Analysis of cellular autofluorescence in touch samples by flow cytometry: implications for front end separation of trace mixture evidence
Analytical and Bioanalytical Chemistry, 2017
Authors
- YKYe Jin Kwon
- CEChristopher J. Ehrhardt
- SGSusan A. Greenspoon
- CSCristina E. Stanciu
- MPM. Katherine Philpott
- EBEduardo E. Bustamante
Journal
Analytical and Bioanalytical Chemistry
Study Design
Addressed Question
Differentiation of touch DNA cell population by flow cytometry using red autofluorescence
Activity Context
Category
Specifications
Variables of Interest
Stringency of Control
Number of Individuals
7
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
handling of nitrile gloves, plant material, Sharpie marker ink, handwashing or not
Contact Scenario
handwashing - handling of material - (handwashing) - deposition of touch on tube - sampling
Primary Substrate
Primary Substrate Type
plastic conical tube
Primary Substrate Material
Deposit
handling in each hand 5 min
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
direct
Persistence
N/A
Sampling Method
double swabbing (6 wet + 2 dry swabs for tube surface)
Sampling Area
entire tube surface
Laboratory Analysis
Extraction
pelletization of cells, concentration of supernatant and recombination with cells, DNA IQ system following Virginia Department of Forensic Science standard protocols
DNA Quantification
Plexor HY System kit
Input for Profiling
N/A
Profiling
PowerPlex Fusion System kit, ABI 3500xL Genetic Analyzer, GeneMapper IDX v1.4, dye-specific AT, ST: 396 rfu
Reference Samples
taken from both depositors of mixture
Profile Interpretation and Mixture Analysis
comparison to reference profiles and determination of additional alleles
RNA Data Interpretation
N/A
Results
DNA Quantity
<50 pg
Profile Quality
only assessed for mixture: partial, mostly single source profiles for each donor
Parameter Used for Comparison
autofluorescence profile, source of DNA alleles
Summary of Results
red autofluorescence varies to some extent between donors and allows differentiation between cell subpopulations using flow cytometry in selected donor combinations; most likely reason: contact with exogenous substances (esp. Plant material); autofluorescence was used to successfully separate a 1:1-mixture from two donors, all alleles detected in each fraction were consistent with the respective donor (with one additional allele in each case); recovered DNA was low (<50pg) and a high degree of dropout and possible drop-in observed; the unsorted mixture showed several additional alleles, potential source: drop-in artefact, third contributor, transferred extracellular DNA
Raised Questions
inclusion of extracellular DNA in the process: when surface-bound, find method that retains eDNA, when not surface-bound also type not separated mixture (as shown here); improve methods in such a way that maximizes cell yield from sampling swabs/tapes
Cautionary Remarks
method applicable only in selected cases (n.a. how often this would be the case under casework conditions); mixture generated after cell sampling, not in a realistic scenario; no typing of touch samples or hands before generating mixture, thus origin of spurious alleles not determinable; direct sampling only, cells might change behavior after some time