目的 建立一种Qu ECh ERS EMR-Lipid净化结合同位素稀释-超高效液相色谱-串联质谱技术(UPLC-MS/MS)同时测定蜂房及其制剂中10种真菌毒素的检测方法。方法 样品经80%乙腈水溶液提取,Qu ECh ERS EMRLipid净化,采用UPLC-MS/MS,在多反应监测...目的 建立一种Qu ECh ERS EMR-Lipid净化结合同位素稀释-超高效液相色谱-串联质谱技术(UPLC-MS/MS)同时测定蜂房及其制剂中10种真菌毒素的检测方法。方法 样品经80%乙腈水溶液提取,Qu ECh ERS EMRLipid净化,采用UPLC-MS/MS,在多反应监测(MRM)模式下进行测定,内标法定量。结果 10种真菌毒素含量在各自质量浓度范围内具有较好的线性关系(r>0.999),目标化合物在低、中、高3个质量浓度下的平均回收率为83.8%~107.1%(RSD<6.5%),定量限(LOQ)为0.18~129μg/kg。结论 该法前处理步骤简便,净化效果良好,提高了样品检测效率,内标法定量精准可靠,适用于蜂房及其制剂中10种真菌毒素的同时检测。展开更多
[Objectives] This study was conducted to establish an LC-MS/MS method for the determination of three kinds of polyether residues in eggs with QuEChERS dSPE EMR-Lipid as a pretreatment method, which was established acc...[Objectives] This study was conducted to establish an LC-MS/MS method for the determination of three kinds of polyether residues in eggs with QuEChERS dSPE EMR-Lipid as a pretreatment method, which was established according to Agilent Bond Elut enhanced lipid removal EMR-Lipid technology. [ Methods] Egg was extracted by acidified acetonitrile, purified by Bond Elut EMR-Lipid QuEChERS, and detected by HPLC-MS/MS. [ Results] The three kinds of polyether residues had good linear relationships in the range of 2.0 - 100 μg/L with peak areas, r 〉 0. 999. The recoveries ranged from 84.6% to 107.0%. [ Conclusions ] The method is convenient and accurate, and the quantitative results are accurate and reproducible. It is suitable for the determination of the three kinds of polyether residues in eggs.展开更多
目的建立EMR-Lipid dSPE结合气相色谱-串联质谱法(gas chromatography-tandem mass spectrometry,GC-MS/MS)同时测定玉米油中218种农药残留的分析方法。方法样品采用乙腈提取并经冷冻离心初次除油后用EMR-Lipid dSPE分散固相萃取净化,...目的建立EMR-Lipid dSPE结合气相色谱-串联质谱法(gas chromatography-tandem mass spectrometry,GC-MS/MS)同时测定玉米油中218种农药残留的分析方法。方法样品采用乙腈提取并经冷冻离心初次除油后用EMR-Lipid dSPE分散固相萃取净化,气相色谱-质谱联用仪多反应监测(multiple reaction monitoring,MRM)模式检测,采用基质匹配标准溶液内标法定量。结果218种农药在5~200 ng/mL范围内线性关系良好,相关系数均大于0.995,在0.05、0.10、0.50 mg/kg 3个添加水平的回收率为63.3%~119.9%,相对标准偏差(relative standard deviations,RSDs)为0.78%~18.10%,定量限(limits of the quantitation,LOQs)为10~20μg/kg。结论该方法前处理简单、高效,灵敏度、准确度和精密度高,能满足玉米油中218种农药多残留的分析要求。展开更多
In this study, a new formulation of silica nanocomposite containing nifedipine (NI) loaded freeze-dried solid-lipid nanoparticles (NI-SLNs) and silica have been developed with improved flowability of powders, which ca...In this study, a new formulation of silica nanocomposite containing nifedipine (NI) loaded freeze-dried solid-lipid nanoparticles (NI-SLNs) and silica have been developed with improved flowability of powders, which can lead to the formulation of a widely acceptable oral dosage form. The stable NI-SLNs were prepared using two phospholipids, hydrogenated soybean phosphatidylcholine and dipalmitoylphosphatidylglycerol mixed with 2.5% w/v trehalose as a cryoprotectant followed by lyophilization. We employed various grades of two types of silica, such as fumed and precipitated. Silica improved the poor flow property of NI-SLNs to good category as per USP-29. In addition, most of the silica nanocomposites showed the satisfactory