.000×10 mg·L^(-1),检出限为0.65~2.2 mg·kg^(-1);混合标准溶液和供试品溶液中6种目标物测定值的相对标准偏差(n=6)为0.28%~8.7%;对实际样品进行加标回收试验,回收率为75.3%~114%。方法用于测定不同贮藏温度和贮藏时间下虾样品中ATP、ADP、AMP、IMP、HxR、Hx的含量,结果表明随着贮藏时间的延长,K值逐渐增大;并且贮藏时间一定时,贮藏温度越低,K值增大速率越慢,说明低温有利于虾的保鲜。  相似文献   

6.
朱会宇  吴丹妮  汪海林 《色谱》2017,35(1):54-58
研究了三磷酸腺苷(ATP)及其代谢物在细胞内的含量以及2-叔丁基-1,4-苯醌(TBBQ)对ATP及其代谢产物在细胞内含量的影响。建立了一种高效液相色谱法(HPLC)用于快速分离、检测细胞内ATP及其代谢产物(二磷酸腺苷(ADP)和一磷酸腺苷(AMP))的含量。使用岛津高效液相系统及艾杰尔Venusil MP C18柱,采用等度洗脱的方式。流动相A相为50 mmol/L磷酸氢二钠和15 mmol/L三甲胺(TEA),用醋酸(HAc)调节pH至7.88;流动相B相为甲醇。采用建立的高效液相色谱法得到了3种代谢物的工作曲线,相关系数高(R~2≥0.999 6),MRC-5细胞中3种代谢物的含量均在线性范围(0.1~100μmol/L)内。该方法检出限低。采用预冷的80%(体积分数)甲醇水溶液提取细胞内的代谢物。该研究建立的方法成功地应用于检测MRC-5细胞中的ATP、ADP和AMP的含量,结果表明,TBBQ会对ATP、ADP、AMP在细胞内的含量产生影响,但TBBQ浓度和ATP、ADP以及AMP在MRC-5细胞内浓度的关系比较复杂。  相似文献   

7.
所有生物过程都伴随着能量代谢,细胞内的能量供应主要依赖于线粒体合成的三磷酸腺苷(ATP)[1-2]。因此,建立有效的细胞内ATP及其代谢产物[二磷酸腺苷(ADP)和一磷酸腺苷(AMP)]的定量方法是非常有必要的。ATP、ADP和AMP的结构和理化性质非常相似,同时测定会有一定困难。  相似文献   

8.
建立了一种利用阴离子交换色谱柱分离,抑制型电导检测器同时测定乳酸、丙酸、丙酮酸、苹果酸、磷酸二羟丙酮、柠檬酸、异柠檬酸7种有机酸和单磷酸核苷酸(AMP)、双磷酸核苷酸(ADP)、三磷酸核苷酸(ATP)3种核苷酸的方法。采用IonPacAS11-HC阴离子交换柱,KOH梯度洗脱,流速1.00mL/min,柱温30℃,进样体积25μL。方法的相对标准偏差为0.39%~4.69%,线性相关系数为0.9906~0.9996,加标回收率为80.71%~94.02%,方法可用于嗜热厌氧菌胞外培养液中有机酸和核苷酸的同时测定。  相似文献   

9.
建立了亲水相互作用色谱法高效分析人体尿液中三磷酸腺苷(ATP)的方法。ATP是高能磷酸盐化合物,一种不可替代的生物分子。在本文中,分别使用反相色谱柱和亲水相互作用色谱柱测定ATP。结果表明:在亲水相互作用(HILIC)色谱分离模式下,流动相为甲醇-0.1%的甲酸水溶液=10∶90(v/v)、柱温30℃、流速0.4 mL·min~(-1)、检测波长258 nm时,对ATP的分离效果最佳。在此条件下,测定人尿液中的ATP含量,并在部分样品中的检出1.04~1.65 mg·L~(-1)。进一步加标试验的回收率在77.09%~112.83%之间,相对标准偏差低于13.50%。  相似文献   

10.
反相离子对高效液相色谱法测定心肌组织中的三磷酸腺苷   总被引:10,自引:0,他引:10  
张燕婉  龙村  史世勇 《色谱》2000,18(4):322-324
 采用反相离子对高效液相色谱法测定心肌组织中三磷酸腺苷 (ATP)的含量。样品经高氯酸溶液沉淀蛋白 ,上清液用KOH溶液中和后用反相离子对高效液相色谱法分离测定。色谱柱为SpherisorbODS2柱 ,流动相为甲醇 KH2 PO4缓冲液 (内含 5mmol/LIPR A离子对试剂 ) ,在 2 59nm波长处检测。方法最低检测限为 2mg/L,在 5mg/L~ 1 0 0 mg/L范围内有良好的线性关系 (r=0 9998) ,方法的回收率为 97 8%~ 1 0 4 % ,日内精密度 <4 85% ,日间精密度 <8 81 %。方法准确、灵敏、快速 ,适用于动物和人心肌组织中ATP含量的测定。  相似文献   

