Takamura Ayari, Watanabe Ken, Akutsu Tomoko
National Research Institute of Police Science, 6-3-1, Kashiwanoha, Kashiwa, Chiba, 277-0882, Japan.
Int J Legal Med. 2017 Jul;131(4):933-939. doi: 10.1007/s00414-017-1536-3. Epub 2017 Jan 19.
Identification of human semen is indispensable for the investigation of sexual assaults. Fluorescence staining methods using commercial kits, such as the series of SPERM HY-LITER™ kits, have been useful to detect human sperm via strong fluorescence. These kits have been examined from various forensic aspects. However, because of a lack of evaluation methods, these studies did not provide objective, or quantitative, descriptions of the results nor clear criteria for the decisions reached. In addition, the variety of validations was considerably limited. In this study, we conducted more advanced validations of SPERM HY-LITER™ Express using our established image analysis method. Use of this method enabled objective and specific identification of fluorescent sperm's spots and quantitative comparisons of the sperm detection performance under complex experimental conditions. For body fluid mixtures, we examined interference with the fluorescence staining from other body fluid components. Effects of sample decomposition were simulated in high humidity and high temperature conditions. Semen with quite low sperm concentrations, such as azoospermia and oligospermia samples, represented the most challenging cases in application of the kit. Finally, the tolerance of the kit against various acidic and basic environments was analyzed. The validations herein provide useful information for the practical applications of the SPERM HY-LITER™ Express kit, which were previously unobtainable. Moreover, the versatility of our image analysis method toward various complex cases was demonstrated.
对性侵犯案件的调查而言,鉴定人类精液必不可少。使用商业试剂盒的荧光染色方法,如SPERM HY-LITER™系列试剂盒,已被用于通过强荧光检测人类精子。这些试剂盒已从多个法医角度进行了检验。然而,由于缺乏评估方法,这些研究并未对结果进行客观或定量的描述,也没有给出明确的判定标准。此外,验证的种类相当有限。在本研究中,我们使用已建立的图像分析方法对SPERM HY-LITER™ Express进行了更深入的验证。使用该方法能够客观、特异性地识别荧光精子斑点,并在复杂实验条件下对精子检测性能进行定量比较。对于体液混合物,我们研究了其他体液成分对荧光染色的干扰。在高湿度和高温条件下模拟了样本分解的影响。精子浓度极低的精液,如无精子症和少精子症样本,是该试剂盒应用中最具挑战性的案例。最后,分析了该试剂盒对各种酸性和碱性环境的耐受性。本文的验证为SPERM HY-LITER™ Express试剂盒的实际应用提供了以前无法获得的有用信息。此外,还展示了我们的图像分析方法对各种复杂案例的通用性。