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1.
建立超声萃取-免疫亲和柱净化-柱后光化学衍生高效液相色谱同时测定蜂房药材中黄曲霉毒素B1、黄曲霉毒素B2、黄曲霉毒素G1、黄曲霉毒素G2含量的分析方法。样品经粉碎,过孔径为120μm筛后,采用70%甲醇溶液超声处理30 min,经免疫亲和柱净化、高效液相色谱分离、光化学柱后衍生,通过荧光检测器测定4种黄曲霉毒素的含量。黄曲霉毒素B1的线性范围为0.010 4~0.052 0 ng,相关系数为0.999 9;黄曲霉毒素B2的线性范围为0.003 8~0.019 0 ng,相关系数为0.999 8;黄曲霉毒素G1的线性范围为0.010 8~0.054 0 ng,相关系数为0.999 8;黄曲霉毒素G2的线性范围为0.003 8~0.019 0 ng,相关系数为0.999 8。4种黄曲霉毒素检出限分别为0.42、0.15、0.43、0.15μg/kg,测定结果的相对标准偏差不大于2.5%(n=6),样品加标回收率为92.9%~96.9%。该方法操作简便,灵敏度高,可用于蜂房中黄曲霉毒素含量的测定。  相似文献   

2.
应用柱前衍生-高效液相色谱法测定茶叶中黄曲霉毒素B1的含量。样品采用乙腈(85+15)溶液提取,滤液用MycoSepTM226柱净化,加入正己烷和三氟乙酸衍生,经C18色谱柱分离,荧光检测器检测。黄曲霉毒素B1的质量浓度在0.20~10.0μg·L-1范围内与其峰面积呈线性关系,检出限(3S/N)为0.1μg·kg-1。在0.5,1.0,5.0μg·L-1等3个浓度水平进行加标回收试验,回收率在91.9%~102%之间,测定值的相对标准偏差(n=6)在1.5%~6.9%之间。  相似文献   

3.
建立了高效液相色谱法同时测定牛奶中黄曲霉毒素B1,B2,G1,G2的方法。用乙腈和水的混合溶液(体积比为80∶20)提取牛奶样品中4种黄曲霉毒素,提取液经Mycosep 228 AflaPat多功能净化柱净化,浓缩后采用C18色谱柱分离,光化学衍生后进入荧光检测器测定,外标法定量。对牛奶样品进行加标回收和精密度试验,黄曲霉毒素B1,B2,G1,G2的检出限分别为0.50,0.10,0.50,0.10μg/kg,回收率均在85%以上,测定结果的相对标准偏差为1.72%~3.52%(n=6)。该方法操作简单,速度快,重现性好,满足牛奶中黄曲霉毒素检测的要求。  相似文献   

4.
建立了一种检测乳及乳制品中黄曲霉毒素B1、M1的高效液相色谱-荧光检测(HPLC-FD)方法。样品经60%乙腈溶液提取,自制固相萃取柱净化,流出液经正己烷、三氟乙酸衍生后荧光检测器检测。考察了填料、柱容量、取样量、提取溶液和流速等对检测的影响,优化了实验条件。结果表明,黄曲霉毒素B1、M1的检测线性范围为0.40~100μg/L,线性系数为0.9991~0.9998,方法检出限为0.050μg/kg。对样品进行0.40、1.0和15μg/L 3种浓度水平的加标回收实验,回收率为53%~105%,相对标准偏差为2.6%~5.1%。该方法操作简单、灵敏度高、准确度好,可用于乳及乳制品中黄曲霉毒素B1、M1的测定。  相似文献   

5.
高效液相色谱法对农产品中黄曲霉毒素的测定研究   总被引:4,自引:0,他引:4  
采用免疫亲和方法进行样品前处理,用甲醇-乙腈-水三元流动相体系分离黄曲霉毒素,氯化汞溶液在线衍生,荧光检测器检测,建立了新型的高效液相色谱柱后衍生测定黄曲霉毒素(B1、B2、G1、G2、M1)的方法。该方法在13 min内完成测定,线性关系良好,5种黄曲霉毒素的线性相关系数r值均大于0.999。方法成功应用于花生、花生制品、大米、玉米等农产品。对样品进行不同水平的加标回收实验,回收率为83%~100%,相对标准偏差1.51%~4.98%(n=7),B1检出限(S/N=3)和定量下限(S/N=10)分别达到了0.05μg/kg和0.17μg/kg。  相似文献   

