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1.
ACS Polym Au ; 2(6): 478-485, 2022 Dec 14.
Article in English | MEDLINE | ID: mdl-36536888

ABSTRACT

Glycopeptide supramolecular polymers displaying multivalent carbohydrates are particularly suitable for immune-relevant biomaterials, due to the important functions of carbohydrates in mediating cell-cell communication and modulating immune responses. However, the diversity and complexity of carbohydrates limited the generation of glycopeptide supramolecular monomers. Thereby, a modular platform of presenting various carbohydrates, especially more complex oligosaccharides, is highly desirable but remains underexplored. Here, we first prepared the linear amphiphilic glycopeptides that self-assembled into spherical nanoparticles and worm-like nanoparticles. Furthermore, the dendritic glycopeptides that self-assembled into uniform nanorods were designed to generate modular supramolecular polymers with variable functionality, via redesigning the molecular backbone. With various functional oligosaccharide-modified supramolecular polymers, the in vitro studies further indicated that these polymers were not cytotoxic to macrophages, and significantly modulated the production of proinflammatory cytokines. These findings provide a promising platform to develop supramolecular glycopeptide biomaterials with potential applications in immunomodulation and immunotherapy.

2.
Adv Sci (Weinh) ; 8(10): 2004574, 2021 05.
Article in English | MEDLINE | ID: mdl-34026453

ABSTRACT

Tumor-associated macrophages (TAMs) promote the immune suppressive microenvironment inside tumors and are, therefore, considered as a promising target for the next generation of cancer immunotherapies. To repolarize their phenotype into a tumoricidal state, the Toll-like receptor 7/8 agonist imidazoquinoline IMDQ is site-specifically and quantitatively coupled to single chain antibody fragments, so-called nanobodies, targeting the macrophage mannose receptor (MMR) on TAMs. Intravenous injection of these conjugates result in a tumor- and cell-specific delivery of IMDQ into MMRhigh TAMs, causing a significant decline in tumor growth. This is accompanied by a repolarization of TAMs towards a pro-inflammatory phenotype and an increase in anti-tumor T cell responses. Therefore, the therapeutic benefit of such nanobody-drug conjugates may pave the road towards effective macrophage re-educating cancer immunotherapies.


Subject(s)
Imidazoles/chemistry , Lung Neoplasms/drug therapy , Mannose Receptor/immunology , Quinolines/chemistry , Single-Domain Antibodies/immunology , Tumor-Associated Macrophages/immunology , Animals , Disease Models, Animal , Lung Neoplasms/immunology , Lung Neoplasms/pathology , Membrane Glycoproteins/agonists , Mice, Inbred C57BL , Mice, Knockout , Single-Domain Antibodies/chemistry , Single-Domain Antibodies/pharmacology , Toll-Like Receptor 6/agonists , Toll-Like Receptor 7/agonists , Tumor Microenvironment
3.
Beilstein J Org Chem ; 17: 97-104, 2021.
Article in English | MEDLINE | ID: mdl-33519996

ABSTRACT

The synthesis of a sulfate-modified dendritic peptide amphiphile and its self-assembly into one-dimensional rod-like architectures in aqueous medium is reported. The influence of the ionic strength on the supramolecular polymerization was probed via circular dichroism spectroscopy and cryogenic transmission electron microscopy. Physiological salt concentrations efficiently screen the charges of the dendritic building block equipped with eight sulfate groups and trigger the formation of rigid supramolecular polymers. Since multivalent sulfated supramolecular structures mimic naturally occurring L-selectin ligands, the corresponding affinity was evaluated using a competitive SPR binding assay and benchmarked to an ethylene glycol-decorated supramolecular polymer.

4.
Macromol Rapid Commun ; 41(1): e1900476, 2020 Jan.
Article in English | MEDLINE | ID: mdl-31682046

ABSTRACT

A multistimuli-responsive supramolecular copolymerization is reported. The copolymerization is driven by hydrogen bond encoded ß-sheet-based charge co-assembly into 1D nanorods in water, using glutamic acid or lysine residues in either of the peptide comonomers. The incorporation of methionine as hydrophobic amino acid supports ß-sheet formation, but oxidation of the thioether side-chain to a sulfoxide functional group destabilizes the ß-sheet ordered domains and induces disassembly of the supramolecular polymers. Using H2 O2 as reactive oxygen species, the time scale and kinetics of the oxidative disassembly are probed. Compared to the charge neutral homopolymers, it is found that the oxidative disassembly of the charged ampholytic copolymers is up to two times faster and is operative at neutral pH. The strategy is therefore an important addition to the growing field of amphiphilic polythioether containing (macro)molecular building blocks, particularly in view of tuning their oxidation induced disassembly which tends to be notoriously slow and requires high concentrations of reactive oxygen species or acidic reaction media.


