In current forensic practice, information about the possible biological origin of forensic traces is mostly determined using protein-based presumptive testing. Recently, messenger RNA-profiling has emerged as an alternative strategy to examine the biological origin. Here we describe the development of a single multiplex mRNA-based system for the discrimination of the most common forensic body fluids as well as skin cells. A DNA/RNA co-isolation protocol was established that results in DNA yields equivalent to our standard in-house validated DNA extraction procedure which uses silica-based columns. An endpoint RT-PCR assay was developed that simultaneously amplifies 19 (m)RNA markers. This multiplex assay analyses three housekeeping, three b...
We report the development of a multiplex reverse transcription-polymerase chain reaction (RT-PCR) me...
Biological material (fluids or tissues) whether from the victim or suspect is often collected as for...
In the present work, we report the development of a multiplex reverse transcription-polymerase chain...
In current forensic practice, information about the possible biological origin of forensic traces is...
The recovery of a DNA profile from the perpetrator or victim in criminal investigations can provide ...
The recovery of a DNA profile from the perpetrator or victim in criminal investigations can provide ...
A DNA profile from the perpetrator does not reveal, per se, the circumstances by which it was transf...
The recovery of a DNA profile from the perpetrator or victim in criminal investigations can provide ...
Conventional methods of body fluid identification use labor-intensive, technologically diverse techn...
A DNA profile from the perpetrator does not reveal, per se, the circumstances by which it was transf...
Examination of crime scene items for biological evidence typically begins with a preliminary screeni...
Forensic RNA analysis is gathering pace with reports of messenger RNA analysis being used in case wo...
Biological traces found at crime scenes can be analyzed to genetically identify the donor(s) but als...
We report the development of a multiplex reverse transcription-polymerase chain reaction (RT-PCR) me...
RNA analysis has become a reliable method of body fluid identification for forensic use. Previously,...
We report the development of a multiplex reverse transcription-polymerase chain reaction (RT-PCR) me...
Biological material (fluids or tissues) whether from the victim or suspect is often collected as for...
In the present work, we report the development of a multiplex reverse transcription-polymerase chain...
In current forensic practice, information about the possible biological origin of forensic traces is...
The recovery of a DNA profile from the perpetrator or victim in criminal investigations can provide ...
The recovery of a DNA profile from the perpetrator or victim in criminal investigations can provide ...
A DNA profile from the perpetrator does not reveal, per se, the circumstances by which it was transf...
The recovery of a DNA profile from the perpetrator or victim in criminal investigations can provide ...
Conventional methods of body fluid identification use labor-intensive, technologically diverse techn...
A DNA profile from the perpetrator does not reveal, per se, the circumstances by which it was transf...
Examination of crime scene items for biological evidence typically begins with a preliminary screeni...
Forensic RNA analysis is gathering pace with reports of messenger RNA analysis being used in case wo...
Biological traces found at crime scenes can be analyzed to genetically identify the donor(s) but als...
We report the development of a multiplex reverse transcription-polymerase chain reaction (RT-PCR) me...
RNA analysis has become a reliable method of body fluid identification for forensic use. Previously,...
We report the development of a multiplex reverse transcription-polymerase chain reaction (RT-PCR) me...
Biological material (fluids or tissues) whether from the victim or suspect is often collected as for...
In the present work, we report the development of a multiplex reverse transcription-polymerase chain...