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Sample Storage & Stability

Proper storage and handling of avian biological samples is critical to preserving DNA integrity and ensuring accurate test results. This document provides detailed stability data, storage guidelines for each sample type, and recommendations for holding periods before extraction or shipment to SENO.

General Principles of Sample Preservation

DNA degradation begins immediately after sample collection due to active nucleases released from damaged cells. The goal of proper storage is to slow or halt this degradation. Key factors affecting DNA stability include:

  • Temperature — Lower temperatures slow enzymatic degradation
  • Humidity — Moisture promotes microbial growth and nuclease activity
  • Light exposure — UV light causes DNA crosslinking and fragmentation
  • Time — DNA degrades progressively; earlier extraction yields better results
  • pH and chemical environment — Stabilization buffers (FTA cards, swab solutions) preserve DNA chemically

Storage Conditions by Sample Type

Sample TypeShort-Term Storage (< 2 weeks)Long-Term Storage (> 2 weeks)Critical Notes
Freshly plucked feathersRoom temp (15–25°C), dark, dryRoom temp in dark containerAvoid humidity > 60%; mold degrades DNA completely
Blood (EDTA tube)2–8°C (refrigerator)−20°C or −80°CFreeze within 7 days of collection for best recovery
Blood (FTA card, dried)Room temp (15–25°C)Room temp with desiccantStable for years when moisture is excluded
Blood (filter paper spot)Room temp (15–25°C)Room temp with desiccantStable for up to 6 months
Swab in stabilization buffer2–8°C (refrigerator)−20°CBuffer contains nuclease inhibitors
Tissue (post-mortem)2–8°C (refrigerator)−80°CFreeze immediately after collection; avoid freeze-thaw cycles
Semen2–8°C (short term)−80°CRequires specialized cryopreservation buffer

DNA Stability Data (SENO Internal Validation)

SENO has conducted extensive internal validation studies to quantify DNA stability across sample types and storage conditions. The following data represents percentage of intact DNA relative to a freshly extracted reference sample.

Storage ConditionSample TypeStorage DurationDNA Intact (%)PCR Success Rate
Room temp (15–25°C)Feather (freshly plucked)30 days> 90%> 95%
Room temp (15–25°C)Feather (freshly plucked)90 days> 80%> 90%
Room temp (15–25°C)Feather (freshly plucked)180 days> 60%> 75%
Room temp (15–25°C)Blood (FTA card)30 days> 95%> 98%
Room temp (15–25°C)Blood (FTA card)365 days> 90%> 95%
Room temp (15–25°C)Blood (FTA card)5 years> 80%> 85%
4°C (refrigerator)Blood (EDTA)3 days> 98%> 99%
4°C (refrigerator)Blood (EDTA)7 days> 95%> 97%
4°C (refrigerator)Blood (EDTA)14 days> 85%> 90%
−20°C (freezer)Blood (EDTA)6 months> 90%> 95%
−20°C (freezer)Blood (EDTA)2 years> 80%> 90%
−80°C (deep freeze)Tissue1 year> 90%> 95%
−80°C (deep freeze)Tissue2 years> 85%> 92%
Room temp (15–25°C)Swab (stabilized)14 days> 95%> 97%
Room temp (15–25°C)Swab (stabilized)30 days> 85%> 90%
4°C (refrigerator)Swab (stabilized)30 days> 95%> 98%
−20°C (freezer)Swab (stabilized)6 months> 90%> 95%

Key Takeaways from Stability Data

  • FTA cards provide the most robust long-term room-temperature preservation — DNA remains > 80% intact for at least 5 years when stored dry
  • Freshly plucked feathers degrade faster than FTA blood — ship within 2–4 weeks for optimal results
  • EDTA blood degrades significantly after 7 days at 4°C — freeze or extract within the first week
  • Stabilized swab samples maintain excellent integrity for 14 days at room temperature, making them practical for international shipping without cold packs

Temperature and Humidity Tolerances

Sample TypeMin TempMax TempMax HumidityFreeze-Thaw Sensitivity
Feather (envelope)5°C40°C60% RHNot applicable (do not freeze)
Blood (EDTA)2°C25°CN/AHigh — avoid repeated freeze-thaw
Blood (FTA card)−20°C50°C50% RHN/A — do not wet after drying
Swab (stabilized)−20°C35°CN/AModerate — avoid after buffer added
Tissue (frozen)−80°C−20°CN/AVery high — aliquot before freezing

