Exploring the limits for the survival of DNA in blood stains.
Journal of Forensic and Legal Medicine, 2010
Authors
Journal
Journal of Forensic and Legal Medicine
Study Design
Addressed Question
limits of DNA stability in blood stains under extreme temperature and humidity conditions
Activity Context
Category
Specifications
Variables of Interest
Stringency of Control
Number of Individuals
N/A
Replicates per Individual and Condition
N/A
Nucleic Acid
Bodily Origin
Depositor & Contact
Depositor Characteristics
N/A
Criteria for Shedder Status
N/A
Previous Activities
N/A
Contact Scenario
deposition of stains of filter paper - drying over night - storage under varying conditions - sampling
Primary Substrate
Primary Substrate Type
Whatman filter paper
Primary Substrate Material
Deposit
5µl of human venous blood without additives
Delay
N/A
Secondary Substrate
Secondary Substrate Type
N/A
Secondary Substrate Material
N/A
Secondary Substrate Contact
N/A
Further Transfer
N/A
Sampling
Background DNA on Sampled Surface
Sampling Time
delayed
Persistence
time: 0,2,3,4,6,9,12 months after deposit, temperature: room temperature, 35°C, 45°C, 55°C, 65°C; relative humidity: 50%, 80%, 93%, 100%
Sampling Method
direct extraction from stain
Sampling Area
4x4mm^2 stained pieces of paper
Laboratory Analysis
Extraction
QIAamp DNA Mini kit
DNA Quantification
qPCR of HFE exon 4 on ABI-Prism 7000 SDS instrument
Input for Profiling
N/A
Profiling
PCR of 273 bp segment of HFE exon 4 and a 1600 bp segment of ACP1 exon 4-5, 33 cycles, estimation of amplicon amount on minigels, comparison to size marker
Reference Samples
N/A
Profile Interpretation and Mixture Analysis
N/A
RNA Data Interpretation
N/A
Results
DNA Quantity
N/A
Profile Quality
N/A
Parameter Used for Comparison
amplifiability of both PCR loci (273bp at HFE locus, 1600 bp at ACP1 locus)
Summary of Results
all loci completely amplifiable after up to one year at RT and humidity <100%; reduced survivability of DNA at 100% RH (approx. 2 months for large and 4 months for small fragment); microbial growth only observed at 100% RH at varying time points; stains with microbial growth show little or no survivability; stability of DNA drops significantly at 55° and 65°C; assumed reasons: enzymatic digestion at high humidity, spontaneous hydrolytic and oxidative reactions at high temperatures, endogenous enzymes do not seem to play an important role; extraction efficiency <20%
Raised Questions
N/A
Cautionary Remarks
quantification and amplification method used not the standard methods used in forensic context