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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Development and evaluation of a multiple-plate fraction collector for sample processing: application to radioprofiling in drug metabolism studies.
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Development and evaluation of a multiple-plate fraction collector for sample processing: application to radioprofiling in drug metabolism studies.

机译:开发和评估用于样品处理的多板馏分收集器:在药物代谢研究中应用于放射分析。

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摘要

Microplate scintillation counters are utilized routinely in drug metabolism laboratories for the off-line radioanalysis of fractions collected during HPLC radioprofiling. In this process, the current fraction collection technology is limited by the number of plates that can be used per injection as well as the potential for sample loss due to dripping or spraying as the fraction collector head moves from well to well or between plates. More importantly, sample throughput is limited in the conventional process, since the collection plates must be manually exchanged after each injection. The Collect PAL, an innovative multiple-plate fraction collector, was developed to address these deficiencies and improve overall sample throughput. It employs a zero-loss design and has sub-ambient temperature control. Operation of the system is completely controlled with software and up to 24 (96- or 384-well) fraction collection plates can be loaded in a completely automated run. The system may also be configured for collection into various-sized tubes or vials. At flow rates of 0.5 or 1.0 mL/min and at collection times of 10 or 15s, the system precisely delivered 83-muL fractions (within 4.1% CV) and 250-muL fractions (within 1.4% CV), respectively, of three different mobile phases into 12 mm x 32 mm vials. Similarly, at a flow rate of 1 mL/min and 10s collection times, the system precisely dispensed mobile phase containing a [(14)C]-radiolabeled compound across an entire 96-well plate (% CV was within 5.3%). Triplicate analyses of metabolism test samples containing [(14)C]buspirone and its metabolites, derived from three different matrices (plasma, urine and bile), indicated that the Collect PAL produced radioprofiles that were reproducible and comparable to the current technology; the % CV for 9 selected peaks in the radioprofiles generated with the Collect PAL were within 9.3%. Radioprofiles generated by collecting into 96- and 384-well plates were qualitatively comparable; however, the peak resolution was greater in the profiles that were collected in 384-well plates due to the collection of a larger number of fractions per minute. In conclusion, this new and innovative fraction collector generated radioprofile results that were comparable to current technology and should provide a major improvement in capacity and throughput for radioprofiling studies.
机译:酶代谢实验室通常使用微孔板闪烁计数器对HPLC放射分析中收集的馏分进行离线放射分析。在此过程中,当前的馏分收集技术受到每次进样可使用的板数以及馏分收集器头从井到井之间或板之间移动时由于滴落或喷涂而造成的样品损失的可能性的限制。更重要的是,由于在每次进样后必须手动更换采集板,因此在常规方法中样品通量受到限制。收集器PAL是一种创新的多板馏分收集器,旨在解决这些缺陷并提高总体样品通量。它采用零损耗设计,并具有低于室温的温度控制。该系统的运行完全由软件控制,并且可以全自动运行多达24个(96或384孔)馏分收集板。该系统还可以被配置用于收集到各种尺寸的管或小瓶中。在0.5或1.0 mL / min的流速下以及在10或15s的收集时间下,系统分别分别精确地输送了三种不同的83μL馏分(在4.1%CV之内)和250μL馏分(在1.4%CV之内)。流动相放入12毫米x 32毫米的样品瓶中。同样,在1 mL / min的流速和10s的收集时间下,系统在整个96孔板中精确分配了含有[(14)C]放射性标记化合物的流动相(%CV在5.3%之内)。对包含[(14)C]丁螺环酮及其代谢物的代谢测试样品进行三重分析,这些样品衍生自三种不同的基质(血浆,尿液和胆汁),表明Collect PAL产生的放射线谱具有可重复性,可与当前技术媲美。使用Collect PAL生成的辐射图中9个选定峰的CV%在9.3%以内。收集到96孔板和384孔板中产生的放射线在质量上是可比的。但是,由于每分钟收集的馏分数量更多,因此在384孔板中收集的谱图中的峰分辨率更高。总之,这种新颖的创新馏分收集器产生的辐射剖面结果可与当前技术相媲美,并应大大提高放射性谱研究的能力和通量。

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