11.
《Analytical letters》2012,45(18):2047-2065
Abstract

A novel reverse phase HPLC method is described for the simultaneous measurement of adenosine tri-, di- and monophosphates (ATP, ADP, AMP), inosine monophosphate (IMP), adenosine, inosine, hypoxanthine, nicotinamide adenine dinucleotide (NAD) and uric acid in cardiac tissues and coronary effluent. The use of a simplified perchloric acid extraction procedure and ODS columns easily modified with Mq++, Tris and phosphate buffer, allows considerable saving in analysis time together with extremely good resolution, particularly for ATP and ADP, and provides a very practical tool for the routine assessment of changes in adenine pool metabolites.  相似文献   

12.
A method for the quantitative determination of seven fluoroquinolone antibacterial agents (FQs) used in beekeeping, viz. ciprofloxacin, norfloxacin, ofloxacin, pefloxacin, danofloxacin, enrofloxacin, and difloxacin, in royal jelly samples was developed on the basis of high performance liquid chromatography with fluorescence detection. Sample preparation included deproteination, ultrasonic‐assisted extraction with a mixed inorganic solution of monopotassium phosphate (KH2PO4) and ethylenediaminetetraacetic acid disodium salt (Na2EDTA), and clean‐up on a solid‐phase extraction cartridge. The extraction procedure was optimized with regard to the amount of inorganic solvent and the duration of sonication for royal jelly as a complicated matrix. Overall recoveries for FQs ranged from 85.9 to 99.1% for royal jelly with standard deviations between 2.79 and 6.27%. Limits of quantification were 2–40 ng/g for seven FQs in royal jelly. A total of 57 real royal jelly samples collected from beekeepers and supermarkets were analyzed. The three most abundant honeybee‐use FQs, i. e. ofloxacin, ciprofloxacin, and norfloxacin, were determined in some royal jelly samples in concentrations ranging from 11.9 to 55.6 ng/g. Unexpectedly, however, difloxacin was found at concentrations of about 46.8 ng/g in one sample although it is rarely used in beekeeping. The presented method was successfully applied to quantify FQs in real royal jelly samples.  相似文献   

13.
利用高效液相色谱-电喷雾串联质谱测定了蜂蜜、蜂王浆、鮰鱼、鳗鱼、猪肉、猪肾、猪肝、鸡肉、牛肉和牛奶中的三甲氧苄氨嘧啶、二甲氧苄氨嘧啶和奥美普林3种磺胺类药物增效剂.除蜂王浆基质直接用10%三氯乙酸溶液提取外,其余基质均用10%三氯乙酸-乙腈(体积比7 : 3)混合溶液提取,提取溶液过阳离子交换固相萃取柱进行富集和净化.采用C18色谱柱,流动相为甲醇和0.1%甲酸溶液.选择1个母离子和2个子离子进行反应监测,对3种磺胺类药物增效剂残留进行定性,选择信号最强的子离子进行定量.在2 ~100 μg/L范围内,分析物的线性相关系数r>0.992.通过实际样品添加回收实验,所有基质定量下限为5.0 μg/kg,3个添加水平的回收率为63% ~89%,相对标准偏差为3.2% ~6.9%.  相似文献   

14.
李樱红  周萍  徐权华  赵焕  邵巧云 《色谱》2018,36(2):136-142
建立了高效液相色谱-串联质谱(HPLC-MS/MS)同时测定蜂王浆中氟胺氰菊酯、三唑醇、蝇毒磷、吡氟乙草灵、多菌灵、乙基硫菌灵和甲基硫菌灵7种高风险农药残留的分析方法。样品在碱性条件下经乙腈提取,无水硫酸钠脱水后,采用HLB固相萃取小柱富集净化。采用Venusil MP C18色谱柱分离,以0.5 mmol/L乙酸铵水溶液(含0.1%(v/v)甲酸)-甲醇(含0.1%(v/v)甲酸)为流动相,梯度洗脱。在电喷雾离子(ESI)源、正离子模式和多反应监测(MRM)模式下采集数据,内标法定量。结果表明,7种高风险农药在5~100 μg/kg范围内线性关系良好,相关系数(r2)为0.9921~0.9996;方法的检出限和定量限分别为0.5~2.0 μg/kg和1.0~5.0 μg/kg。在高、中、低3个添加水平下7种农药的加标回收率为80.5%~101.3%,相对标准偏差(RSD)为3.6%~9.4%。该法操作简单,灵敏度高,准确可靠,能够满足出口蜂王浆农残限量检测的要求。  相似文献   

