Chapter Four · failure evidence

What Peptide Synthesis & Modification got wrong, from 54 dissertations

The records document recurring synthetic and biophysical bottlenecks encountered across peptide synthesis, modification, and functionalization pipelines. Failures predominantly stem from chemical coupling inefficiencies, severe aggregation of hydrophobic sequences, sterically crowded bioconjugations, and rapid degradation in biological media. These records come from PhD theses at 18 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.

Peptide chain assembly fails due to coupling inefficiencies, epimerization, and protecting group side reactions

12 theses · 10 institutions

Solid and liquid phase peptide synthesis routes frequently suffered from incomplete amino acid couplings, chiral center epimerization, and intermediate degradation during activation. Synthetic pathways also failed due to premature diketopiperazine cleavage during deprotection and the poor solubility or cleavage efficiency of protecting groups.

Tried and failed

Solid-phase synthesis of non-canonical amino acid sequences applied to fluorogenic peptide probe synthesis. Outcome: unstable. Reason: Phenylglycine suffered backbone epimerization during coupling and acetylserine ester bonds degraded during synthesis

Serine hydrolases in pancreatic cancer: target validation using activity-based protein profiling · Imperial

Tried and failed

liquid-phase peptide synthesis using organic soluble supports applied to liraglutide dipeptide intermediate synthesis. Outcome: unstable. Reason: severe diketopiperazine cleavage during Fmoc deprotection leaving under 20 percent intact support-bound peptide

Liquid phase peptide synthesis via nanostar sieving · Imperial

Lost to a baseline

Synthesis of (Ala)7-lugdunin using 2-Cl-Trt resin gave incomplete coupling of thiazolidine dipeptide 2.19, yielding inseparable five-mer byproduct 3.6 alongside product 1.25

Design and synthesis of lugdunin analogues as macrocyclic peptide antibiotics · University of Nottingham Repository

Considered and rejected

Considered and rejected: Rejected direct solid-phase synthesis of the entire 8-mer AdeFFFGRGDS in-house due to high impurities and low yields, opting instead to purchase resin-bound peptide precursor.

Biological buffer-mediated self-assembly of modular nucleo-peptide hydrogels for tissue engineering applications · UT Austin

Considered and rejected

Considered and rejected: Solid-phase peptide synthesis (SPPS) route for azapeptide inhibitors was abandoned due to low coupling yields for Fmoc-hydrazide and Alloc protection.

Development of Chemical Tools to Investigate Colibactin, a Genotoxin from the Human Microbiota · Harvard

Considered and rejected

Considered and rejected: Rejected solid-phase peptide synthesis route to Ac-Cav-NH2 (Rink amide resin loading with PyBOP, N-acylation, TFA/TIPS cleavage) due to lack of success.

Guanidinium Compounds: Synthesis, Oxoanion Binding, and Cellular Delivery · MIT

Considered and rejected

Considered and rejected: Rejected candidate peptide pep_20904 after chemical peptide synthesis failed.

Early Viral Suppression and the Antibody Response to HIV Infection in HPTN 071 (PopART) · JScholarship

Considered and rejected

Considered and rejected: Discontinued direct Boc protection of blasticidin S (5.1) followed by peptide coupling for the synthesis of carboxylate hybrids due to low protection yields (50-60%) and poor subsequent peptide coupling yields (~20%).

Semisynthetic Development of Blasticidin S as an Antibiotic Lead and Development of Other Anti-Infectives · Virginia Tech

Considered and rejected

Considered and rejected: Rejected batch liquid-phase peptide coupling for Myxovalargin fragment A due to severe epimerization of alanine at position 2, switching to SPS.

Synthesis of an oligopeptide library · Leibniz Universität Hannover Repository

Lost to a baseline

Ligation with 1.0 equiv Zn2+ and thioglycolic acid yielded only 21% peptide, whereas 3-mercaptopropionic acid yielded ~61% peptide.

Prebiotic photoreduction and polymerization of cysteinyl peptides. · IRIS - UNITN - prod

Tried and failed

increasing intermediate activation residence time in flow applied to continuous flow peptide coupling. Outcome: worse than baseline. Reason: prolonged activation time leads to intermediate degradation before coupling

Straightforward, scalable, solution-phase synthesis of peptide bonds in flow. · Cambridge

Considered and rejected

Considered and rejected: Rejected enzymatically cleavable phenylacetyl (Pac) protecting group strategy due to low aqueous solubility and poor deprotection efficiency of fluorophore-conjugated peptides.