Subject(s)
Macromolecular Substances/chemistry , Polymers/chemistry , Amino Acids/chemistry , Hydrogen Bonding , Hydrogen-Ion Concentration , Nanotubes/chemistry , Oxidation-Reduction , Peptides/chemistry , Protein Conformation, beta-Strand , Reactive Oxygen Species/chemistry
5.
Chembiochem ; 2018 Apr 06.
Article in English | MEDLINE | ID: mdl-29633523

ABSTRACT

The endothelial glycoprotein MUC1 is known to underlie alterations in cancer by means of aberrant glycosylation accompanied by changes in morphology. The heavily shortened glycans induce a collapse of the peptide backbone and enable accessibility of the latter to immune cells, rendering it a tumor-associated antigen. Synthetic vaccines based on MUC1 tandem repeat motifs, comprising tumor-associated 2,3-sialyl-T antigen, conjugated to the immunostimulating tetanus toxoid, are reported herein. Immunization with these vaccines in a simple water/oil emulsion produced a strong immune response in mice to which stimulation with complete Freund's adjuvant (CFA) was not superior. In both cases, high levels of IgG1 and IgG2a/b were induced in C57BL/6 mice. Additional glycosylation in the immunodominant PDTRP domain led to improved binding of the induced antisera to MCF-7 breast tumor cells, compared with that of the monoglycosylated peptide vaccine.

6.
Chembiochem ; 19(9): 912-916, 2018 05 04.
Article in English | MEDLINE | ID: mdl-29486092

ABSTRACT

A modular route to prepare functional self-assembling dendritic peptide amphiphiles decorated with mannosides, to effectively target antigen-presenting cells, such as macrophages, is reported. The monomeric building blocks were equipped with tetra(ethylene glycol)s (TEGs) or labeled with a Cy3 fluorescent probe. Experiments on the uptake of the multifunctional supramolecular particles into murine macrophages (Mφs) were monitored by confocal microscopy and fluorescence-activated cell sorting. Mannose-decorated supramolecular polymers trigger a significantly higher cellular uptake and distribution, relative to TEG carrying bare polymers. No cytotoxicity or negative impact on cytokine production of the treated Mφs was observed, which emphasized their biocompatibility. The modular nature of the multicomponent supramolecular polymer coassembly protocol is a promising platform to develop fully synthetic multifunctional vaccines, for example, in cancer immunotherapy.


Subject(s)
Antigen-Presenting Cells/metabolism , Dendrimers/metabolism , Mannosides/metabolism , Peptides/metabolism , Surface-Active Agents/metabolism , Animals , Biological Transport , Carbocyanines/chemistry , Carbocyanines/metabolism , Cells, Cultured , Dendrimers/chemistry , Fluorescent Dyes/chemistry , Fluorescent Dyes/metabolism , Macrophages/metabolism , Mannosides/chemistry , Mice , Microscopy, Confocal , Models, Molecular , Peptides/chemistry , Polyethylene Glycols/chemistry , Polyethylene Glycols/metabolism , Surface-Active Agents/chemistry
7.
Angew Chem Int Ed Engl ; 56(48): 15461-15465, 2017 11 27.
Article in English | MEDLINE | ID: mdl-29044991

ABSTRACT

A multistimuli-responsive transient supramolecular polymerization of ß-sheet-encoded dendritic peptide monomers in water is presented. The amphiphiles, which contain glutamic acid and methionine, undergo a glucose oxidase catalyzed, glucose-fueled transient hydrogelation in response to an interplay of pH and oxidation stimuli, promoted by the production of reactive oxygen species (ROS). Adjusting the enzyme and glucose concentration allows tuning of the assembly and the disassembly rates of the supramolecular polymers, which dictate the stiffness and transient stability of the hydrogels. The incorporation of triethylene glycol chains introduces thermoresponsive properties to the materials. We further show that repair enzymes are able to reverse the oxidative damage in the methionine-based thioether side chains. Since ROS play an important role in signal transduction cascades, our strategy offers great potential for applications of these dynamic biomaterials in redox microenvironments.

8.
Faraday Discuss ; 204: 53-67, 2017 10 26.
Article in English | MEDLINE | ID: mdl-28766626

ABSTRACT

We report the sequential growth of supramolecular copolymers on gold surfaces, using oppositely charged dendritic peptide amphiphiles. By including water-solubilising thermoresponsive chains in the monomer design, we observed non-linear effects in the temperature-dependent sequential growth. The step-wise copolymerisation process is characterised using temperature dependent SPR and QCM-D measurements. At higher temperatures, dehydration of peripheral oligoethylene glycol chains supports copolymer growth due to more favourable comonomer interactions. Both monomers incorporate methionine amino acids but remarkably, desorption of the copolymers via competing sulphur gold interactions with the initial monomer layer is not observed. The surface-confined supramolecular copolymers remain kinetically trapped on the metal surface at near neutral pH and form viscoelastic films with a tuneable thickness.

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