Equipe de Recherche sur les Relations Matrice Extracellulaire-Cellules, ERRMECe, (EA1391), Groupe Matrice Extracellulaire et Physiopathologie (MECuP), Institut des Matériaux, I-MAT (FD4122), CY Cergy Paris Université, Neuville sur Oise, France.
Institut de Recherche Criminelle de la Gendarmerie Nationale, Cergy-Pontoise, France.
Sci Rep. 2023 Oct 23;13(1):18105. doi: 10.1038/s41598-023-45366-y.
At a crime scene, investigators are faced with a multitude of traces. Among them, biological traces are of primary interest for the rapid genetic-based identification of individuals. "Touch DNA" consists of invisible biological traces left by the simple contact of a person's skin with objects. To date, these traces remain undetectable with the current methods available in the field. This study proposes a proof-of-concept for the original detection of touch DNA by targeting cell-derived fragments in addition to DNA. More specifically, adhesive-structure proteins (laminin, keratin) as well as carbohydrate patterns (mannose, galactose) have been detected with keratinocyte cells derived from a skin and fingermark touch-DNA model over two months in outdoor conditions. Better still, this combinatory detection strategy is compatible with DNA profiling. This proof-of-concept work paves the way for the optimization of tools that can detect touch DNA, which remains a real challenge in helping investigators and the delivery of justice.
在犯罪现场,调查人员面临着大量的痕迹。其中,生物痕迹是快速进行个体基因识别的主要关注点。“接触 DNA”是指人体皮肤与物体简单接触时留下的不可见的生物痕迹。迄今为止,这些痕迹仍然无法通过目前该领域可用的方法检测到。本研究提出了一种通过针对细胞衍生片段而不仅仅是 DNA 来检测接触 DNA 的概念验证。更具体地说,在户外条件下,从皮肤和指纹接触 DNA 模型中获得的角朊细胞中已经检测到了粘合结构蛋白(层粘连蛋白、角蛋白)以及碳水化合物模式(甘露糖、半乳糖)。更好的是,这种组合检测策略与 DNA 图谱分析兼容。这一概念验证工作为优化能够检测接触 DNA 的工具铺平了道路,这对于帮助调查人员和伸张正义仍然是一个真正的挑战。