Dede Maria, van Dam Annemieke
Department Biomedical Engineering & Physics, Amsterdam UMC, University of Amsterdam, Meibergdreef 9, Amsterdam, 1105 AZ, Netherlands.
Methodology Research Program, Amsterdam Public Health Research Institute, Amsterdam UMC, Meibergdreef 9, Amsterdam, 1105 AZ, Netherlands.
Anal Bioanal Chem. 2025 Jan;417(1):15-31. doi: 10.1007/s00216-024-05565-6. Epub 2024 Oct 9.
During crime scene investigations, numerous traces are secured and may be used as evidence for the evaluation of source and/or activity level propositions. The rapid chemical analysis of a biological trace enables the identification of body fluids and can provide significant donor profiling information, including age, sex, drug abuse, and lifestyle. Such information can be used to provide new leads, exclude from, or restrict the list of possible suspects during the investigative phase. This paper reviews the state-of-the-art labelling techniques to identify the most suitable visual enhancer to be implemented in a lateral flow immunoassay setup for the purpose of trace identification and/or donor profiling. Upon comparison, and with reference to the strengths and limitations of each label, the simplistic one-step analysis of noncompetitive lateral flow immunoassay (LFA) together with the implementation of carbon nanoparticles (CNPs) as visual enhancers is proposed for a sensitive, accurate, and reproducible in situ trace analysis. This approach is versatile and stable over different environmental conditions and external stimuli. The findings of the present comparative analysis may have important implications for future forensic practice. The selection of an appropriate enhancer is crucial for a well-designed LFA that can be implemented at the crime scene for a time- and cost-efficient investigation.
在犯罪现场调查过程中,大量痕迹被获取并可用作评估来源和/或活动水平假设的证据。对生物痕迹进行快速化学分析能够识别体液,并可提供重要的捐赠者特征信息,包括年龄、性别、药物滥用和生活方式等。这些信息可用于在调查阶段提供新线索、排除或限制可能的嫌疑人名单。本文综述了最先进的标记技术,以确定最适合在侧向流动免疫分析装置中用于痕迹识别和/或捐赠者特征分析的视觉增强剂。通过比较,并参考每种标记的优缺点,建议采用非竞争性侧向流动免疫分析(LFA)的简单一步分析法,并将碳纳米颗粒(CNP)用作视觉增强剂,以进行灵敏、准确和可重复的原位痕迹分析。这种方法在不同环境条件和外部刺激下具有通用性和稳定性。本比较分析的结果可能对未来的法医实践具有重要意义。选择合适的增强剂对于设计良好的LFA至关重要,该LFA可在犯罪现场实施,以实现高效省时且经济的调查。