Literature DB >> 22282153

Vaginal microbial flora analysis by next generation sequencing and microarrays; can microbes indicate vaginal origin in a forensic context?

Corina C G Benschop1, Frederike C A Quaak, Mathilde E Boon, Titia Sijen, Irene Kuiper.   

Abstract

Forensic analysis of biological traces generally encompasses the investigation of both the person who contributed to the trace and the body site(s) from which the trace originates. For instance, for sexual assault cases, it can be beneficial to distinguish vaginal samples from skin or saliva samples. In this study, we explored the use of microbial flora to indicate vaginal origin. First, we explored the vaginal microbiome for a large set of clinical vaginal samples (n = 240) by next generation sequencing (n = 338,184 sequence reads) and found 1,619 different sequences. Next, we selected 389 candidate probes targeting genera or species and designed a microarray, with which we analysed a diverse set of samples; 43 DNA extracts from vaginal samples and 25 DNA extracts from samples from other body sites, including sites in close proximity of or in contact with the vagina. Finally, we used the microarray results and next generation sequencing dataset to assess the potential for a future approach that uses microbial markers to indicate vaginal origin. Since no candidate genera/species were found to positively identify all vaginal DNA extracts on their own, while excluding all non-vaginal DNA extracts, we deduce that a reliable statement about the cellular origin of a biological trace should be based on the detection of multiple species within various genera. Microarray analysis of a sample will then render a microbial flora pattern that is probably best analysed in a probabilistic approach.

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Year:  2012        PMID: 22282153     DOI: 10.1007/s00414-011-0660-8

Source DB:  PubMed          Journal:  Int J Legal Med        ISSN: 0937-9827            Impact factor:   2.686


  38 in total

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2.  A novel histological technique for distinguishing between epithelial cells in forensic casework.

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3.  Raman spectroscopic signature of vaginal fluid and its potential application in forensic body fluid identification.

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4.  Effects of vaginal intercourse with and without a condom on vaginal flora and vaginal epithelium.

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Review 5.  Bacterial flora of the female genital tract: function and immune regulation.

Authors:  Steven S Witkin; Iara Moreno Linhares; Paulo Giraldo
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6.  Comparison of self-collected and physician-collected vaginal swabs for microbiome analysis.

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7.  An improved method to recover saliva from human skin: the double swab technique.

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8.  Microbes on the human vaginal epithelium.

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9.  Characterization of vaginal microbial communities in adult healthy women using cultivation-independent methods.

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  11 in total

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3.  Specific microbes of saliva and vaginal fluid of Guangdong Han females based on 16S rDNA high-throughput sequencing.

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4.  Microbial forensics: next-generation sequencing as catalyst: The use of new sequencing technologies to analyze whole microbial communities could become a powerful tool for forensic and criminal investigations.

Authors:  Irene Kuiper
Journal:  EMBO Rep       Date:  2016-06-20       Impact factor: 8.807

5.  Microbial population analysis improves the evidential value of faecal traces in forensic investigations.

Authors:  Frederike C A Quaak; Mei-Lan M de Graaf; Rob Weterings; Irene Kuiper
Journal:  Int J Legal Med       Date:  2016-05-28       Impact factor: 2.686

6.  Cohort Profile: African Collaborative Center for Microbiome and Genomics Research's (ACCME's) Human Papillomavirus (HPV) and Cervical Cancer Study.

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7.  Development of a composite measure of product adherence, protocol compliance, and semen exposure using DNA and protein biomarkers for topical HIV prevention studies.

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9.  An in-depth survey of the microbial landscape of the walls of a neonatal operating room.

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Review 10.  Current Methods for Body Fluid Identification Related to Sexual Crime: Focusing on Saliva, Semen, and Vaginal Fluid.

Authors:  Koichi Sakurada; Ken Watanabe; Tomoko Akutsu
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