results in their physicochemical properties such as particle size, polydispersity index, zeta potential, and recovered potency by around 100 nm, 0.3, -50 mV, and 80%, respectively. Furthermore, it was found that NI-SLNs were easily released form nanocomposites within 30 min, therefore, suggesting an improvement of drug dissolutions. Among them, precipitated silica cooperated fairly in improving the powder characteristics as well as the physicochemical, morphological, and pharmaceutical properties.展开更多
基金Supported by Science and Technology Planning Project of Huizhou City(20161117141959)
文摘[Objectives] This study was conducted to establish an LC-MS/MS method for the determination of three kinds of polyether residues in eggs with QuEChERS dSPE EMR-Lipid as a pretreatment method, which was established according to Agilent Bond Elut enhanced lipid removal EMR-Lipid technology. [ Methods] Egg was extracted by acidified acetonitrile, purified by Bond Elut EMR-Lipid QuEChERS, and detected by HPLC-MS/MS. [ Results] The three kinds of polyether residues had good linear relationships in the range of 2.0 - 100 μg/L with peak areas, r 〉 0. 999. The recoveries ranged from 84.6% to 107.0%. [ Conclusions ] The method is convenient and accurate, and the quantitative results are accurate and reproducible. It is suitable for the determination of the three kinds of polyether residues in eggs.
文摘目的建立EMR-Lipid dSPE结合气相色谱-串联质谱法(gas chromatography-tandem mass spectrometry,GC-MS/MS)同时测定玉米油中218种农药残留的分析方法。方法样品采用乙腈提取并经冷冻离心初次除油后用EMR-Lipid dSPE分散固相萃取净化,气相色谱-质谱联用仪多反应监测(multiple reaction monitoring,MRM)模式检测,采用基质匹配标准溶液内标法定量。结果218种农药在5~200 ng/mL范围内线性关系良好,相关系数均大于0.995,在0.05、0.10、0.50 mg/kg 3个添加水平的回收率为63.3%~119.9%,相对标准偏差(relative standard deviations,RSDs)为0.78%~18.10%,定量限(limits of the quantitation,LOQs)为10~20μg/kg。结论该方法前处理简单、高效,灵敏度、准确度和精密度高,能满足玉米油中218种农药多残留的分析要求。
文摘In this study, a new formulation of silica nanocomposite containing nifedipine (NI) loaded freeze-dried solid-lipid nanoparticles (NI-SLNs) and silica have been developed with improved flowability of powders, which can lead to the formulation of a widely acceptable oral dosage form. The stable NI-SLNs were prepared using two phospholipids, hydrogenated soybean phosphatidylcholine and dipalmitoylphosphatidylglycerol mixed with 2.5% w/v trehalose as a cryoprotectant followed by lyophilization. We employed various grades of two types of silica, such as fumed and precipitated. Silica improved the poor flow property of NI-SLNs to good category as per USP-29. In addition, most of the silica nanocomposites showed the satisfactory results in their physicochemical properties such as particle size, polydispersity index, zeta potential, and recovered potency by around 100 nm, 0.3, -50 mV, and 80%, respectively. Furthermore, it was found that NI-SLNs were easily released form nanocomposites within 30 min, therefore, suggesting an improvement of drug dissolutions. Among them, precipitated silica cooperated fairly in improving the powder characteristics as well as the physicochemical, morphological, and pharmaceutical properties.