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1.
Annu Rev Biomed Eng ; 26(1): 273-306, 2024 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-38959389

RESUMO

Nanomaterials are becoming important tools for vaccine development owing to their tunable and adaptable nature. Unique properties of nanomaterials afford opportunities to modulate trafficking through various tissues, complement or augment adjuvant activities, and specify antigen valency and display. This versatility has enabled recent work designing nanomaterial vaccines for a broad range of diseases, including cancer, inflammatory diseases, and various infectious diseases. Recent successes of nanoparticle vaccines during the coronavirus disease 2019 (COVID-19) pandemic have fueled enthusiasm further. In this review, the most recent developments in nanovaccines for infectious disease, cancer, inflammatory diseases, allergic diseases, and nanoadjuvants are summarized. Additionally, challenges and opportunities for clinical translation of this unique class of materials are discussed.


Assuntos
COVID-19 , Nanoestruturas , SARS-CoV-2 , Desenvolvimento de Vacinas , Humanos , Nanoestruturas/química , COVID-19/prevenção & controle , SARS-CoV-2/imunologia , Vacinas contra COVID-19/química , Animais , Adjuvantes Imunológicos/química , Neoplasias/imunologia , Neoplasias/prevenção & controle , Nanopartículas/química , Vacinas , Pandemias/prevenção & controle
2.
Proc Natl Acad Sci U S A ; 118(15)2021 04 13.
Artigo em Inglês | MEDLINE | ID: mdl-33876753

RESUMO

Complement protein C3dg, a key linkage between innate and adaptive immunity, is capable of stimulating both humoral and cell-mediated immune responses, leading to considerable interest in its use as a molecular adjuvant. However, the potential of C3dg as an adjuvant is limited without ways of controllably assembling multiple copies of it into vaccine platforms. Here, we report a strategy to assemble C3dg into supramolecular nanofibers with excellent compositional control, using ß-tail fusion tags. These assemblies were investigated as therapeutic active immunotherapies, which may offer advantages over existing biologics, particularly toward chronic inflammatory diseases. Supramolecular assemblies based on the Q11 peptide system containing ß-tail-tagged C3dg, B cell epitopes from TNF, and the universal T cell epitope PADRE raised strong antibody responses against both TNF and C3dg, and prophylactic immunization with these materials significantly improved protection in a lethal TNF-mediated inflammation model. Additionally, in a murine model of psoriasis induced by imiquimod, the C3dg-adjuvanted nanofiber vaccine performed as well as anti-TNF monoclonal antibodies. Nanofibers containing only ß-tail-C3dg and lacking the TNF B cell epitope also showed improvements in both models, suggesting that supramolecular C3dg, by itself, played an important therapeutic role. We observed that immunization with ß-tail-C3dg caused the expansion of an autoreactive C3dg-specific T cell population, which may act to dampen the immune response, preventing excessive inflammation. These findings indicate that molecular assemblies displaying C3dg warrant further development as active immunotherapies.


Assuntos
Complemento C3d/imunologia , Nanofibras/química , Psoríase/prevenção & controle , Vacinas/imunologia , Adjuvantes Imunológicos/química , Animais , Anticorpos Monoclonais/química , Anticorpos Monoclonais/imunologia , Linfócitos B/imunologia , Células Cultivadas , Epitopos/química , Epitopos/imunologia , Camundongos , Camundongos Endogâmicos C57BL , Linfócitos T/imunologia , Fator de Necrose Tumoral alfa/imunologia , Vacinas/química
3.
Nat Mater ; 17(12): 1154-1163, 2018 12.
Artigo em Inglês | MEDLINE | ID: mdl-30323334

