Optimisation and validation of cost-effective water-based solutions of acid fuchsin for detecting fingermarks in blood

IF 2.2 3区 医学 Q1 MEDICINE, LEGAL
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Abstract

Fingermark impressions in blood are commonly encountered at violent crime scenes and represent a critical trace that can link an individual to the scene. A range of techniques are available for detecting and enhancing bloody impressions; however, many chemical methods involve using hazardous solvents or require alternative light sources to visualise fluorescence. This is particularly challenging for bloody impressions on dark substrates. An alternative treatment is the protein dye known as acid fuchsin (commonly known as ‘Hungarian Red’), which can be visualised under both white light and fluorescence lighting. However, there is limited research available on this method, especially concerning its use in detecting bloody fingermarks on dark surfaces and its fluorescence qualities. To address these knowledge gaps, this study broadly aimed to evaluate the effectiveness of acid fuchsin for enhancing bloody fingermarks on a range of common substrates, along with comparing the performance of a formulation made from base components against a commercially-available Hungarian Red reagent. Through a multi-phased experimental approach, results supported an all-in-one treatment that contained 2 % SSA, 0.2 % acid fuchsin, and deionised water as the most effective. This formulation performed as well or better than commercial Hungarian Red, amido black and acid yellow in the validation trial. Enhanced impressions could be visualised under white light on light and dark surfaces, whilst 530 nm excitation provided improved detection via both fluorescence and absorption modes depending on substrate background interference. Moreover, the reagent was applied by spraying directly onto substrates placed at near-vertical angles, with no evidence of any fingermarks being affected by running or inadequate fixing. The ability to enhance and visualise bloody impressions on light and dark surfaces, under white light or excitation, using a single, water-based treatment is highly advantageous to operational crime scene examiners and forensic scientists.

优化和验证用于检测血液中指痕的高性价比酸性品红水基溶液
血液中的指印是暴力犯罪现场常见的痕迹,也是将个人与现场联系起来的关键踪迹。有一系列技术可用于检测和增强血印;但是,许多化学方法都需要使用有害溶剂,或者需要其他光源来观察荧光。这对于在深色基底上的血印尤其具有挑战性。另一种处理方法是使用称为酸性品红(俗称 "匈牙利红")的蛋白质染料,这种染料在白光和荧光照明下均可观察到。然而,关于这种方法的研究还很有限,尤其是关于它在检测黑暗表面上的血指印方面的应用及其荧光特性。为了填补这些知识空白,本研究的主要目的是评估酸性品红在增强一系列常见基质上的血色指痕方面的有效性,同时比较由基础成分制成的配方与市售匈牙利红试剂的性能。通过多阶段实验方法,结果表明包含 2 % SSA、0.2 % 酸性品红和去离子水的一体化处理方法最为有效。在验证试验中,这种配方的性能与商用匈牙利红、氨糖黑和酸性黄相当,甚至更好。在白光下,明暗表面均可观察到增强的印记,而 530 纳米的激发波长则可根据底物背景干扰,通过荧光和吸收两种模式提高检测效果。此外,该试剂可直接喷洒在近垂直角度放置的基底上,没有证据表明任何指痕会受到运行或不适当固定的影响。在白光或激发下,使用单一的水基处理剂就能增强和显现明暗表面上的血印,这对犯罪现场检查人员和法医科学家来说是非常有利的。
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来源期刊
Forensic science international
Forensic science international 医学-医学:法
CiteScore
5.00
自引率
9.10%
发文量
285
审稿时长
49 days
期刊介绍: Forensic Science International is the flagship journal in the prestigious Forensic Science International family, publishing the most innovative, cutting-edge, and influential contributions across the forensic sciences. Fields include: forensic pathology and histochemistry, chemistry, biochemistry and toxicology, biology, serology, odontology, psychiatry, anthropology, digital forensics, the physical sciences, firearms, and document examination, as well as investigations of value to public health in its broadest sense, and the important marginal area where science and medicine interact with the law. The journal publishes: Case Reports Commentaries Letters to the Editor Original Research Papers (Regular Papers) Rapid Communications Review Articles Technical Notes.
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