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SMART Digest Kit User Manual

Manuals | 2017 | Thermo Fisher ScientificInstrumentation
Sample Preparation, Consumables
Industries
Pharma & Biopharma, Proteomics , Clinical Research
Manufacturer
Thermo Fisher Scientific

Summary

Significance of the topic


Understanding and controlling the enzymatic digestion of proteins is critical in biopharmaceutical development and proteomics. SMART Digest kits provide a streamlined approach for generating consistent peptides for downstream analysis. Rapid and reproducible digestion accelerates workflows in research, quality control, and high-throughput environments.

Objectives and study overview


The SMART Digest Kit User Manual outlines the design and application of heat-stable enzyme kits optimized for simple, fast, and highly reproducible protein digestion. The manual presents various kit formats (non-magnetic tubes, bulk resins, magnetic beads, and soluble enzymes) to accommodate different workflows and sample complexities.

Used instrumentation


  • Heater/shaker with heated block and lid (70 °C, 1400 RPM)
  • Thermo Scientific DynaMag-96 Side Magnet block (for magnetic bead kits)
  • Thermo Scientific KingFisher Duo Prime or Flex systems (high throughput magnetic bead processing)
  • HyperSep-96 Well Plate Vacuum Manifold and Vacuum Pump (filter and SPE cleanup)
  • UHPLC and MS systems for peptide quantification

Methodology


  • Sample preparation: Add SMART Digest buffer (150 µL) and sample (50 µL) into digestion vessel to a final volume of 200 µL.
  • Digestion: Incubate at 70 °C with shaking at 1400 RPM for optimized times (typically <5 minutes for simple proteins, up to 240 minutes for complex targets).
  • Cleanup: Select post-digestion processing based on matrix complexity:
    • Low complexity: Centrifugation and direct collection of supernatant.
    • Medium complexity: Vacuum filtration through filter plates.
    • High complexity: SOLAµ SPE plate cleanup with conditioning, equilibration, loading, washing, and elution steps.
  • Optimization: Perform time-course digestions and monitor peptide profiles to determine completion, using disappearance of intact protein and stable peptide peaks as indicators.

Main results and discussion


Time-course experiments demonstrate complete digestion of model proteins such as carbonic anhydrase within 5 minutes. Recommended digestion times vary by protein:
  • Insulin and lysozyme: 4–5 minutes
  • IgG: 45 minutes; IgG in plasma: 75 minutes
  • High molecular weight or aggregated proteins (e.g., thyroglobulin): up to 240 minutes
High-temperature digestion simultaneously unfolds proteins and cleaves peptides, reducing the need for separate denaturation and chemical modification steps in many workflows.

Benefits and practical applications


  • Rapid and reproducible digestion across diverse protein targets
  • Simplified workflow without mandatory reduction and alkylation
  • Compatibility with high-throughput automation (KingFisher, magnetic bead handling)
  • Flexible cleanup options to match sample complexity
  • Seamless integration with downstream LC-MS and UHPLC workflows for peptide mapping and quantification

Future trends and applications


Advances in UHPLC, mass spectrometry, and informatics are enabling end-to-end biopharmaceutical characterization platforms. Integration of SMART Digest kits with automated liquid handlers, high-resolution MS systems (Q Exactive BioPharma), and data analysis software (BioPharma Finder) will facilitate 100% sequence coverage, precise quantitation of post-translational modifications, and streamlined comparability studies.

Conclusion


SMART Digest kits offer a robust solution for efficient protein digestion in proteomic and biopharmaceutical workflows. Their heat-stable enzymes, customizable formats, and streamlined cleanup options improve throughput and reproducibility, supporting diverse analytical applications from peptide mapping to intact protein analysis.

Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.

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