A DNA DAMAGE-INDUCED NONENZYMATIC HISTONE POSTTRANSLATIONAL MODIFICATION: FORMATION IN CELLS AND BIOCHEMICAL EFFECTS · JScholarship

High peptide conjugation density triggers scaffold aggregation and steric hindrance

7 theses · 2 institutions

Attaching peptides to nanoparticles, antibodies, or protein assemblies at high densities caused irreversible precipitation and particle aggregation. Overcrowded surface functionalization also sterically hindered enzymatic cleavage, blocked downstream ligation, and diminished target receptor binding affinity.

Tried and failed

direct mixing for nanoparticle surface immobilization applied to supramolecular peptide nanostructures. Outcome: unstable. Reason: nanoparticles aggregated rather than forming a homogeneous immobilized layer

Self-assembled molecular nanomaterials and their applications · MIT

Tried and failed

high-density multivalent peptide-ligand surface conjugation applied to protein nanoparticle surfaces. Outcome: unstable. Reason: high-density multivalent installation of hydrophobic peptide and sugar ligands caused severe protein aggregation and precipitation

Protein Nanoparticles For Applications In Chemical Biology And Immunology · Georgia Tech

Tried and failed

Conjugating cell-penetrating peptides to protein nanoparticles applied to virus-like particles. Outcome: unstable. Reason: Caused irreversible aggregation across all tested peptide densities

Protein Nanoparticles For Applications In Chemical Biology And Immunology · Georgia Tech

Tried and failed

electrostatic adsorption of small highly charged peptides applied to layer-by-layer core-shell nanoparticles. Outcome: unstable. Reason: low layering ratios of small charged peptides induced particle bridging and aggregation

Peptide-Functionalized Layer-by-Layer Nanoparticles Demonstrate Improved Blood Brain Barrier Permeability for Glioblastoma Treatment · MIT

Tried and failed

increasing peptide-to-antibody conjugation ratio applied to antibody-targeted sensor delivery. Outcome: worse than baseline. Reason: higher labeling stoichiometries compromised antibody binding affinity to its target receptor

ENGINEERED ACTIVITY SENSORS FOR PREDICTIVE IMMUNE MONITORING · Georgia Tech

Tried and failed

direct conjugation to gold nanoparticle surfaces applied to pH-responsive peptide-oligonucleotide duplex release. Outcome: worse than baseline. Reason: peptide adsorption to the gold surface hindered pH-triggered strand release

Rational Design of a Modular Endosomal Escape Platform to Improve Cytosolic Delivery of Nucleic Acids · Georgia Tech

Considered and rejected

Considered and rejected: Rejected peptide-to-antibody conjugation stoichiometry above 1:1 due to loss of antibody binding affinity to PD-1

ENGINEERED ACTIVITY SENSORS FOR PREDICTIVE IMMUNE MONITORING · Georgia Tech

Tried and failed

multi-site bioconjugation prior to protein ligation applied to antigen display on nanoparticle scaffolds. Reason: steric hindrance from dual PEGylation prevented SpyTag-SpyCatcher isopeptide bond formation

Design and Characterization of Modified Lytic Enzymes and Nanoparticle-Based Vaccines to Combat S. aureus · Georgia Tech

Considered and rejected

Considered and rejected: Rejected high peptide-to-nanoparticle valencies (>44 peptides/NP, up to 197), which caused steric overcrowding that decreased initial cleavage velocities.

Logic-gated activity sensors for programmable detection of antitumor immunity · Georgia Tech

Chemical bioconjugations fail from insufficient functional group reactivity and unmasked reactive groups

7 theses · 5 institutions

Intermolecular coupling reactions between peptides and functional partners were often prevented by poor intrinsic nucleophilicity, lack of copper catalysis, or absence of proximity activation. Conjugation efforts were further compromised by spontaneous thiol oxidation and self-alkylative decomposition of unprotected electrophilic linkers.