6.
建立了免疫亲和柱净化-柱后电化学衍生-高效液相色谱结合荧光光度法检测花生酱中4种黄曲霉毒素(B1、B2、G1和G2)的方法。样品经过体积分数为60%的甲醇提取,通过免疫亲和柱净化后,以KobraCell装置柱后衍生,高效液相色谱法分离定量。黄曲霉毒素B1、B2、G1和G2能达到完全的基线分离,检测限分别为0.5、0.15、0.5和0.15μg/kg,线性相关系数0.999,回收率可达74.2%~96.5%,相对标准偏差低于11%。该方法能够满足花生酱中黄曲霉毒素检测的需要。  相似文献   

7.
采用免疫亲和柱净化-光化学柱后衍生-高效液相色谱法测定中药材柏子仁中的黄曲霉毒素G_2、G_1、B_2和B_1。样品经甲醇(7+3)溶液提取,提取液经免疫亲和柱净化,用甲醇洗脱,洗脱液经黄曲霉毒素专用C18色谱柱分离,以甲醇(45+55)溶液为流动相进行洗脱,柱后光化学衍生波长为254nm,荧光检测器的激发波长为365nm,发射波长为440nm。黄曲霉毒素G2、B2的线性范围均为0.125~5.0μg·L~(-1),黄曲霉毒素G_1、B_1的线性范围均为0.50~20μg·L~(-1),检出限(3S/N)在0.012~0.047μg·L~(-1)之间。加标回收率81.4%~105%之间,测定值的相对标准偏差(n=6)在1.6%~6.9%之间。  相似文献   

8.
超高效液相色谱法快速测定发酵茶叶中的黄曲霉毒素   总被引:6,自引:0,他引:6  
建立了用超高效液相色谱/紫外检测器测定发酵茶叶中黄曲霉毒素B1、B2、G1和G2的方法.用CH2Q2提取黄曲霉毒素,提取液经浓缩后,用LC-CN固相萃取小柱净化,超高效液相色谱测定.在浓度范围20~200μg/L(B1、G1),15~120μg/L(B2、G2)内具有良好的线性相关关系.黄曲霉毒素的回收率为81.4%~92.3%,相对标准偏差RSD 1.6%~4.2%.检出限为0.32μg/kg(B1、G1),0.18μg/kg(B2、G2)(S/N=3).  相似文献   

9.
建立了同时测定婴幼儿辅食中的黄曲霉毒素B1、B2、G1和G2(AFB1、AFB2、AFG、AFG2)的电化学柱后衍生-高效液相色谱法。样品经丙酮-水(4∶1,V/V)提取后,通过免疫亲和柱富集净化,采用Intersil ODS-SP C18柱,以1.0 mmol/L KBr溶液和40%甲醇-乙腈(1∶1,V/V)溶液为流动相,电化学柱后衍生,荧光检测器检测。AFB1、AFB2、AFG1、AFG2分别在0.4905~9.810、0.1445~2.890、0.4899~9.798和0.1566~3.131ng/mL范围内有良好的线性关系,相关系数R分别为0.9995、0.9999、0.9998和0.9999,检出限(S/N=3)分别为0.05、0.02、0.04、0.02μg/kg。对空白纯米粉进行3个浓度的加标实验,其回收率在91.2%~115.2%之间。该方法重现性好,灵敏度高,定量准确,可应用于婴幼儿不同辅食中以上4种黄曲霉毒素的同时检测。  相似文献   

10.
建立了基于自制混合型固相萃取柱的样品净化/高效液相色谱测定食品中黄曲霉毒素B1、M1的方法。样品经60%乙腈水溶液提取、离心后,通过自制固相萃取柱排除杂质干扰,流出液以Shim-pack VP-ODS C18色谱柱为分离柱,水和乙腈为流动相,用荧光检测器检测,外标法定量。考察了柱类型、柱容量、取样量、提取溶液和流速等对检测的影响,优化了实验条件。在优化条件下,2种毒素在0.40~100μg/L质量浓度范围内与峰面积呈良好的线性关系,相关系数为0.999 4~0.999 7,检出限(S/N=3)为0.050μg/kg。在样品中分别加入0.40、1.0、100μg/L 3种浓度水平的标准品,其加标回收率为53%~112%,相对标准偏差为2.7%~7.1%。该法灵敏度高,操作简单﹑快速,适用于花生、开心果和奶粉等食品中痕量黄曲霉毒素B1和M1的测定。  相似文献   