RESUMO

Emergent properties of natural biomaterials result from the collective effects of nanoscale interactions among ordered and disordered domains. Here, using recombinant sequence design, we have created a set of partially ordered polypeptides to study emergent hierarchical structures by precisely encoding nanoscale order-disorder interactions. These materials, which combine the stimuli-responsiveness of disordered elastin-like polypeptides and the structural stability of polyalanine helices, are thermally responsive with tunable thermal hysteresis and the ability to reversibly form porous, viscoelastic networks above threshold temperatures. Through coarse-grain simulations, we show that hysteresis arises from physical crosslinking due to mesoscale phase separation of ordered and disordered domains. On injection of partially ordered polypeptides designed to transition at body temperature, they form stable, porous scaffolds that rapidly integrate into surrounding tissue with minimal inflammation and a high degree of vascularization. Sequence-level modulation of structural order and disorder is an untapped principle for the design of functional protein-based biomaterials.


Assuntos
Peptídeos/química , Proteínas Recombinantes/química , Elasticidade , Elastina/química , Injeções , Porosidade , Temperatura , Viscosidade
4.
Nat Mater ; 17(12): 1164, 2018 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-30382194

RESUMO

In the version of this Article originally published, one of the authors' names was incorrectly given as Jeffery Schaal; it should have been Jeffrey L. Schaal. This has been corrected in all versions of the Article.

5.
Nat Mater ; 13(8): 829-36, 2014 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-24930032

RESUMO

Biomaterials exhibiting precise ratios of different bioactive protein components are critical for applications ranging from vaccines to regenerative medicine, but their design is often hindered by limited choices and cross-reactivity of protein conjugation chemistries. Here, we describe a strategy for inducing multiple different expressed proteins of choice to assemble into nanofibres and gels with exceptional compositional control. The strategy employs 'ßTail' tags, which allow for good protein expression in bacteriological cultures, yet can be induced to co-assemble into nanomaterials when mixed with additional ß-sheet fibrillizing peptides. Multiple different ßTail fusion proteins could be inserted into peptide nanofibres alone or in combination at predictable, smoothly gradated concentrations, providing a simple yet versatile route to install precise combinations of proteins into nanomaterials. The technology is illustrated by achieving precisely targeted hues using mixtures of fluorescent proteins, by creating nanofibres bearing enzymatic activity, and by adjusting antigenic dominance in vaccines.


Assuntos
Materiais Biocompatíveis/química , Substâncias Macromoleculares/química , Nanoestruturas/química , Animais , Hidrolases de Éster Carboxílico/química , Feminino , Proteínas Fúngicas/química , Proteínas de Fluorescência Verde/química , Imuno-Histoquímica , Cinética , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Microscopia Eletrônica de Transmissão , Nanofibras/química , Nanotecnologia/métodos , Peptídeos/química , Estrutura Secundária de Proteína , Proteínas Recombinantes de Fusão/química , Vacinas/química
6.
Antimicrob Agents Chemother ; 58(2): 966-77, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-24277029

RESUMO

Antibiotic resistance among highly pathogenic strains of bacteria and fungi is a growing concern in the face of the ability to sustain life during critical illness with advancing medical interventions. The longer patients remain critically ill, the more likely they are to become colonized by multidrug-resistant (MDR) pathogens. The human gastrointestinal tract is the primary site of colonization of many MDR pathogens and is a major source of life-threatening infections due to these microorganisms. Eradication measures to sterilize the gut are difficult if not impossible and carry the risk of further antibiotic resistance. Here, we present a strategy to contain rather than eliminate MDR pathogens by using an agent that interferes with the ability of colonizing pathogens to express virulence in response to host-derived and local environmental factors. The antivirulence agent is a phosphorylated triblock high-molecular-weight polymer (here termed Pi-PEG 15-20) that exploits the known properties of phosphate (Pi) and polyethylene glycol 15-20 (PEG 15-20) to suppress microbial virulence and protect the integrity of the intestinal epithelium. The compound is nonmicrobiocidal and appears to be highly effective when tested both in vitro and in vivo. Structure functional analyses suggest that the hydrophobic bis-aromatic moiety at the polymer center is of particular importance to the biological function of Pi-PEG 15-20, beyond its phosphate content. Animal studies demonstrate that Pi-PEG prevents mortality in mice inoculated with multiple highly virulent pathogenic organisms from hospitalized patients in association with preservation of the core microbiome.


