J Forensic Res. Kind SS.
The use of the acid phosphatase test in searching for seminal stains. Graves HCB. Non prostatic sources of protein-specific antigen: a steroid hormone dependent phenomenon? Clin Chem. Yu H, Diamandis EP. Prostate specific antigen in milk of lactating women.
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- Drug testing of hair samples in clinical and forensic toxicology | ELGA LabWater.
- Drug Analysis.
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Lunetta P, Sippel H. Positive prostate-specific antigen PSA reaction in post mortem rectal swabs: a cautionary note. J Forensic Leg Med. Rapid detection of semenogelin by one step immunochromatographic assay for semen identification. J Immunol Methods. Identification of human semenogelin in membrane strip test as an alternative method for the detection of semen.
Developmental validation of RSID-semen: a lateral flow immunochromatography strip test for the forensic identification of semen. Factors affecting the use of lactate dehydrogenase as a means of bloodstain differentiation. D-dimer assays for the identification of menstrual blood. Validation of an immunochromatographic D-dimer test to presumptively identify menstrual fluid in forensic exhibits. Int J Legal Med. Development of an immunoassay for the differentiation of menstrual blood from peripheral blood.
Uric acid and urea in human sweat. Chinese J Physiol. Production and characterisation of a monoclonal antibody for sweat-specific protein and its application for sweat identification. Int J Leg Med. Discovery of highly specific protein markers for the identification of biological stains. Quantification of mRNA degradation as possible indicator of postmortem interval — a pilot study. Leg Med.
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- The Incas (Peoples of America).
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Multivariate analysis for estimating the age of a bloodstain. Cecchi R. Estimating wound age: looking into the future.
A time-course analysis of mRNA expression during injury healing in human dermal injuries. Detection of epithelial cells in dried bloodstains by reverse transcriptase polymerase chain reaction. Kohlmeier F, Schneider PM. Successful RNA profiling of 23 year old blood stains. Sci Justice. Anal Biochem. Stable mRNA markers for identification of blood and saliva stains revealed from whole genome expression analysis of time-wise degraded samples. Comparative evaluation of different extraction and quantification methods for forensic RNA analysis.
Selection of highly specific and sensitive mRNA biomarkers for the identification of blood. A multiplex m RNA profiling system for the forensic identification of body fluids and contact traces. Development of a mRNA profiling multiplex from the inference of organ tissues. Juusola J, Ballantyne J. Multiplex mRNA profiling for the identification of body fluids.
Bustin SA. Absolute quantification of mRNA using real time reverse transcription polymerase chain reaction assays. J Mol Endocrinol. Evaluation of mRNA marker specificity for the identification of five human body fluids by capillary electrophoresis. Roeder AD, Haas C. Implementation of RNA profiling in forensic casework. Hanson EK, Ballantyne J. Suppl Ser. Forensic Sci Med Pathol.
Determination of an effective housekeeping gene for the quantification of mRNA for forensic applications. Donfack J, Wiley A. Mass spectrometry based cDNA profiling as a potential tool for body fluid identification. Arch Oral Biol.
Highly specific mRNA biomarkers for the identification of vaginal secretions in sexual assault investigations. Expression of statherin mRNA and proteins in nasal and vaginal secretions. The use of bacteria for the identification of vaginal secretions. Detection of bacterial 16S ribosomal RNA genes for forensic identification of vaginal fluid. Molecular identification of vaginal fluid by microbial signature. A simple identification method for vaginal secretions using relative quantification of Lactobacillus DNA.
A new approach to the investigation of sexual offenses-cytoskeleton analysis reveals the origin of cells found on forensic swabs. Efficacy of several candidate protein biomarkers in the differentiation of vaginal from buccal epithelial cells. The development of an mRNA amplification positive control for the identification of body fluids. Can J For Sci J. Transcriptomic analysis of degraded forensic body fluids.
BMC Res Notes. BMC Bioinformatics. Genomics Inform. Identification of novel genes coding for small expressed RNAs. Science ;— Accessed June 3, Identification of forensically relevant body fluids using a panel of differentially expressed microRNAs. Courts C, Madea B. Specific micro-RNA signatures for the detection of saliva and blood in forensic body-fluid identification. Considering the effect of stem-loop reverse transcription and real-time PCR analysis of blood and saliva specific microRNA markers upon mixed body fluid stains.
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An evidence based strategy for normalization of quantitative PCR data from miRNA expression analysis in forensically relevant body fluids. An evidence based strategy for normalization of quantitative PCR data from miRNA expression analysis in forensic organ tissue identification.
Immunohistochemical staining as a potential method for the identification of vaginal epithelial cells in forensic casework. A novel fluorescence-based method in forensic science for the detection of blood in situ.
New RNA methods for the identification of body fluids and cell types. DNA methylation based forensic tissue identification. The determination of tissue-specific DNA methylation patterns in forensic biofluids using bisulfite modification and pyrosequencing. DNA methylation-specific multiplex assays for body fluid identification. Identification of body fluid-specific DNA methylation markers for use in forensic science. Potential forensic applications of DNA methylation profiling to body fluid identification. Identification of spermatozoa by tissue-specific differential DNA methylation using bisulfite modification and pyrosequencing.
Genome wide methylation profiling and a multiplex construction for the identification of body fluids using epigenetic markers. Kader F, Ghai M. DNA methylation and application in forensic sciences. Cross-sectional and longitudinal changes in DNA methylation state with age: an epigenome-wide analysis revealing over 60 novel age-associated CpG sites.