Chapter Four · failure evidence

What Solid-Phase Peptide Extraction got wrong, from 21 dissertations

Solid-phase peptide extraction and purification methods frequently suffer from severe sample loss, unrecoverable matrix binding, and complete loss of detection sensitivity. Inappropriate buffer conditions, direct on-bead digestion, and complex multi-step purification cycles further cause analyte degradation, background contamination, and poor peptide recoveries. These records come from PhD theses at 10 institutions, 2021 to 2026. Each links to its thesis. They were extracted by language models reading the full text, so treat each as a lead to read, not a verdict.

Undetectable signal and low peptide recovery caused by omitted enrichment or reducing agents

3 theses · 3 institutions

Extracting endogenous peptides without targeted enrichment or omitting reducing agents during sample preparation led to concentrations below analytical detection limits and low peptide identification. Nanomaterial solid-phase extraction similarly failed to yield identifiable target peptides or open search hits during modified peptide profiling.

Tried and failed

nanomaterial solid-phase extraction for peptide enrichment applied to S-palmitoylated peptide profiling in cell lysates. Outcome: no signal. Reason: yielded almost no identifiable target peptides and zero hits in open search mode

Novel proteomics approaches to study S-acylation in biomolecular condensate regulation and disease · Imperial

Considered and rejected

Considered and rejected: Solid phase extraction / sample prep for mass spectrometry without any reducing agents was rejected due to resulting in very low peptide detection

Non-Lysine Acyl Modifications and Their Effects on Cellular Function · DukeSpace

Tried and failed

direct peptide extraction without enrichment applied to endogenous low-abundance tissue peptides. Outcome: no signal. Reason: endogenous peptide concentrations were below detection limits without targeted enrichment prior to mass spectrometry

Characterisation of the Apelin Receptor and its Endogenous Ligands, Apelin and Elabela/Toddler in the Cardio-Renal System · Cambridge

Severe target peptide loss and unrecoverable binding during chromatographic separation

3 theses · 2 institutions

Chromatographic purification of dipeptide repeat proteins after solid-phase synthesis failed due to extreme aggregation and insolubility. Reversed-phase HPLC and anion exchange chromatography suffered from severe recovery loss, leaving target amyloidogenic peptides unrecovered or forcing a switch to precipitation.

Tried and failed

solid-phase peptide synthesis and chromatographic purification applied to hydrophobic dipeptide repeat proteins. Reason: extreme insolubility and aggregation prevented purification despite successful chemical synthesis

The Discovery and Chemical Synthesis of Peptides and Proteins that Cross Biological Barriers · MIT

Tried and failed

reversed-phase HPLC peptide purification applied to recombinantly expressed short amyloidogenic peptides. Outcome: no signal. Reason: cleaved peptide could not be detected or recovered from the chromatographic separation

Advances in Instrumentation for Dynamic Nuclear Polarization & Magic-Angle Spinning NMR · MIT

Considered and rejected

Considered and rejected: Rejected DEAE-C anion exchange chromatography for peptide purification due to substantial loss of peptide recovery, replacing it with cold 1:1 Et2O:hexane precipitation before HPLC.

Biosynthetic and Chemical Investigation of Lipid II-Binding Antimicrobials. · DukeSpace

High sample loss and operational complexity across multi-step purification cycles

3 theses · 3 institutions

Subjecting synthetic peptides to multi-step post-purification conjugation or sortagging resulted in low overall yields and complex workflows. Multi-labeling protocols for fluorosequencing and direct peptide copolymerization similarly caused substantial recovery losses across successive purification steps compared to simpler alternatives.

Lost to a baseline

Direct peptide monomer copolymerization yielded only 60% recovery of peptide monomer post-purification compared to near 100% conjugation efficiency in post-functionalization.

Engineering Intravenous Therapies for Trauma · ResearchWorks

Considered and rejected

Considered and rejected: Post-purification chemical conjugation via terminal cysteine or sortase transpeptidation (sortagging) of synthetic phosphorylated peptides was rejected due to complex multi-step purification and poor yields.

A materials-based approach for localized delivery of cancer immunotherapy · MIT

Considered and rejected

Considered and rejected: Rejected standard solution-phase multi-labeling for fluorosequencing due to sample losses during multiple purification cycles

Methods and technology development for bulk and single-molecule proteomics · UT Austin

Impaired peptide recovery and contamination from digestion buffers and on-bead processing

2 theses · 2 institutions

Direct on-bead proteolytic digestion of affinity eluates produced poorly reproducible recoveries alongside high background contamination from released streptavidin fragments. Modifying extraction buffers by adding salt to surfactants likewise substantially reduced overall peptide extraction efficiency.

