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◆ Journal of forensic sciences2026-09-25

Accelerated DNA profiling through workflow reconfiguration: Practical experience from 2-year postmortem skeletal remains in hostage repatriation.

Michal Nachman Shenfeld, Taly Spivak-Kroizman, Guy Bader, Sharon Avhar Maydan, Nir Adam Sharon, Michal Peer, Moriel Ben Zwi, Tami Rafael Dor, Orel Rivni, Dania Shahar, Nurit Bublil

原始摘要(英文原文)· Original abstract
The identification of human remains in mass-casualty incidents requires rapid and reliable forensic DNA analysis, particularly when dealing with degraded skeletal material. Although rapid forensic identification is a fundamental objective in all disaster victim identification (DVI) operations, the repatriation of deceased hostages from the October 7, 2023, attack, c. 2 years postmortem (PM), imposed an additional challenge of a fixed operational deadline dictated by the implementation of the hostages-prisoners exchange agreement. To accelerate STR profiling, we reconfigured the conventional sequential process (extraction, quantification, amplification) into a flexible, decision-driven workflow. The new workflow incorporates a shortened 1.5-h DNA incubation, predefined dual-volume PCR amplification, and deferred DNA quantification. Built-in contingency mechanisms including multi-sample per case and enhanced 33-Cycle PCR-enabled immediate progression to alternative pathways when required. The accelerated workflow was applied in a real-world operational setting involving 37 cases (79 samples) collected during multiple repatriation phases. Informative STR profiles were obtained from 90% (71/79) of samples within 4 h per repatriation phase. Although eight individual samples remained non-informative, the integrated contingency mechanisms enabled successful resolution of all 37 cases (100%). Informative profiles were generated across a broad range of DNA quantities, including low-template samples, and from diverse skeletal elements. By comparison, the RapidHIT™ system generated an informative profile in only one of 21 samples. These findings demonstrate that restructuring the DNA workflow into a flexible, decision-driven process with built-in contingency mechanisms enables rapid and reliable profiling. The proposed workflow provides a practical operational framework for time-critical forensic DNA identification.
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Accelerated DNA profiling through workflow reconfiguration: Practical experience from 2-year postmortem skeletal remains in hostage repatriation. — 科研速览 Science Skim