15.
An optimized reversed-phase high-performance liquid chromatography method was developed to detect the trans-10-hydroxy-2-decenoic acid (10-HDA) content in royal jelly cream and lyophilized powder. The sample was extracted using absolute ethanol. Chromatographic separation of 10-HDA and methyl 4-hydroxybenzoate as the internal standard was performed on a Nova-pak C18 column. The average recoveries were 95.0-99.2% (n = 5) with relative standard deviation (RSD) values of 1.3-2.1% for royal jelly cream and 98.0-100.0% (n = 5) with RSD values of 1.6-3.0% for lyophilized powder, respectively. The limits of detection and quantitation were 0.5 and 1.5 mg/kg, respectively, for both royal jelly cream and lyophilized powder. The method was validated for the determination of practical royal jelly products. The concentration of 10-HDA ranged from 1.26 to 2.21% for pure royal jelly cream samples and 3.01 to 6.19% for royal jelly lyophilized powder samples. For 30 royal jelly products, the 10-HDA content varied from not detectable to 0.98%.  相似文献   

16.
A new method was developed for simultaneous determination of levels of AMP,ADP and ATP in blood by anion-exchange chromatography.The three adenosine phosphates were separated by Dionex IonPac AG18(50 mm×4 mm) guard column and IonPac AS 18(250 mm×4 mm) analytical column using a gradient method and detected with a suppressed conductivity detector. The detection limits(S/N=3) of AMP,ADP and ATP were 38,47,108 ng/L,respectively.The relative standard deviations of retention time,peak area and peak height were all less than 1.87%and a good linear relationship was obtained.This method was applied to analyze human blood samples.  相似文献   

17.
建立了气相色谱-负化学源质谱(GC-NCI/MS)测定蜂蜜和王浆中4种杀虫剂残留量的方法。蜂蜜样品由乙酸乙酯提取、乙二胺-N-丙基硅烷(PSA)净化,而王浆样品经乙腈-水(1:1,v/v)提取、C18固相萃取柱净化,采用GC-NCI/MS测定,外标法定量。结果表明:在50~500 μg/L范围内4种农药的线性良好;所有农药的LOD在0.12~5.0 μg/kg之间,LOQ在0.40~16.5 μg/kg之间;在10、15、20 μg/kg 3个添加水平下,4种农药的平均回收率在78.2%~110.0%之间,且RSD均小于14%。所有农药的测定均没有出现干扰峰。该方法简单、快速,准确度、精密度和选择性高,抗干扰能力强,可用于蜂蜜和王浆中这4种农药的快速检测。  相似文献   

18.
We have developed an analytical method for the determination of lincomycin, tylosin A and tylosin B residues in royal jelly using liquid chromatography–triple quadrupole tandem mass spectrometry analysis. For extraction and purification, we employed 1% trifluoroacetic acid and 0.1 m Na2EDTA solutions along with an Oasis HLB cartridge. The target antibiotics were well separated in a Kinetex EVO C18 reversed‐phase analytical column using a combination of 0.1% formate acid in ultrapure water (A) and acetonitrile (B) as the mobile phase. Good linearity was achieved over the tested concentration range (5–50 μg/kg) in matrix‐matched standard calibration. The coefficients of determination (R2) were 0.9933, 0.9933 and 0.996, for tylosin A, tylosin B and lincomycin, respectively. Fortified royal jelly spiked with three different concentrations of the tested antibiotics (5, 10 and 20 μg/kg) yielded recoveries in the range 80.94–109.26% with relative standard deviations ≤4%. The proposed method was applied to monitor 11 brand of royal jelly collected from domestic markets and an imported brand from New Zealand; all the samples tested negative for lincomycin, tylosin A and tylosin B residues. In conclusion, 1% trifluoroacetic acid and 0.1 m Na2EDTA aqueous solvents combined with solid‐phase extraction could effectively complete the sample preparation process for royal jelly before analysis. The developed approach can be applied for a routine analysis of lincomycin, tylosin A and tylosin B residues in royal jelly.  相似文献   

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