Tried and failed

adding salt to surfactant extraction buffer applied to protein extraction from FFPE tissue. Outcome: worse than baseline. Reason: substantially reduced peptide recovery efficiency

Enabling Sensitive and Robust Characterization of Protein Therapeutics and Biomarkers in Biomatrices Through Novel LC-MS-Based Strategies · DSpace at SUNY Buffalo

Tried and failed

direct on-bead proteolytic digestion applied to streptavidin affinity purification eluates. Reason: poorly reproducible recovery and high background contamination from released streptavidin peptides

DISSECTING THE FUNCTION AND INTERACTOME OF PLEKHS1 IN PROSTATE TUMORIGENESIS · Cambridge

Left open by the authors

Problems the authors named and did not get to.

Left open

Optimize glycopeptide enrichment, purification, and ionization methods for mass spectrometry-based glycoproteomics analysis. Blocker: Requires wet lab access, chemical reagents, and physical mass spectrometry instruments for sample preparation and ionization

Generating orthogonal glycosyltransferase and nucleotide sugar pairs as next-generation glycobiology tools · Imperial

Left open

Remeasure extraction efficiency by extracting a diluted multianalyte standard using solid-phase extraction and LC-MS. Blocker: Requires access to a wet laboratory, multianalyte chemical standards, SPE cartridges, and a triple quadrupole LC-MS instrument

Tracking antibiotic pollution in urban waterways using solid-phase extraction and triple quadrupole LCMS · UT Austin

Left open

Extend the SMART peptide purification method to complex peptide mixtures and pilot large-scale chromatography manufacturing runs. Blocker: Requires a wet chemistry lab, preparative chromatography equipment, and peptide synthesis/purification materials.

Fundamentals of peptide adsorption in reversed-phase liquid chromatography · Imperial

Left open

Develop a solid-phase aniline derivatization protocol to combine chemical derivatization and extraction into a single step for dissolved organic matter analysis. Blocker: Requires a wet chemistry laboratory, solid-phase extraction materials, and UHPLC-ESI-MS/MS instrumentation.

Molecular characterization of microbial interactions with labile dissolved organic matter · MIT

Left open

Optimize protein purification conditions for SLC25A51 to yield sufficient protein for proteoliposome reconstitution and structural microscopy. Blocker: Requires a wet biochemistry lab, physical reagents, and specialized structural microscopy equipment

Labeled nicotinamide adenine dinucleotide reveals the mechanism of mitochondrial NAD⁺ replenishment · UT Austin

Left open

Compare the analytical performance of the QuEChERS extraction method against solid-phase extraction (SPE) for wastewater surveillance samples. Blocker: Requires a wet chemistry laboratory, chemical reagents, wastewater samples, and analytical instruments (e.g., LC-MS).

Applications of Wastewater Surveillance in a Small-Scale Wastewater System · DalSpace

Left open

Develop molecularly imprinted polymer solid-phase extraction (MIP-SPE) methods to enrich polyphosphonates for compound-specific isotope analysis at low microgram-per-liter concentrations. Blocker: Requires chemical synthesis of molecularly imprinted polymers and physical wet-lab analytical equipment (LC-IRMS)

Manganese–driven oxidation of aminopolyphosphonates studied by compound–specific carbon isotope analysis · Publikationssystem UB Tuebingen

Left open

Develop an extraction and secondary chromatographic method using polar sorbents or anion exchange resins to retain short-chain PFAS analytes. Blocker: Requires an analytical chemistry wet lab, chromatography equipment, and chemical standards.

Evaluating "Forever Chemicals" from Soup to Nuts: Sample Preparation, Targeted Analysis, and Suspect Screening for the Characterization of Per- and Polyfluoroalkyl Substances (PFAS · DSpace at SUNY Buffalo

Left open

Measure anion exchange sorbent affinity for phosphorothioate oligonucleotides, phosphorylated peptides, lipids, and proteins using coated planar nitinol extraction devices. Blocker: Requires a wet chemistry lab, functionalized nitinol substrates, sorbents, and analytical instruments (e.g., LC-MS, fluorescence spectrometers).

Improving bioanalytical methods for nucleic acids with chemically tuned separations · Iowa State

Left open

Conjugate anionic polymers PP50 and PLP-NDA18 with amidated ova30 peptide to overcome electrostatic charge repulsion during delivery. Blocker: Requires chemical synthesis, purification, and wet-lab delivery assay facilities

Bio-inspired pH-responsive polymers for intracellular delivery of macromolecules and cell engineering applications · Imperial

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