Signs of Sample Degradation

Inspect samples upon receipt or before shipment for the following indicators of compromised DNA quality:

SignSample TypeIndicationRecommended Action
Mold growth (visible spots, musty odor)Feathers, swabs, FTA cardsDNA severely degradedRequest re-collection
Discoloration (dark brown or black)Blood (EDTA)Hemolysis; DNA may be partially degradedExtract immediately or request re-collection
Desiccation (feather shaft cracked, no visible follicle)FeathersFollicle cells lostRe-collect with fresh plucking
Buffer leakage from swab tubeSwabSample may have dried outRequest re-collection
Thawed cold pack in shipmentBlood (EDTA)Temperature abuseCheck for hemolysis; request re-collection if present

Storage Recommendations by Time Until Shipment

Shipment Within 48 Hours

Sample TypeStorageNotes
FeatherRoom temp in paper envelopeNo special requirements
Blood (EDTA)2–8°CDo not freeze
Blood (FTA card)Room tempEnsure dry before packaging
Swab (stabilized)2–8°CCold pack recommended in warm weather

Shipment Within 1–4 Weeks

Sample TypeStorageNotes
FeatherRoom temp in dark, dry placeAcceptable up to 4 weeks
Blood (EDTA)−20°CFreeze after 7 days
Blood (FTA card)Room temp with desiccantStable indefinitely
Swab (stabilized)−20°CFreeze if > 14 days
Tissue−80°CFreeze immediately

Shipment After Extended Holding (> 4 Weeks)

Sample TypeStorageNotes
FeatherRe-collect preferredDNA yield drops > 40% after 4 weeks
Blood (EDTA)−80°CAliquot to avoid freeze-thaw cycles
Blood (FTA card)Room temp with fresh desiccantReplace desiccant every 6 months
Swab (stabilized)−80°CFor long-term biobanking
Tissue−80°C or liquid nitrogenFor indefinite preservation

Effect of Freeze-Thaw Cycles

Repeated freeze-thaw cycles cause mechanical shearing of DNA and activation of residual nucleases. The impact varies by sample type.

Number of Freeze-Thaw CyclesEDTA Blood (4°C/−20°C)Swab (−20°C)Tissue (−80°C)
1Minimal loss (< 5%)Minimal loss (< 5%)Minimal loss (< 3%)
2Moderate loss (10–15%)Moderate loss (10–15%)Low loss (< 8%)
3Significant loss (25–30%)Significant loss (20–25%)Moderate loss (10–15%)
4+Severe loss (> 40%)Severe loss (> 35%)Significant loss (> 20%)

Recommendation: If long-term storage or multiple analyses are anticipated, aliquot samples into single-use volumes before freezing.

Shipping Temperature Requirements

Sample TypeRequired Shipping TemperatureShipment Method
FeathersAmbient (15–25°C)Standard padded envelope
Blood (FTA card)Ambient with desiccantPadded envelope or box
Blood (EDTA), < 7 daysRefrigerated (2–8°C)Insulated box with cold pack
Blood (EDTA), frozenFrozen (−20°C)Insulated box with dry ice (UN3373)
Swab (stabilized), ≤ 48 hAmbient or refrigeratedPadded envelope or box with cold pack
Swab (stabilized), > 48 hFrozen (−20°C)Insulated box with dry ice (UN3373)
Tissue, frozenFrozen (−80°C)Insulated box with dry ice (UN3373)

Packaging Guidelines for Temperature Control

Ambient Shipment (Room Temperature)

  • Suitable for: Feathers, FTA cards, filter paper spots, stabilized swabs (< 48 hours)
  • Use: Paper envelopes inside a padded mailer
  • Avoid: Plastic bags, heat-sealed pouches (traps condensation)

Refrigerated Shipment (2–8°C)

  • Suitable for: EDTA blood (< 7 days), stabilized swabs
  • Use: Insulated box with a double-walled cold pack
  • Key step: Condition cold packs at 4°C (not frozen) for refrigerated, not frozen, transit

Frozen Shipment (−20°C or below)

  • Suitable for: Frozen EDTA blood, frozen swabs, frozen tissue
  • Use: EPS (styrofoam) insulated box with sufficient dry ice
  • Key step: Use ≥ 3 kg dry ice for international shipments; declare as UN3373 (Biological Substance, Category B)

Cross-References