Assuntos
Infecções Bacterianas/prevenção & controle , Candidíase/prevenção & controle , Citostáticos/farmacologia , Mucosa Intestinal/efeitos dos fármacos , Polietilenoglicóis/farmacologia , Sepse/prevenção & controle , Acinetobacter baumannii/efeitos dos fármacos , Acinetobacter baumannii/patogenicidade , Animais , Infecções Bacterianas/microbiologia , Infecções Bacterianas/mortalidade , Candida albicans/efeitos dos fármacos , Candida albicans/patogenicidade , Candidíase/microbiologia , Candidíase/mortalidade , Citostáticos/síntese química , Farmacorresistência Bacteriana Múltipla , Enterococcus faecalis/efeitos dos fármacos , Enterococcus faecalis/patogenicidade , Humanos , Mucosa Intestinal/microbiologia , Camundongos , Camundongos Endogâmicos C57BL , Fosfatos/química , Polietilenoglicóis/síntese química , Pseudomonas aeruginosa/efeitos dos fármacos , Pseudomonas aeruginosa/patogenicidade , Sepse/microbiologia , Análise de Sobrevida , Virulência
7.
ACS Biomater Sci Eng ; 10(3): 1819-1829, 2024 03 11.
Artigo em Inglês | MEDLINE | ID: mdl-38366973

RESUMO

Allergen immunotherapies are often successful at desensitizing allergic patients but can require life-long dosing and suffer from frequent adverse events including instances of systemic anaphylaxis, leading to poor patient compliance and high cost. Allergen vaccines, in turn, can generate more durable immunological allergen desensitization with far fewer doses. However, like immunotherapies, allergen vaccines are often highly reactogenic in allergic patients, hampering their use in therapeutic settings. In this work, we utilize a peptide-based self-assembling nanofiber platform to design allergen vaccines against allergen B-cell epitopes that do not elicit systemic anaphylaxis when administered subcutaneously to allergic mice. We show that, in contrast to protein vaccines, nanofiber vaccines prevent leakage of allergen material into the vascular compartment, a feature that likely underpins their reduced systemic reactogenicity. Further, we show that our allergen vaccine platform elicits therapeutic IgG antibody responses capable of desensitizing allergic mice to allergen-induced Type I hypersensitivity reactions. Finally, we have demonstrated a proof-of-concept for the therapeutic potential of nanofiber-based peanut allergen vaccines directed against peanut allergen-derived epitopes.


Assuntos
Anafilaxia , Vacinas , Humanos , Animais , Camundongos , Alérgenos , Dessensibilização Imunológica , Imunoglobulina G
8.
Acta Biomater ; 179: 83-94, 2024 04 15.
Artigo em Inglês | MEDLINE | ID: mdl-38447809

RESUMO

The terminal protein in the complement cascade C5a is a potent inflammatory molecule and chemoattractant that is involved in the pathology of multiple inflammatory diseases including sepsis and arthritis, making it a promising protein to target with immunotherapies. Active immunotherapies, in which patients are immunized against problematic self-molecules and generate therapeutic antibodies as a result, have received increasing interest as an alternative to traditional monoclonal antibody treatments. In previous work, we have designed supramolecular self-assembling peptide nanofibers as active immunotherapies with defined combinations of B- and T-cell epitopes. Herein, the self-assembling peptide Q11 platform was employed to generate a C5a-targeting active immunotherapy. Two of three predicted B-cell epitope peptides from C5a were found to be immunogenic when displayed within Q11 nanofibers, and the nanofibers were capable of reducing C5a serum concentrations following immunization. Contrastingly, C5a's precursor protein C5 maintained its original concentration, promising to minimize side effects heretofore associated with C5-targeted therapies. Immunization protected mice against an LPS-challenge model of sepsis, and it reduced clinical severity in a model of collagen-antibody induced arthritis. Together, this work indicates the potential for targeting terminal complement proteins with active immunotherapies by leveraging the immunogenicity of self-assembled peptide nanomaterials. STATEMENT OF SIGNIFICANCE: Chronic inflammatory diseases such as rheumatoid arthritis, psoriasis, and inflammatory bowel disease are currently treated primarily with monoclonal antibodies against key inflammatory mediators. While helpful for many patients, they have high non-response rates, are costly, and commonly fail as anti-drug antibodies are raised by the patient. The approach we describe here explores a fundamentally different treatment paradigm: raising therapeutic antibody responses with an active immunotherapy. We employ innovative supramolecular peptide nanomaterials to elicit neutralizing antibody responses against complement component C5a and demonstrate therapeutic efficacy in preclinical mouse models of sepsis and rheumatoid arthritis. The strategy reported may represent a potential alternative to monoclonal antibody therapies.