Tried and failed

solution-phase peptide coupling with electrophilic linkers applied to functionalized peptide chimera synthesis. Reason: cysteine oxidation and low methacrylamide reactivity caused very low yields

A Complete Pipeline for the Discovery and Development of Haptenizing Chimeras at Scale · Harvard

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

Tried and failed

electrophilic peptide coupling without proximity-induced activation applied to intermolecular peptide bioconjugation. Outcome: no signal. Reason: lack of proximity-driven rate enhancement or sufficient intrinsic electrophile-nucleophile reactivity between non-templated peptides

Reactive Peptides for Site-Selective Cysteine and Lysine Bioconjugation · MIT

Tried and failed

uncatalyzed azide-alkyne conjugation for biopolymer surface immobilization applied to gold nanoparticle peptide functionalization. Outcome: no signal. Reason: Lack of copper catalyst prevented covalent triazole formation and surface PEGylation resisted non-specific peptide physisorption

Synthesis of model nanoparticle-peptide conjugates and development of an electrochemical strategy to regulate microdroplet pH in microfluidics · UT Austin

Tried and failed

peptide sequence screening for enhanced nucleophilic reactivity applied to lysine bioconjugation with ester electrophiles. Outcome: no signal. Reason: selected sequence motifs failed to enhance nucleophilic reactivity over background control peptides

Reactive Peptides for Site-Selective Cysteine and Lysine Bioconjugation · MIT

Tried and failed

in vitro enzymatic peptide modification with cofactor applied to precursor peptide substrate. Outcome: no signal. Reason: enzyme incubation with cofactor produced no detectable structural modifications in the target peptide

Methanobactin biosynthesis and redox activity · Iowa State

Tried and failed

peptide drug-linker conjugation without reactive group protection applied to antibody-drug conjugate synthesis. Outcome: unstable. Reason: unmasked electrophilic spiro-epoxide underwent self-alkylative decomposition, destabilizing drug-to-antibody ratio

Design, Synthesis, and Application of a Rapidly Diversifiable Trioxacarcin Pharmacophore in Antibody-Drug Conjugates · Harvard

Excessive hydrophobicity drives peptide insolubility and aggregation during synthesis and purification

6 theses · 4 institutions

Hydrophobic peptide sequences and aromatic motifs suffered from severe aggregation that restricted synthesis yields on standard resins and caused irreversible column binding during chromatography. Imbalances in hydrophobic interactions similarly caused pre-assembled building blocks to precipitate out of synthesis solvents or form amorphous solids instead of ordered assemblies.

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

increasing aromaticity without balancing hydrophilic interactions applied to peptide biomolecular condensate formation. Outcome: unstable. Reason: excessive hydrophobic and pi-stacking interactions drove solid precipitation rather than liquid phase separation

Atomistic Insights into Disordered Proteins and Condensates via Molecular Simulations · MIT

Tried and failed

self-interaction chromatography on immobilised microcolumns applied to peptide therapeutics under acidic conditions. Reason: instantaneous formation of large peptide aggregates blocked the column under fed-state gastric pH

Determining the gastrointestinal stability of peptide therapeutics via chromatographic methods · Imperial

Considered and rejected

Considered and rejected: Polystyrene-based resin for hydrophobic TM peptide synthesis, rejected due to severe peptide aggregation (<30% crude yield) in favor of ChemMatrix PEG resin

Structure-Based Design of Inhibitors Targeting Influenza A Virus M2 Proton Channel (A/M2) · Penn

Considered and rejected

Considered and rejected: Rejected synthesis via pre-assembled thiazolidine dipeptide building blocks on 2-Cl-Trt resin due to severe insolubility of dipeptides in SPPS solvents

Design and synthesis of lugdunin analogues as macrocyclic peptide antibiotics · University of Nottingham Repository

Considered and rejected

Considered and rejected: Phenomenex Gemini NX-C18 prep-HPLC column was replaced by Phenomenex Jupiter Proteo column because large peptides bound irreversibly/stuck to the stationary phase, lowering yield.

Design considerations of BMP-2 mimicking peptide immobilized scaffolds for use in bone tissue engineering · Imperial

Unconstrained linear designs suffer from conformational instability and loss of target binding affinity

6 theses · 6 institutions

Linear peptide analogues and isolated binding fragments lacked the secondary structure stabilization required to maintain active helical conformations. Without conformational constraints, proper linkers, or disulfide folding, these peptides exhibited non-specific binding and severe loss of target affinity.

