Skip to main content
Top
Published in: International Journal of Legal Medicine 2/2009

Open Access 01-03-2009 | Technical Note

Automatic detection of spermatozoa for laser capture microdissection

Authors: Mado Vandewoestyne, David Van Hoofstat, Filip Van Nieuwerburgh, Dieter Deforce

Published in: International Journal of Legal Medicine | Issue 2/2009

Login to get access

Abstract

In sexual assault crimes, differential extraction of spermatozoa from vaginal swab smears is often ineffective, especially when only a few spermatozoa are present in an overwhelming amount of epithelial cells. Laser capture microdissection (LCM) enables the precise separation of spermatozoa and epithelial cells. However, standard sperm-staining techniques are non-specific and rely on sperm morphology for identification. Moreover, manual screening of the microscope slides is time-consuming and labor-intensive. Here, we describe an automated screening method to detect spermatozoa stained with Sperm HY-LITER™. Different ratios of spermatozoa and epithelial cells were used to assess the automatic detection method. In addition, real postcoital samples were also screened. Detected spermatozoa were isolated using LCM and DNA analysis was performed. Robust DNA profiles without allelic dropout could be obtained from as little as 30 spermatozoa recovered from postcoital samples, showing that the staining had no significant influence on DNA recovery.
Literature
1.
go back to reference Gill P, Jeffreys AJ, Werrett DJ (1985) Forensic application of DNA ‘fingerprints’. Nature 318:577–579PubMedCrossRef Gill P, Jeffreys AJ, Werrett DJ (1985) Forensic application of DNA ‘fingerprints’. Nature 318:577–579PubMedCrossRef
2.
go back to reference Wiegand P, Schurenkamp M, Schutte U (1992) DNA extraction from mixtures of body fluid using mild preferential lysis. Int J Legal Med 104:359–360PubMedCrossRef Wiegand P, Schurenkamp M, Schutte U (1992) DNA extraction from mixtures of body fluid using mild preferential lysis. Int J Legal Med 104:359–360PubMedCrossRef
3.
go back to reference Cerri N, Ricci U, Sani I, Verzeletti A, De Ferrari F (2003) Mixed stains from sexual assault cases: autosomal or Y-chromosome short tandem repeats? Croat Med J 44:289–292PubMed Cerri N, Ricci U, Sani I, Verzeletti A, De Ferrari F (2003) Mixed stains from sexual assault cases: autosomal or Y-chromosome short tandem repeats? Croat Med J 44:289–292PubMed
4.
go back to reference Sanders CT, Sanchez N, Ballantyne J, Peterson DA (2006) Laser microdissection separation of pure spermatozoa from epithelial cells for short tandem repeat analysis. J Forensic Sci 51:748–757PubMedCrossRef Sanders CT, Sanchez N, Ballantyne J, Peterson DA (2006) Laser microdissection separation of pure spermatozoa from epithelial cells for short tandem repeat analysis. J Forensic Sci 51:748–757PubMedCrossRef
5.
go back to reference Seidl S (2005) Contact-free isolation of sperm and epithelial cells by laser microdissection and pressure catapulting. Forensic Sci Med Pathol 1:153–158CrossRef Seidl S (2005) Contact-free isolation of sperm and epithelial cells by laser microdissection and pressure catapulting. Forensic Sci Med Pathol 1:153–158CrossRef
6.
go back to reference Di Martino D, Giuffre G, Staiti N, Simone A, Le Donne M, Saravo L (2004) Single sperm cell isolation by laser microdissection. Forensic Sci Int 146:S151–S153PubMedCrossRef Di Martino D, Giuffre G, Staiti N, Simone A, Le Donne M, Saravo L (2004) Single sperm cell isolation by laser microdissection. Forensic Sci Int 146:S151–S153PubMedCrossRef
7.
go back to reference Elliott K, Hill DS, Lambert C, Burroughes TR, Gill P (2003) Use of laser microdissection greatly improves the recovery of DNA from sperm on microscope slides. Forensic Sci Int 137:28–36PubMedCrossRef Elliott K, Hill DS, Lambert C, Burroughes TR, Gill P (2003) Use of laser microdissection greatly improves the recovery of DNA from sperm on microscope slides. Forensic Sci Int 137:28–36PubMedCrossRef
