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Extending the Compatibility of the SP3 Paramagnetic Bead Processing  Approach for Proteomics | Journal of Proteome Research
Extending the Compatibility of the SP3 Paramagnetic Bead Processing Approach for Proteomics | Journal of Proteome Research

Improving Proteome Coverage for Small Sample Amounts: An Advanced Method  for Proteomics Approaches with Low Bacterial Cell Numbers - Blankenburg -  2019 - PROTEOMICS - Wiley Online Library
Improving Proteome Coverage for Small Sample Amounts: An Advanced Method for Proteomics Approaches with Low Bacterial Cell Numbers - Blankenburg - 2019 - PROTEOMICS - Wiley Online Library

Reproducible protein and peptide cleanup for mass spectrometry | Cytiva
Reproducible protein and peptide cleanup for mass spectrometry | Cytiva

Single-pot, solid-phase-enhanced sample preparation for proteomics  experiments | Nature Protocols
Single-pot, solid-phase-enhanced sample preparation for proteomics experiments | Nature Protocols

Frontiers | Evaluation of Sample Preparation Methods for Fast Proteotyping  of Microorganisms by Tandem Mass Spectrometry
Frontiers | Evaluation of Sample Preparation Methods for Fast Proteotyping of Microorganisms by Tandem Mass Spectrometry

Reproducible protein and peptide cleanup for mass spectrometry | Cytiva
Reproducible protein and peptide cleanup for mass spectrometry | Cytiva

SP3 (Single-Pot, Solid-Phase, Sample-Preperation) Protein Extraction for  Dental Calculus
SP3 (Single-Pot, Solid-Phase, Sample-Preperation) Protein Extraction for Dental Calculus

Solvent Precipitation SP3 (SP4) enhances recovery for proteomics sample  preparation without magnetic beads
Solvent Precipitation SP3 (SP4) enhances recovery for proteomics sample preparation without magnetic beads

SP3-based protein sample preparation simplified | PreOmics
SP3-based protein sample preparation simplified | PreOmics

Rahul Samant on X: "As promised, a đŸ§” to convince you to consider SP4 for  your next #proteomics sample prep! TL;DR: Cell lysate -> pure peptides  ready for LC-MS with 20-30 min
Rahul Samant on X: "As promised, a đŸ§” to convince you to consider SP4 for your next #proteomics sample prep! TL;DR: Cell lysate -> pure peptides ready for LC-MS with 20-30 min

Cysteine enrichment with single-pot, solid-phase-enhanced sample... |  Download Scientific Diagram
Cysteine enrichment with single-pot, solid-phase-enhanced sample... | Download Scientific Diagram

Rahul Samant on X: "Deep proteome profiling—TMTsixplex, Lys-C+trypsin  digestion, followed by off-line peptide fractionation into 62  fractions—showed almost identical results for SP3, SP4 (bead-free), and SP4  (+glass beads), WITH ONE NOTABLE EXCEPTION

Rahul Samant on X: "Deep proteome profiling—TMTsixplex, Lys-C+trypsin digestion, followed by off-line peptide fractionation into 62 fractions—showed almost identical results for SP3, SP4 (bead-free), and SP4 (+glass beads), WITH ONE NOTABLE EXCEPTION


Solvent Precipitation SP3 (SP4) enhances recovery for proteomics sample  preparation without magnetic beads | bioRxiv
Solvent Precipitation SP3 (SP4) enhances recovery for proteomics sample preparation without magnetic beads | bioRxiv

Processes | Free Full-Text | Evaluation of Filter, Paramagnetic, and  STAGETips Aided Workflows for Proteome Profiling of Symbiodiniaceae  Dinoflagellate
Processes | Free Full-Text | Evaluation of Filter, Paramagnetic, and STAGETips Aided Workflows for Proteome Profiling of Symbiodiniaceae Dinoflagellate

Multiplexed proteome profiling of carbon source perturbations in two yeast  species with SL-SP3-TMT - ScienceDirect
Multiplexed proteome profiling of carbon source perturbations in two yeast species with SL-SP3-TMT - ScienceDirect

Solvent Precipitation SP3 (SP4) Enhances Recovery for Proteomics Sample  Preparation without Magnetic Beads | Analytical Chemistry
Solvent Precipitation SP3 (SP4) Enhances Recovery for Proteomics Sample Preparation without Magnetic Beads | Analytical Chemistry

SP3-based protein sample preparation simplified | PreOmics
SP3-based protein sample preparation simplified | PreOmics

Automated sample preparation with SP3 for low‐input clinical proteomics |  Molecular Systems Biology
Automated sample preparation with SP3 for low‐input clinical proteomics | Molecular Systems Biology

Implementing solid-phase-enhanced sample preparation for  Co-Immunoprecipitation with Mass Spectrometry for C. elegans | bioRxiv
Implementing solid-phase-enhanced sample preparation for Co-Immunoprecipitation with Mass Spectrometry for C. elegans | bioRxiv

IJMS | Free Full-Text | Bottom-Up Proteomics: Advancements in Sample  Preparation
IJMS | Free Full-Text | Bottom-Up Proteomics: Advancements in Sample Preparation

SP3-Enabled Rapid and High Coverage Chemoproteomic Identification of  Cell-State–Dependent Redox-Sensitive Cysteines - ScienceDirect
SP3-Enabled Rapid and High Coverage Chemoproteomic Identification of Cell-State–Dependent Redox-Sensitive Cysteines - ScienceDirect

SP3 - ultrasensitive, rapid, unbiased and efficient protein purification  suitable for automation
SP3 - ultrasensitive, rapid, unbiased and efficient protein purification suitable for automation

Solvent Precipitation SP3 (SP4) Enhances Recovery for Proteomics Sample  Preparation without Magnetic Beads | Analytical Chemistry
Solvent Precipitation SP3 (SP4) Enhances Recovery for Proteomics Sample Preparation without Magnetic Beads | Analytical Chemistry

SP3 meets iST – protein sample preparation for dirty and difficult sample  matrices simplified
SP3 meets iST – protein sample preparation for dirty and difficult sample matrices simplified

Solvent Precipitation SP3 (SP4) enhances recovery for proteomics sample  preparation without magnetic beads
Solvent Precipitation SP3 (SP4) enhances recovery for proteomics sample preparation without magnetic beads

Frontiers | SP3 Protocol for Proteomic Plant Sample Preparation Prior  LC-MS/MS
Frontiers | SP3 Protocol for Proteomic Plant Sample Preparation Prior LC-MS/MS

Ultrasensitive proteome analysis using paramagnetic bead technology |  Molecular Systems Biology
Ultrasensitive proteome analysis using paramagnetic bead technology | Molecular Systems Biology