Assuntos
Complemento C5a , Imunoterapia , Inflamação , Nanofibras , Peptídeos , Animais , Nanofibras/química , Complemento C5a/imunologia , Peptídeos/química , Peptídeos/imunologia , Peptídeos/farmacologia , Imunoterapia/métodos , Inflamação/imunologia , Camundongos , Camundongos Endogâmicos C57BL , Sepse/imunologia , Sepse/terapia , Artrite Experimental/imunologia , Artrite Experimental/terapia , Artrite Experimental/patologia
9.
ACS Biomater Sci Eng ; 10(5): 3041-3056, 2024 05 13.
Artigo em Inglês | MEDLINE | ID: mdl-38623037

RESUMO

Oral immunization is a promising strategy for preventing and treating gastrointestinal (GI) infections and diseases, as it allows for direct access to the disease site. To elicit immune responses within the GI tract, however, there are many obstacles that oral vaccines must surmount, including proteolytic degradation and thick mucus barriers. Here, we employed a modular self-assembling peptide nanofiber platform to facilitate oral immunization against both peptide and small molecule epitopes. Synthesizing nanofibers with d-amino acids rendered them resistant to proteases in vitro, whereas l-amino acid nanofibers were rapidly degraded. Additionally, the inclusion of peptide sequences rich in proline, alanine, and serine (PAS), increased nanofiber muco-penetration, and accelerated nanofiber transport through the GI tract. Oral immunization with PASylated nanofibers and mucosal adjuvant generated local and systemic immune responses to a peptide epitope but only for l-amino acid nanofibers. Further, we were able to apply this design to also enable oral immunization against a small molecule epitope and illustrated the therapeutic and prophylactic effectiveness of these immunizations in mouse models of colitis. These findings demonstrate that supramolecular peptide self-assemblies have promise as oral vaccines and immunotherapies.


Assuntos
Imunização , Nanofibras , Peptídeos , Animais , Administração Oral , Nanofibras/química , Peptídeos/imunologia , Peptídeos/química , Peptídeos/administração & dosagem , Camundongos , Imunização/métodos , Epitopos/imunologia , Feminino , Camundongos Endogâmicos C57BL , Colite/imunologia , Colite/prevenção & controle , Colite/induzido quimicamente
10.
Proc Natl Acad Sci U S A ; 107(2): 622-7, 2010 Jan 12.
Artigo em Inglês | MEDLINE | ID: mdl-20080728

RESUMO

The development of vaccines and other immunotherapies has been complicated by heterogeneous antigen display and the use of incompletely defined immune adjuvants with complex mechanisms of action. We have observed strong antibody responses in mice without the coadministration of any additional adjuvant by noncovalently assembling a T and B cell epitope peptide into nanofibers using a short C-terminal peptide extension. Self-assembling peptides have been explored recently as scaffolds for tissue engineering and regenerative medicine, but our results indicate that these materials may also be useful as chemically defined adjuvants. In physiological conditions, these peptides self-assembled into long, unbranched fibrils that displayed the epitope on their surfaces. IgG1, IgG2a, and IgG3 were raised against epitope-bearing fibrils in levels similar to the epitope peptide delivered in complete Freund's adjuvant (CFA), and IgM production was even greater for the self-assembled epitope. This response was dependent on self-assembly, and the self-assembling sequence was not immunogenic by itself, even when delivered in CFA. Undetectable levels of interferon-gamma, IL-2, and IL-4 in cultures of peptide-challenged splenocytes from immunized mice suggested that the antibody responses did not involve significant T cell help.