8.
go back to reference Anslinger K, Mack B, Bayer B, Rolf B, Eisenmenger W (2005) Digoxigenin labelling and laser capture microdissection of male cells. Int J Legal Med 119:374–377PubMedCrossRef Anslinger K, Mack B, Bayer B, Rolf B, Eisenmenger W (2005) Digoxigenin labelling and laser capture microdissection of male cells. Int J Legal Med 119:374–377PubMedCrossRef
9.
go back to reference Anslinger K, Bayer B, Mack B, Eisenmenger W (2007) Sex-specific fluorescent labelling of cells for laser microdissection and DNA profiling. Int J Legal Med 121:54–56PubMedCrossRef Anslinger K, Bayer B, Mack B, Eisenmenger W (2007) Sex-specific fluorescent labelling of cells for laser microdissection and DNA profiling. Int J Legal Med 121:54–56PubMedCrossRef
10.
go back to reference Allery JP, Telmon N, Mieusset R, Blanc A, Rouge D (2001) Cytological detection of spermatozoa: comparison of three staining methods. J Forensic Sci 46:349–351PubMed Allery JP, Telmon N, Mieusset R, Blanc A, Rouge D (2001) Cytological detection of spermatozoa: comparison of three staining methods. J Forensic Sci 46:349–351PubMed
11.
go back to reference Ehrig T, Abdulkadir SA, Dintzis SM, Milbrandt J, Watson MA (2001) Quantitative amplification of genomic DNA from histological tissue sections after staining with nuclear dyes and laser capture microdissection. J Mol Diagn 3:22–25PubMed Ehrig T, Abdulkadir SA, Dintzis SM, Milbrandt J, Watson MA (2001) Quantitative amplification of genomic DNA from histological tissue sections after staining with nuclear dyes and laser capture microdissection. J Mol Diagn 3:22–25PubMed
12.
go back to reference Niyaz Y, Sägmüller B (2005) Non-contact laser microdissection and pressure catapulting: automation via object-oriented image processing. Med Laser Appl 20:223–232CrossRef Niyaz Y, Sägmüller B (2005) Non-contact laser microdissection and pressure catapulting: automation via object-oriented image processing. Med Laser Appl 20:223–232CrossRef
13.
go back to reference Van Hoofstat DE, Deforce DL, Millecamps RE et al (1998) Population genetic study of four short tandem repeat loci in the Belgian population, using capillary electrophoresis. Electrophoresis 19:719–722PubMedCrossRef Van Hoofstat DE, Deforce DL, Millecamps RE et al (1998) Population genetic study of four short tandem repeat loci in the Belgian population, using capillary electrophoresis. Electrophoresis 19:719–722PubMedCrossRef
14.
go back to reference Rudbeck L, Dissing J (1998) Rapid, simple alkaline extraction of human genomic DNA from whole blood, buccal epithelial cells, semen and forensic stains for PCR. Biotechniques 25:588–590 592PubMed Rudbeck L, Dissing J (1998) Rapid, simple alkaline extraction of human genomic DNA from whole blood, buccal epithelial cells, semen and forensic stains for PCR. Biotechniques 25:588–590 592PubMed
15.
go back to reference Lucy D, Curran JM, Pirie AA, Gill P (2007) The probability of achieving full allelic representation for LCN-STR profiling of haploid cells. Sci Justice 47:168–171PubMedCrossRef Lucy D, Curran JM, Pirie AA, Gill P (2007) The probability of achieving full allelic representation for LCN-STR profiling of haploid cells. Sci Justice 47:168–171PubMedCrossRef
16.
Metadata
Title
Automatic detection of spermatozoa for laser capture microdissection
Authors
Mado Vandewoestyne
David Van Hoofstat
Filip Van Nieuwerburgh
Dieter Deforce
Publication date
01-03-2009
Publisher
Springer-Verlag
Published in
International Journal of Legal Medicine / Issue 2/2009
Print ISSN: 0937-9827
Electronic ISSN: 1437-1596
DOI
https://doi.org/10.1007/s00414-008-0271-1

Other articles of this Issue 2/2009

International Journal of Legal Medicine 2/2009 Go to the issue