Tried and failed

isolated peptide fragments from computational binding interface applied to target protein binding affinity assay. Outcome: no signal. Reason: peptides lacked structural scaffold stabilization required to maintain the bound helical conformation

De novo designed proteins: a study in engineering novel folds and functions · EPFL

Tried and failed

peptide tag display lacking flexible linker applied to bacteriophage capsid surface functionalization. Outcome: worse than baseline. Reason: absence of a flexible linker impaired peptide tag accessibility and binding to target substrate

A STUDY OF TAILED PHAGES AND PHAGE BIOLOGY TO EMPOWER ACCESSIBILITY OF PHAGE-BASED TECHNOLOGIES FOR APPLICATIONS IN FOOD AND WATER SAFETY · Cornell

Tried and failed

linear peptide analogue synthesis applied to protein-protein interaction target binding. Outcome: no signal. Reason: loss of conformational constraint led to complete loss of affinity and non-specific binding

Macrocyclic peptide ligands and probes for CD59: modulators of innate immunity · Imperial

Considered and rejected

Considered and rejected: Abandoned peptide-ELISA for 5HT2RB interaction screening because linear peptides failed to mimic the native extracellular loop conformation and exhibited non-specific binding.

Structural studies of BK and JC Polyomavirus interactions with their receptors · Publikationssystem UB Tuebingen

Lost to a baseline

Native oxo-amide carboxylate peptide QVARQLAEIY-OH was a random coil lacking structure by circular dichroism, whereas the amidine derivative QVARQLANHEIY-OH formed an intra-strand salt bridge that stabilized helical structure.

Peptide backbone modifications made accessible by the synthetic development of thioimidates · Iowa State

Considered and rejected

Considered and rejected: Linear peptide synthesis with acetamidomethyl-protected cysteines without disulfide folding, abandoned due to lack of antimicrobial activity against B. hyodysenteriae and ETEC F4

On the discovery and biological characterization of porcine β-Defensin 5 (pBD-5) · HARVEST

Peptide macrocyclization and stapling suffer from strain-induced side products and low yields

4 theses · 3 institutions

Attempts to constrain peptides via cyclization or stapling were frequently thwarted by conformational strain and suboptimal spacing between reactive residues. These geometric limitations favored the formation of acyclic mono-adducts and cyclic dimers, resulting in substantially reduced yields of target cyclic peptides.

Considered and rejected

Considered and rejected: 25-residue stapled peptides were rejected/failed due to excessive distance and flexibility between the Asp and Lys side chains, leading to adoption of a truncated 16-residue stapled construct lacking the intervening beta-sheet.

Histidine ligated Iron-Sulfur Proteins and Peptides · IRIS - UNITN - prod

Tried and failed

Bifunctional thiol alkylation for peptide staple macrocyclization applied to collagen-mimetic peptide duplexes. Reason: Formed acyclic thioether adducts instead of intramolecularly crosslinking terminal cysteines

Damaged Collagen Detection and A Novel Approach to 1,3-Dipolar Cycloaddition Reactivity: Research at the Interface of Chemistry and Biology · MIT

Tried and failed

cyclative release via intramolecular disulfide exchange applied to short solid-phase macrocyclic peptides. Outcome: worse than baseline. Reason: conformational strain led to low recovery and high cyclic dimer formation in short sequences

Methods for the generation of large combinatorial macrocycle libraries · EPFL

Lost to a baseline

Cyclative release strategy yielded short dithiol peptides in 10- to 100-fold smaller quantities compared to reductive release by BDT.

Methods for high-throughput synthesis and screening of peptide libraries · EPFL

Peptide linkers and therapeutic sequences undergo rapid degradation and off-target cleavage in serum

4 theses · 3 institutions

Cleavable peptide-drug linkers and de novo delivery peptides exhibited severe instability in biological media due to rapid disulfide exchange with serum proteins and cleavage by off-target proteases. Single-point sequence modifications such as enantiomeric substitutions were insufficient to prevent rapid peptide degradation in serum.

Tried and failed

deep generative optimization of peptide sequences applied to nuclear targeting delivery peptides. Outcome: unstable. Reason: the computationally designed lead peptide degraded rapidly in solution

Design of Nuclear-Targeting Peptides for Macromolecule Delivery via Machine Learning · MIT

Tried and failed

protease-specific peptide linker for targeted cleavage applied to cleavable drug conjugates in mouse serum. Reason: off-target serum proteases cleave the linker despite specific protease inhibitor presence

Alternative Antimicrobial Agents Against Multidrug-Resistant Gram-Negative Bacteria · Cornell

Tried and failed

cysteine disulfide linker for drug conjugation applied to peptide-drug conjugates in human serum. Outcome: unstable. Reason: rapid disulfide exchange with serum proteins caused complete conjugate degradation within one hour

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

Tried and failed

single-point peptide modifications for serum stability applied to antimicrobial peptide serum activity retention. Outcome: did not generalise. Reason: individual enantiomeric substitution or non-natural amino acid addition alone was insufficient to preserve bactericidal activity in serum

The use and production of protein biologics against and by gram-negative bacteria · UT Austin

Automated and miniaturized synthesis platforms fail due to mechanical clogging and reagent cross-contamination

3 theses · 2 institutions

Operating peptide synthesis in automated continuous flow setups or high-density microplates caused substantial fluidic and operational failures. Resin fine particulates generated excessive backpressure that clogged flow systems, while automated multi-well liquid dispensing caused reagent splashing and lowered overall peptide purity.

