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An optimized procedure for obtaining DNA from fired and unfired ammunition

FSI Genetics, 2015

Study Design

Addressed Question

DNA transfer and recovery of Trace DNA from fired and unfired ammunition

Activity Context

Shooting

Category

PersistencePrimary DepositRecovery

Specifications

ContactDNA ProfilingPersistence with Firing / ExplosionSampling

Variables of Interest

Sampling Methodfiring of arms (casing vs. Cartridge)prior handling

Stringency of Control

Controlled

Number of Individuals

10

Replicates per Individual and Condition

10

Nucleic Acid

DNA

Bodily Origin

skin (hands)

Depositor & Contact

Depositor Characteristics

N/A

Criteria for Shedder Status

N/A

Previous Activities

carrying half of ammunition around for 2 days (no specific protocol)

Contact Scenario

(carrying ammunition around for 2 days) - loading into firearm - either firing or direct unloading - sampling

Primary Substrate

Primary Substrate Type

cartridges: brass-cased full metal jacket flat point American Eagle 9 mm Luger ammunition

Primary Substrate Material

BrassMetal

Deposit

carrying around and loading into ammunition, (firing)

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

Negative (Assumed)Controlled Deposit

Sampling Time

direct

Persistence

firing

Sampling Method

swabbing method (single moist swab: nanopure water) or soaking method (soaking of ammunition in lysis buffer + proteinase K) of all casings/cartridges

Sampling Area

cartridge or casing external surface

Laboratory Analysis

Extraction

BioRobot EZ1, EZ1 DNA Investigator Kit (Qiagen)

DNA Quantification

Quantifiler Human DNA Quantification kit (Thermo Fisher)

Input for Profiling

>50 pg: 0.8 ng or concentration via Savant DNA-100 Speed-Vac and consume of entire extract (10 µl); <50pg: concentration via Savant DNA100 Speed-Vac and consume of entire extract

Profiling

>50 pg: AmpFlSTR Identifiler Plus PCR Amplification kit; <50 pg: Minifiler PCR Amplification kit, 3130 Genetic Analyzer (Thermo Fisher), GeneMapper ID-X versions 1.1.1, threshold: 50/200 rfu (Identifiler Plus kit), 75/450 rfu (Minifiler kit)

Reference Samples

taken from all loaders

Profile Interpretation and Mixture Analysis

determination of the number of reportable alleles, generation of interpretable profiles: SDPD interpretation guidelines based on number of alleles, robustness of profiles and indications of stochastic effects/mixtures

RNA Data Interpretation

N/A

Results

DNA Quantity

>50 pg in 24.1 % of sample

Profile Quality

Interpretable profiles in 27.2 % of samples

Parameter Used for Comparison

number of reportable alleles, generation of interpretable profile (based on number of alleles, resolvability of mixture)

Summary of Results

interpretable DNA profiles detected in 36.3 % of cartridge and 21.8% of casing samples; Firing the weapons reduces successful DNA typing from casing; the soaking sampling method provides better results than the swabbing method; samples that produced results (about 27.2 % of all samples) gave: single source results (45.9%), mixtures (39.9%), no information about number of contributors (14.3%); mixtures are assumed to be derived from secondary/tertiary transfer; In 97.4% of interpretable profiles the loader was detected; In 6 instances (2.6%), the loader was excluded, in one case a profile was consistent with the loader's child; Handling prior to loading increases probability of detecting loader;

Raised Questions

N/A

Cautionary Remarks

not all results shown: e.g. does handling prior to loading increase probability of obtaining mixtures? How often were 2 profiles interpretable in mixtures? How were mixture proportions? Inter- and intraindividual differences?; handling of the ammunition during the two days of carrying varied -> was contact by other individuals excluded? n.s. except for one case (where child was detected); criteria for interpretability of profiles and mixture interpretation approach n.s.