Assuntos
Adjuvantes Imunológicos/farmacologia , Imunoglobulina G/imunologia , Adjuvantes Imunológicos/uso terapêutico , Sequência de Aminoácidos , Animais , Linfócitos B/imunologia , Ensaio de Imunoadsorção Enzimática , Epitopos/imunologia , Adjuvante de Freund/imunologia , Adjuvante de Freund/farmacologia , Adjuvante de Freund/uso terapêutico , Imunoterapia/métodos , Camundongos , Modelos Moleculares , Dados de Sequência Molecular , Nanofibras , Ovalbumina/química , Ovalbumina/imunologia , Fragmentos de Peptídeos/química , Fragmentos de Peptídeos/imunologia , Conformação Proteica , Linfócitos T/imunologia , Engenharia Tecidual/métodos
11.
Biomater Sci ; 11(5): 1625-1647, 2023 Feb 28.
Artigo em Inglês | MEDLINE | ID: mdl-36723064

RESUMO

Mucosal vaccines are receiving increasing interest both for protecting against infectious diseases and for inducing therapeutic immune responses to treat non-infectious diseases. However, the mucosal barriers of the lungs, gastrointestinal tract, genitourinary tract, nasal, and oral tissues each present unique challenges for constructing efficacious vaccines. Vaccination through each of these mucosae requires transport through the mucus and across specialized epithelia to reach tissue-specific immune cells and lymphoid structures, necessitating finely tuned and multifunctional strategies. Serving as inspiration for mucosal vaccine design, pathogens have evolved elaborate, diverse, and multipronged approaches to penetrate and infect mucosae. This review is focused on biomaterials-based strategies, many inspired by pathogens, for designing mucosal vaccine platforms. Passive and active technologies are discussed, along with the microbial processes that they seek to mimic.


Assuntos
Imunidade nas Mucosas , Vacinas , Vacinação , Mucosa
12.
Adv Sci (Weinh) ; 10(11): e2204882, 2023 04.
Artigo em Inglês | MEDLINE | ID: mdl-36762570

RESUMO

Microporous annealed particle scaffolds (MAPS) are a new class of granular materials generated through the interlinking of tunable microgels, which produce an interconnected network of void space. These microgel building blocks can be designed with different mechanical or bio-active parameters to facilitate cell infiltration and modulate host response. Previously, changing the chirality of the microgel crosslinking peptides from L- to D-amino acids led to significant tissue regeneration and functional recovery in D-MAPS-treated cutaneous wounds. In this study, the immunomodulatory effect of D-MAPS in a subcutaneous implantation model is investigated. How macrophages are the key antigen-presenting cells to uptake and present these biomaterials to the adaptive immune system is uncovered. A robust linker-specific IgG2b/IgG1 response to D-MAPS is detected as early as 14 days post-implantation. The fine balance between pro-regenerative and pro-inflammatory macrophage phenotypes is observed in D-MAPS as an indicator for regenerative scaffolds. The work offers valuable insights into the temporal cellular response to synthetic porous scaffolds and establishes a foundation for further optimization of immunomodulatory pro-regenerative outcomes.


