电子邮箱

密码

安全问题

注册 忘记密码?

无锡微色谱生物科技有限公司

见微知著,样品分析,如虎添翼

JA0037 Recent advances in micro-sample preparation with forensic applications
来源:Trends in Analytical Chemistry | 作者:Abuzar Kabir | 发布时间: 2129天前 | 2564 次浏览 | 分享到:
Sample preparation in forensic science offers special challenges in that the sample matrix and the analytes change depending on the circumstances of the case. It is difficult to standardize the sample preparation step for many types of cases due to sample and matrix complexity and the total unknown nature of the target analytes present within the matrix. Secondly, the analytical results obtained from forensic samples often undergo rigorous legal scrutiny and challenges. As such, maintaining the integrity of the sample chain of custody should be considered during the sampling and sample preparation prior to analysis. Finally, for those sample matrices where the sample preparation can be standardized (i.e., fire debris analysis and toxicology), utmost care should be taken to minimize the possible interferents and maximize the analyte concentration to meet the analytical requirements. In this article, we discuss the nature and the types of forensic samples of interest, and recent developments and innovations in micro-sample preparation techniques in different disciplines within forensic science. We also discuss the future outlook of forensic sample preparation.
1 Introduction

The application of scientific values and practices for legal purposes defines the basics of forensic science. Chemists in the field not only examine a wide variety of samples of forensic interest, but also interpret data acquired from the analytical investigation to present in civil and/or criminal judicial proceedings. Continual advances in the area of forensic analysis are essential because applications of forensic chemistry have broad implications in the establishment of evidential value of the analyzed sample to the court of law with a superior level of quality assurance. An important first step in forensic chemical analysis is sampling and sample preparation, especially when working with trace and ultra-trace levels of the target analyte(s) present in various complex matrices (e.g., soil, biological, environmental, drug, and fire-debris), and the amount of the sample available to the investigator is limited, as in most cases. Considering the complex nature of the sample matrix in which the desired analyte(s) is present, the samples cannot be introduced directly into the analytical instrument for qualitative/quantitative chemical analyses. This is because the complex sample matrix can damage the performance of the analytical instrument if introduced without prior sample treatment/clean-up procedures and the concentration of the analyte of interest in the sample matrix may be lower than minimum limits of detection (LOD) of the instrument. Unlike with other disciplines, it is difficult to standardize the analytical approach to sampling and sample preparation, as every forensic case is unique. Although conventional sample preparation techniques [e.g., liquid-liquid extraction (LLE), solid-phase extraction (SPE),.....


阅读全文
  • 三种 Protein A树脂纯化效率比较及流程优化

    2021-09-20

    简要介绍 dSPE 在全自动移液工作站上应用实现全自动抗体纯化的原理。
    比较了三种 Protein A 纯化 HIgG 的效率及纯化流程优化方法。

  • 使用 IMCSTips 实验全自动纯化(一步)方法及数据分析

    2021-09-20

    1. IMCStips 应用原理展示
    2. His-tagged 蛋白纯化流程优化及数据分析

  • 全自动抗体、蛋白纯化演示

    2021-09-20

    IMCStips 亲和层析柱
    ● 一次层析即可快速产生高纯重组蛋白
    ● 一致性好、回收率高,个样品的差异不到 10%
    ● 可结合各种复杂方法的模板化工作流
    ● 与 Hamilton 移液工作站结合,可在 30 分钟内处理 96 个样品
    ● 可定制的工作流程

  • 振荡器-BenchWaver

    2020-02-08

    BenchWaver™ 把传统的平台摇摆运动与轨道振动器的圆周运动结合起来,这种最优组合能够产生最适合分子生物学应用的三维运动。

  • 均质机-D1030 演示

    2020-02-08

    强力混匀,适于细胞裂解、研磨或均质
    与通用的组织研磨机更快速、更高效
    采用密封2.0mL管,消除交叉感染
    中通量,可同时处理3~6个样品