Why Screen when You Can Y-Screen: Comparison of Serology and Y-Screening Methods Using the QIAGEN Investigator ® Casework GO! Kit
Conventional serological screening and processing of sexual assault evidence is time-consuming and labor-intensive. Direct-to-DNA male screening, or Y-screening, offers an alternative to these methods, minimizing sample consumption and introducing a more objective and meaningful screening metric. Despite the growing adoption of Y-screening in sexual assault evidence analysis, few published studies demonstrate its efficacy with case-relevant samples. This study bridges that gap by comprehensively examining semen dilutions on vaginal swabs and postcoital vaginal swabs. Two Y-screening methods (swab Y-screening and pellet Y-screening) utilizing the Investigator ® Casework GO! Kit were compared with conventional serological screening methods. The results demonstrate the effectiveness of these Y-screening methods in accurately predicting the presence of male DNA and its integration into a standard differential DNA extraction workflow. The novel pellet Y-screening method was assessed as the optimal method, displaying greater discrimination compared with acid phosphatase (AP) screening and increased sensitivity compared with prostate-specific antigen (p30) testing and microscopic examination with Christmas Tree staining. Modifications to the differential extraction workflow following pellet Y-screening improved the range of log likelihood ratios (LRs) of detecting male profiles in postcoital vaginal swabs (log LRs 17–25) compared with control direct-to-differential extraction profiles (log LRs 8–25). Additionally, both swab Y-screening and pellet Y-screening methods can be compatible with post hoc confirmatory microscopic examinations that laboratories may be required to perform. These findings demonstrate the suitability of Y-screening with the Investigator Casework GO! Kit as a superior alternative to traditional serological screening.
Authors
- Julia Wang (ORCID: https://orcid.org/0000-0003-0343-9820)
- Sheree Hughes (ORCID: https://orcid.org/0000-0002-3092-4605)
- Grace Fryer
- Rachel Houston
Institutions
- Sam Houston State University (US)
- Texas Department of Public Safety (US)
Publication Details
- Journal
- Forensic Genomics
- Published
- 2026-09-30
- DOI
- https://doi.org/10.1177/26908964261492854
- Primary Topic
- Forensic and Genetic Research
- Type
- article
- Field-Weighted Citation Impact
- 0.00