Assuntos
Microgéis , Alicerces Teciduais , Alicerces Teciduais/química , Macrófagos , Materiais Biocompatíveis/farmacologia , Fenótipo
13.
Biomaterials ; 294: 121985, 2023 03.
Artigo em Inglês | MEDLINE | ID: mdl-36630826

RESUMO

Many biologics have a short plasma half-life, and their conjugation to polyethylene glycol (PEG) is commonly used to solve this problem. However, the improvement in the plasma half-life of PEGylated drugs' is at an asymptote because the development of branched PEG has only had a modest impact on pharmacokinetics and pharmacodynamics. Here, we developed an injectable PEG-like conjugate that forms a subcutaneous depot for the sustained delivery of biologics. The PEG-like conjugate consists of poly[oligo(ethylene glycol) methyl ether methacrylate] (POEGMA) conjugated to exendin, a peptide drug used in the clinic to treat type 2 diabetes. The depot-forming exendin-POEGMA conjugate showed greater efficacy than a PEG conjugate of exendin as well as Bydureon, a clinically approved sustained-release formulation of exendin. The injectable depot-forming exendin-POEGMA conjugate did not elicit an immune response against the polymer, so that it remained effective and safe for long-term management of type 2 diabetes upon chronic administration. In contrast, the PEG conjugate induced an anti-PEG immune response, leading to early clearance and loss of efficacy upon repeat dosing. The exendin-POEGMA depot also showed superior long-term efficacy compared to Bydureon. Collectively, these results suggest that an injectable POEGMA conjugate of biologic drugs that forms a drug depot under the skin, providing favorable pharmacokinetic properties and sustained efficacy while remaining non-immunogenic, offers significant advantages over other commonly used drug delivery technologies.


Assuntos
Diabetes Mellitus Tipo 2 , Humanos , Exenatida , Diabetes Mellitus Tipo 2/tratamento farmacológico , Polietilenoglicóis/química , Peptídeos/química , Antígenos , Preparações de Ação Retardada
14.
Cell Rep ; 42(10): 113299, 2023 10 31.
Artigo em Inglês | MEDLINE | ID: mdl-37864794

RESUMO

The current paradigm indicates that naive T cells are primed in secondary lymphoid organs. Here, we present evidence that intranasal administration of peptide antigens appended to nanofibers primes naive CD8+ T cells in the lung independently and prior to priming in the draining mediastinal lymph node (MLN). Notably, comparable accumulation and transcriptomic responses of CD8+ T cells in lung and MLN are observed in both Batf3KO and wild-type (WT) mice, indicating that, while cDC1 dendritic cells (DCs) are the major subset for cross-presentation, cDC2 DCs alone are capable of cross-priming CD8+ T cells both in the lung and draining MLN. Transcription analyses reveal distinct transcriptional responses in lung cDC1 and cDC2 to intranasal nanofiber immunization. However, both DC subsets acquire shared transcriptional responses upon migration into the lymph node, thus uncovering a stepwise activation process of cDC1 and cDC2 toward their ability to cross-prime effector and functional memory CD8+ T cell responses.


Assuntos
Linfócitos T CD8-Positivos , Células Dendríticas , Camundongos , Animais , Pulmão , Apresentação Cruzada , Linfonodos
15.
Nat Biomed Eng ; 2023 Nov 27.
Artigo em Inglês | MEDLINE | ID: mdl-38012308

RESUMO

Inflammatory bowel disease lacks a long-lasting and broadly effective therapy. Here, by taking advantage of the anti-infection and anti-inflammatory properties of natural antibodies against the small-molecule epitope phosphorylcholine (PC), we show in multiple mouse models of colitis that immunization of the animals with self-assembling supramolecular peptide nanofibres bearing PC epitopes induced sustained levels of anti-PC antibodies that were both protective and therapeutic. The strength and type of immune responses elicited by the nanofibres could be controlled through the relative valency of PC epitopes and exogenous T-cell epitopes on the nanofibres and via the addition of the adjuvant CpG. The nanomaterial-assisted induction of the production of therapeutic antibodies may represent a durable therapy for inflammatory bowel disease.