11.
李军  于一茫  田苗  王宏伟  卫锋  李莉  王雄 《色谱》2006,24(6):581-584
建立了同时检测粮谷中黄曲霉毒素(B1、B2、G1和G2)、玉米赤霉烯酮和赭曲霉毒素A的免疫亲和柱净化-柱后光化学衍生-高效液相色谱方法。样品经过甲醇-水(体积比为80∶20)提取,通过免疫亲和柱富集和净化,采用Waters Nova-Pak色谱柱(3.9 mm i.d.×150 mm,4 μm),以甲醇、乙腈和1%的磷酸溶液为流动相,梯度洗脱,柱后光化学衍生、改变波长荧光检测。黄曲霉毒素(B1、B2、G1和G2)、玉米赤霉烯酮和赭曲霉毒素A检出限分别为0.24,4.0和0.5 μg/kg,标准曲线的线性范围分别为0.24~6.0,4.0~100.0和0.5~40.0 μg/L;在小麦、玉米、黑麦样品中,平均加标回收率为70.8% ~94.0%,相对标准偏差为2.79% ~9.38%。  相似文献   

12.
采用免疫亲和层析柱吸附食品样品中的黄曲霉毒素B1,以荧光色谱-柱后光化学衍生法测定食品中黄曲霉毒素B1的含量。样品用甲醇-水溶液(体积比为7:3)混合,均质器高速搅拌提取,经免疫亲和层析柱纯化后,通过LachromC18色谱柱进行分离,以甲醇一水溶液(体积比为45:55)作为流动相,荧光检测器激发波长为360nm、发射波长为420nm,外标法定量。黄曲霉毒素B,的质量浓度在1~20ng/mL范围内与色谱峰面积线性关系良好,相关系数r=0.9998,检出限为0.1gg/kg。在3个添加水平下,样品的加标回收率在88.5%~97.9%之间,相对标准偏差均小于3%(n=6)。该方法操作简单、定量准确,可用于食品中黄曲霉毒素B.的定量定性检验。  相似文献   

13.
王韦岗  强敏  端礼钦 《色谱》2018,36(12):1330-1336
建立了复合免疫亲和柱-在线光化学衍生-高效液相色谱同时测定谷物及其制品中9种真菌毒素的检测方法。以乙腈-水(80:20,v/v)混合溶液提取样品中9种真菌毒素,提取液经自制真菌毒素复合免疫亲和柱净化,采用高效液相色谱进行分离,在线光化学衍生后进入荧光检测器测定,外标法定量。结果表明,9种真菌毒素在相应浓度范围内线性关系良好,相关系数均大于0.999;在低、中、高3个不同加标浓度下,9种真菌毒素的回收率均大于80%,相对标准偏差(RSD)为1.0%~5.6%;方法的检出限(LOD)为0.02~5.00 μg/kg,定量限(LOQ)为0.07~16.70 μg/kg。该方法具有重现性好、灵敏度高、结果准确的特点,适用于谷物及其制品中9种真菌毒素残留的分析检测。  相似文献   

14.
A simple and rapid method based on homogeneous liquid-liquid extraction coupled to HPLC with fluorescence detection was developed for the determination of aflatoxin B1 (AFB1) in the rice and grain samples after post-column derivatization. The proposed method eliminated the use of immunoaffinity columns for clean-up in the determination of AFB1. The parameters affecting recovery and preconcentration such as type and volume of organic solvent, volume ratio of water/methanol, concentration of phase separator reagent and extraction time were optimized. Under the optimized conditions, the calibration graph was linear in the concentration range of 0.01-1.0 ng/g with the detection limit of 0.003 ng/g. This method was successfully applied for the analysis of AFB1 in different cereal samples.  相似文献   

15.
A collaborative study was conducted to evaluate the effectiveness of an immunoaffinity column cleanup liquid chromatography (LC) method for determination of aflatoxin B1 in cattle feed at a possible future European regulatory limit (1 ng/g). The test portion was extracted with acetone-water (85 + 15), filtered, diluted with water, and applied to an immunoaffinity column. The column was washed with water to remove interfering compounds, and the purified aflatoxin B1 was eluted with methanol. Aflatoxin B1 was separated and determined by reversed-phase liquid chromatography (RP-LC) and detected by fluorescence after post column derivatization (PCD) involving bromination. PCD was achieved with either pyridinium hydrobromide perbromide (PBPB), used by 14 laboratories, or an electrochemical cell and addition of bromide to the mobile phase, used by 7 laboratories. Both derivatization techniques were not significantly different when compared by the t-test; the method was statistically evaluated for all laboratories together (bromination and PBPB). The cattle feed samples, both spiked and naturally contaminated with aflatoxin B1, were sent to 21 laboratories in 14 different countries (United States, Japan, and Europe). Test portions were spiked at levels of 1.2 and 3.6 ng/g for aflatoxin B1. Recoveries ranged from 74 to 157%. Based on results for spiked samples (blind pairs at 2 levels) as well as naturally contaminated samples (blind pairs at 3 levels), the relative standard deviation for repeatability (RSDr) ranged from 5.9 to 8.7%. The relative standard deviation for reproducibility (RSDR) ranged from 17.5 to 19.6%. The method showed acceptable within- and between-laboratory precision for this matrix, as evidenced by HORRAT values, at the target levels of determination for aflatoxin B1. No major differences in RSD were observed, showing that the composition of the feeds was not a factor for the samples tested and that the method was applicable for all materials used.  相似文献   

