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121.
Trenbolone (TRE) is a steroid used by veterinarians on livestock to increase appetite and body weight. The use of TRE has been restricted because of its harmful side effect for consumers. To effectively control TRE residue in food and food product, a rapid and convenient immunoassay was developed by preparing an anti-TRE monoclonal antibody. The immunogen and coating antigen were prepared by coupling TRE hapten with carrier proteins via 1-ethyl-3-(dimethylaminopropyl)carbodiimide hydrochloride (EDC) method. The optimized method gave an average IC50 value of 0.323 ng mL−1 towards TRE and an average detection limit (LOD) of 0.06 ng mL−1, which is much lower than the maximum residue levels (2.0 ng g−1) accepted by the Joint FAO/WHO Expert Committee on Food Additives (JECFA). The specificity of the antibody was evaluated by measuring cross-reactivity of six structurally related compounds, including 19-nortestosterone (9.7%), testosterone (0.13%), methyltestosterone (<0.01%), methandrostenolone (<0.01%), (+)-dehydroisoandrosterone (<0.001%) and β-estradiol (<0.001%). The recovery rates of the test in detection of TRE-fortified animal tissue, urine and animal feed samples were in the range of 81.3-89.4%, while the intra- and inter-assay coefficients of variation were less than 12.0%. 相似文献
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A sensitive and selective liquid chromatography tandem mass spectrometry method for determination of azasetron hydrochloride in rabbit plasma was developed. After addition of doxapram hydrochloride as internal standard (IS), protein precipitation by 10% trichloroacetic acid was used as sample preparation. Chromatographic separation was achieved on a Zorbax SB-C(18) (2.1 × 50 mm, 3.5 μm) column with acetonitrile-water as mobile phase with gradient elution. An electrospray ionization source was applied and operated in positive ion mode; multiple reaction monitoring mode was used to quantification using target fragment ions m/z 349.9 → 223.5 for azasetron hydrochloride and m/z 378.9 → 291.8 for the IS. Calibration plots were linear over the range of 6-1000 ng/mL for azasetron hydrochloride in plasma. The lower limit of quantitation for azasetron hydrochloride was 6 ng/mL. The mean recovery of azasetron hydrochloride from plasma was in the range 85.6-92.7%. The RSDs of intra-day and inter-day precision were both less than 12%. This method is simple and sensitive enough to be used in pharmacokinetic research for determination of azasetron hydrochloride in rabbit plasma. 相似文献
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以2,6-二氯吡啶为起始原料,经肼基化、还原、硝化、Nietzki-Dietschy环合4步反应得到5-氨基-6-硝基-[1,2,5]噁二唑并[3,4-b]吡啶-1-氧化物.结合反应机理讨论了还原、硝化、Nietzki-Dietschy环合反应的影响因素,获得了合成-.氨基-6-硝基-[1,2,5]噁二唑并[3,4-b]吡啶-1-氧化物的最佳工艺条件,目标产物的总收率为59.2%.用1H NMR、MS和IR谱对5-氨基-6-硝基-[1,2,5]噁二唑并[3,4-b]吡啶-1-氧化物的结构进行了表征. 相似文献
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应用荧光光谱、紫外-可见分光光度法研究了盐酸鸟嘌呤(GH)与牛血清白蛋白(BSA)的相互作用。结果表明:GH能猝灭BSA的荧光强度,其猝灭机理为静态猝灭。采用位点结合模型公式和热力学公式计算了结合常数、结合位点数及结合类型。用同步荧光技术研究GH对BSA构象的影响。 相似文献
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Abstract A simple and sensitive spectrophotometric method is described for the determination of buclizine hydrochloride in bulk and tablets form. The method is based on the formation of charge-transfer complex between buclizine, as n-donor, and iodine, as Δ acceptor, which measured spectrophotometrically at 295 and 355 nm. A Job's plot indicated a 1:1 complex between the drug and iodine and Beer's law was obeyed in a concentration range of 4–30 μg ml?1. A more detailed investigation of the complex was made with respect to its association constant and the free energy change. The method is simple and sensitive and has been applied successfully to the analysis of laboratory-made tablets without any interference from the tablet excipients. To validate the method, the results obtained were compared statistically with a newly developed uv-derivative spectrophotometric method. The charge-transfer method was favored due to its higher sensitivity, cheap coast and available equipments. 相似文献