16.
Sci Adv ; 8(47): eabq4120, 2022 11 25.
Artigo em Inglês | MEDLINE | ID: mdl-36417519

RESUMO

Urinary tract infections (UTIs) are a major public health problem affecting millions of individuals each year. Recurrent UTIs are managed by long-term antibiotic use, making the alarming rise of antibiotic resistance a substantial threat to future UTI treatment. Extended antibiotic regimens may also have adverse effects on the microbiome. Here, we report the use of a supramolecular vaccine to provide long-term protection against uropathogenic Escherichia coli, which cause 80% of uncomplicated UTIs. We designed mucus-penetrating peptide-polymer nanofibers to enable sublingual (under the tongue) vaccine delivery and elicit antibody responses systemically and in the urogenital tract. In a mouse model of UTI, we demonstrate equivalent efficacy to high-dose oral antibiotics but with significantly less perturbation of the gut microbiome. We also formulate our vaccine as a rapid-dissolving sublingual tablet that raises response in mice and rabbits. Our approach represents a promising alternative to antibiotics for the treatment and prevention of UTIs.


Assuntos
Infecções por Escherichia coli , Nanofibras , Infecções Urinárias , Vacinas , Camundongos , Coelhos , Animais , Infecções por Escherichia coli/prevenção & controle , Infecções Urinárias/prevenção & controle , Antibacterianos/farmacologia , Antibacterianos/uso terapêutico
17.
Sci Adv ; 8(29): eabm7833, 2022 07 22.
Artigo em Inglês | MEDLINE | ID: mdl-35857833

RESUMO

Subunit vaccines inducing antibodies against tumor-specific antigens have yet to be clinically successful. Here, we use a supramolecular α-helical peptide nanofiber approach to design epitope-specific vaccines raising simultaneous B cell, CD8+ T cell, and CD4+ T cell responses against combinations of selected epitopes and show that the concurrent induction of these responses generates strong antitumor effects in mice, with significant improvements over antibody or CD8+ T cell-based vaccines alone, in both prophylactic and therapeutic subcutaneous melanoma models. Nanofiber vaccine-induced antibodies mediated in vitro tumoricidal antibody-dependent cellular cytotoxicity (ADCC) and antibody-dependent cellular phagocytosis (ADCP). The addition of immune checkpoint and phagocytosis checkpoint blockade antibodies further improved the therapeutic effect of the nanofiber vaccines against murine melanoma. These findings highlight the potential clinical benefit of vaccine-induced antibody responses for tumor treatments, provided that they are accompanied by simultaneous CD8+ and CD4+ responses, and they illustrate a multiepitope cancer vaccine design approach using supramolecular nanomaterials.


Assuntos
Vacinas Anticâncer , Melanoma , Nanofibras , Animais , Epitopos , Imunidade Celular , Camundongos , Peptídeos
18.
Adv Sci (Weinh) ; 9(11): e2103672, 2022 04.
Artigo em Inglês | MEDLINE | ID: mdl-35133079

RESUMO

Protein therapeutics, except for antibodies, have a short plasma half-life and poor stability in circulation. Covalent coupling of polyethylene glycol (PEG) to protein drugs addresses this limitation. However, unlike previously thought, PEG is immunogenic. In addition to induced PEG antibodies, ≈70% of the US population has pre-existing anti-PEG antibodies. Both induced and preexisting anti-PEG antibodies result in accelerated drug clearance, reduced clinical efficacy, and severe hypersensitivity reactions that have limited the clinical utility of uricase, an enzyme drug for treatment for refractory gout that is decorated with a PEG corona. Here, the authors synthesize a poly(oligo(ethylene glycol) methyl ether methacrylate) (POEGMA) conjugate of uricase that decorates the protein with multiple polymer chains to create a corona to solve these problems. The resulting uricase-POEGMA is well-defined, has high bioactivity, and outperforms its PEG counterparts in its pharmacokinetics (PK). Furthermore, the conjugate does not induce anti-POEGMA antibodies and is not recognized by anti-PEG antibodies. These findings suggest that POEGMA conjugation may provide a solution to the immunogenicity and antigenicity limitations of PEG while improving upon its PK benefits. These results transcend uricase and can be applied to other PEGylated therapeutics and the broader class of biologics with suboptimal PK.