16.
建立了柱前衍生高效液相色谱-质谱联用(HPLC-MS)测定水稻中尼克烟酰胺含量的方法.样品中尼克烟酰胺经水提取后,与9-芴甲基氯甲酸酯(FMOC-Cl)衍生,采用液相色谱质谱联用仪测定.系统研究了衍生剂浓度和衍生介质等条件对衍生效率的影响.通过优化流动相酸度和梯度洗脱等条件,提高了方法灵敏度.尼克烟酰胺在0.1~5.0 mg/L范围内呈良好的线性关系(r=0.9983),对水稻的根、茎、叶及大米的标准加入实验表明,方法的添加回收率在72.0%~89.2%之间; 相对标准偏差为2.3%~9.6%; 方法检出限为0.05 mg/kg.方法简便、准确可靠,可以满足水稻中生理水平尼克烟酰胺的定性定量分析.  相似文献   

17.
李军  许烨  隋凯  卫锋  赵守成  王玉萍 《色谱》2006,24(3):256-259
建立了免疫亲和柱净化/柱前衍生化-高效液相色谱荧光检测器测定粮谷中T-2毒素含量的方法。样品经甲醇-水(体积比为80∶20)混合溶剂提取,通过免疫亲和柱(IAC)净化,以氰酸蒽(1-AN)为衍生化试剂、4-二甲基氨基吡啶(DMAP)为催化剂进行衍生,以ZORBAX Eclipse XDB-C18 柱为分离柱,乙腈-水(体积比为80∶20)为流动相进行高效液相色谱分离及荧光检测,荧光检测的激发波长为381 nm,发射波长为470 nm。T-2毒素的质量浓度为0.01~1.5 mg/L时与峰高呈良好的线性,相关系数为0.9985。在0.01~1.5 μg/g添加水平下,回收率为79.7%~94.5%,相对标准偏差小于7%;检出限(S/N=3)为0.01 μg/g。该方法净化效果好,灵敏度高,操作简便快速。  相似文献   

18.
A collaborative study was conducted to evaluate the effectiveness of an immunoaffinity column cleanup liquid chromatography (LC) method for determination of aflatoxin B, in a milk powder based infant formula at a possible future European regulatory limit (0.1 ng/g). The test portion was extracted with methanol-water (8 + 2 [v + v]), filtered, diluted with water, and applied to an immunoaffinity column. The column was washed with water to remove interfering compounds, and the purified aflatoxin B1 was eluted with methanol. The separation and determination of the aflatoxin B1 was performed by reversed-phase LC and detected by fluorescence after postcolumn derivatization (PCD) involving bromination. PCD was achieved with either pyridinum hydrobromide perbromide (PBPB) or an electrochemical (Kobra) cell by addition of bromide to the mobile phase. The baby food (infant formula) test samples, both spiked and naturally contaminated with aflatoxin B1, were sent to 14 laboratories in 13 different European countries. Test portions were spiked at levels of 0.1 and 0.2 ng/g for aflatoxin B1. Recoveries ranged from 101 to 92%. Based on results for spiked test samples (blind pairs at 2 levels) and naturally contaminated test samples (blind pairs at 3 levels), the relative standard deviation for repeatability (RSDr) ranged from 3.5 to 14%. The relative standard deviation for reproducibility (RSDR) ranged from 9 to 23%. Nine participants used PBPB derivatization, and  相似文献   

19.
1-Anthroylnitrile (1-AN) has been shown to be an efficient labelling reagent for the determination of T-2 toxin (T-2) by high-performance liquid chromatography (HPLC)-fluorescence detection. This reaction has been used to develop a sensitive, reproducible and accurate method for the determination of T-2 in wheat, corn, barley, oats, rice and sorghum. The method uses immunoaffinity columns containing antibodies specific for T-2 for extract clean-up, pre-column derivatization with 1-AN and HPLC with fluorescence detection for toxin determination. Ground cereal samples were extracted with methanol-water (80:20, v/v), the extracts were purified by immunoaffinity columns and the toxin was quantified by reversed-phase HPLC with fluorometric detection (excitation wavelength 381 nm, emission wavelength 470 nm) after derivatization with 1-AN. Recoveries from the different cereals spiked with T-2 at levels ranging from 0.05 to 1.5 microg/g were from 80 to 99%, with relative standard deviations of less than 6%. The limit of detection was 0.005 microg/g, based on a signal-to-noise ratio of 3:1.  相似文献   

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