Tried and failed

automated continuous flow peptide synthesis on solid support applied to long polypeptide chain synthesis. Reason: resin generated fine particulates causing excessive backpressure and fluidic clogging in the synthesizer

Experimental and Computational Advancements in Peptidomimetic Ligand Discovery · MIT

Tried and failed

automated multichannel liquid dispensing during solid-phase synthesis applied to high-throughput 384-well peptide synthesis. Reason: reagent splashing outside target wells during bulk deprotection caused synthesis failures and cross-contamination

Discovery of macrocyclic inhibitors of challenging protein-protein interactions · EPFL

Lost to a baseline

Peptides synthesized in 384-well plates had slightly lower average purity (82 ± 6.1%) than reference 96-well plate synthesis (87 ± 5.9%).

Development of methods for the synthesis of large combinatorial libraries of macrocyclic compounds · EPFL

Left open by the authors

Problems the authors named and did not get to.

Left open

Integrate DNA nanotechnology design principles into self-assembling peptide sequences to improve reliability of gold nanoparticle superstructure synthesis. Blocker: Requires wet-lab chemical synthesis of peptides and experimental validation of nanoparticle assembly.

Gold Nanoparticles Guided by Self‐Assembling Peptides: From Sequence to Superstructure · Cambridge

Left open

Optimize peptide-conjugated microparticle formulation to prevent flow-induced particle clumping and aggregation under shear conditions. Blocker: Requires wet lab facilities, chemical reagents, microparticle fabrication, and microfluidic/flow assays

Platelet-inspired microparticles for targeted drug delivery to the atherosclerotic plaque · Imperial

Left open

Test whether longer-chain peptides form cocrystals with monomer amino acids to enhance crystallisability. Blocker: Requires wet lab facilities for peptide synthesis, crystallization, and XRD/HPLC analysis

Crystallisation studies of glycine-based dipeptides: sequence-dependent solubility, cocrystal formation, and kinetics · Imperial

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

Left open

Synthesize and test the charged peptide sequence AdeFFFGRGES to determine whether nucleopeptide hydrogel serum stability is electrostatic or sequence-specific. Blocker: Requires wet lab facilities for solid-phase peptide synthesis and serum stability assays

Biological buffer-mediated self-assembly of modular nucleo-peptide hydrogels for tissue engineering applications · UT Austin

Left open

Synthesize and evaluate artificial collagen peptides exhibiting thermostability modulated by their phosphorylation state. Blocker: Requires wet lab facilities for peptide synthesis and biophysical characterization of thermostability

Collagen-mimetic peptides for diagnosis and analysis · MIT

Left open

Investigate cooperative uptake activities of mixed peptides from combinatorial libraries using in-cell penetration selection-mass spectrometry. Blocker: Requires chemical synthesis of peptide libraries and live-cell penetration selection assays with mass spectrometry

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

Left open

Incorporate pre-coupled monomer 18 into the BAK peptide sequence via solid-phase peptide synthesis to generate hybrid mimetic 1. Blocker: Requires a chemistry wet lab and peptide synthesis (SPPS) equipment/reagents.

Target-directed synthesis of protein-protein interaction inhibitors · Imperial

Left open

Develop stimuli-responsive drug delivery systems combining biodegradable shape-memory microparticles and pH-selective polypeptide resins for programmable release profiles. Blocker: Requires wet lab, 3D printing equipment (mSLA/TPP), and specialized chemical synthesis of biomaterials

3D printed stimuli-responsive biomaterials for programmable drug delivery · Imperial

Left open

Improve the reproducibility, scalability, and physiological stability of peptide-templated gold nanoparticle assemblies. Blocker: Requires wet lab facilities for peptide synthesis, nanoparticle characterization, and physiological stability assays

Gold Nanoparticles Guided by Self‐Assembling Peptides: From Sequence to Superstructure · Cambridge

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