Assuntos
Gota , Urato Oxidase , Anticorpos/metabolismo , Antígenos/uso terapêutico , Gota/tratamento farmacológico , Humanos , Imunidade , Polietilenoglicóis/farmacocinética , Polietilenoglicóis/uso terapêutico , Polímeros/uso terapêutico , Urato Oxidase/farmacocinética , Urato Oxidase/uso terapêutico
19.
Sci Adv ; 8(38): eabq0273, 2022 09 23.
Artigo em Inglês | MEDLINE | ID: mdl-36149967

RESUMO

To develop vaccines for certain key global pathogens such as HIV, it is crucial to elicit both neutralizing and non-neutralizing Fc-mediated effector antibody functions. Clinical evidence indicates that non-neutralizing antibody functions including antibody-dependent cellular cytotoxicity (ADCC) and antibody-dependent cellular phagocytosis (ADCP) contribute to protection against several pathogens. In this study, we demonstrated that conjugation of HIV Envelope (Env) antigen gp120 to a self-assembling nanofiber material named Q11 induced antibodies with higher breadth and functionality when compared to soluble gp120. Immunization with Q11-conjugated gp120 vaccine (gp120-Q11) demonstrated higher tier 1 neutralization, ADCP, and ADCC as compared to soluble gp120. Moreover, Q11 conjugation altered the Fc N-glycosylation profile of antigen-specific antibodies, leading to a phenotype associated with increased ADCC in animals immunized with gp120-Q11. Thus, this nanomaterial vaccine strategy can enhance non-neutralizing antibody functions possibly through modulation of immunoglobulin G Fc N-glycosylation.


Assuntos
Vacinas contra a AIDS , Infecções por HIV , HIV-1 , Nanofibras , Animais , Glicosilação , Anticorpos Anti-HIV , Infecções por HIV/prevenção & controle , Fragmentos Fc das Imunoglobulinas/genética , Imunoglobulina G , Vacinas de Subunidades Antigênicas
20.
Biomacromolecules ; 12(10): 3549-58, 2011 Oct 10.
Artigo em Inglês | MEDLINE | ID: mdl-21863894

RESUMO

The noncovalent coassembly of multiple different peptides can be a useful route for producing multifunctional biomaterials. However, to date, such materials have almost exclusively been investigated as homogeneous self-assemblies, having functional components uniformly distributed throughout their supramolecular structures. Here we illustrate control over the intermixing of multiple different self-assembling peptides, in turn providing a simple but powerful means for modulating these materials' mechanical and biological properties. In ß-sheet fibrillizing hydrogels, significant increases in stiffening could be achieved using heterobifunctional cross-linkers by sequestering peptides bearing different reactive groups into distinct populations of fibrils, thus favoring interfibril cross-linking. Further, by specifying the intermixing of RGD-bearing peptides in 2-D and 3-D self-assemblies, the growth of HUVECs and NIH 3T3 cells could be significantly modulated. This approach may be immediately applicable toward a wide variety of self-assembling systems that form stable supramolecular structures.


Assuntos
Materiais Biocompatíveis/química , Materiais Biomiméticos/metabolismo , Hidrogéis/química , Microfibrilas/metabolismo , Oligopeptídeos/química , Engenharia Tecidual/métodos , Sequência de Aminoácidos , Animais , Materiais Biocompatíveis/metabolismo , Materiais Biomiméticos/química , Técnicas de Cultura de Células , Proliferação de Células , Reagentes de Ligações Cruzadas/química , Estabilidade de Medicamentos , Elasticidade , Células Endoteliais da Veia Umbilical Humana , Humanos , Hidrogéis/metabolismo , Camundongos , Microfibrilas/química , Dados de Sequência Molecular , Células NIH 3T3 , Oligopeptídeos/metabolismo , Estrutura Secundária de Proteína , Viscosidade
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