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1.
Biomacromolecules ; 22(10): 4422-4433, 2021 10 11.
Artículo en Inglés | MEDLINE | ID: mdl-34554732

RESUMEN

The use of well-defined nanovesicles composed of amphiphilic block copolymers (polymersomes) for delivery of adjuvants and antigens is a promising strategy for vaccine development. However, the potency of nanoparticle vaccines depends on efficient interaction with and activation of cells involved in antigen presentation, which can be achieved by targeting cellular receptors. Here, we showed that the Fc fragment display on the polymersome surface resulted in markedly improved interactions with granulocytes, monocytes, and NK cells, while for "naked" polymersomes, virtually no binding to leukocytes was observed. Moreover, CpG-decorated polymersomes were found to also interact with T and/or B cells. Interestingly, whole blood stimulations with Fc fragment and CpG-decorated polymersomes induced interleukin (IL)-6, IL-8, and TNF-α production, while naked polymersomes did not induce any cytokine production. In conclusion, specific immune induction by polymersomes can be controlled using bimodal targeting of different immune receptors, which is an essential feature for targeted vaccine delivery.


Asunto(s)
Nanopartículas , Polímeros , Adyuvantes Inmunológicos/farmacología , Sistemas de Liberación de Medicamentos , Humanos , Leucocitos
2.
J Infect Dis ; 217(12): 1987-1996, 2018 05 25.
Artículo en Inglés | MEDLINE | ID: mdl-29528444

RESUMEN

There is a lack of insight into the basic mechanisms by which Bordetella pertussis adapts to the local host environment during infection. We analyzed B. pertussis gene expression in the upper and lower airways of mice and compared this to SO4-induced in vitro Bvg-regulated gene transcription. Approximately 30% of all genes were differentially expressed between in vitro and in vivo conditions. This included several novel potential vaccine antigens that were exclusively expressed in vivo. Significant differences in expression profile and metabolic pathways were identified between the upper versus the lower airways, suggesting distinct antigenic profiles. We found high-level expression of several Bvg-repressed genes during infection, and mouse vaccination experiments using purified protein fractions from both Bvg- and Bvg+ cultures demonstrated protection against intranasal B. pertussis challenge. This study provides novel insights into the in vivo adaptation of B. pertussis and may facilitate the improvement of pertussis vaccines.


Asunto(s)
Bordetella pertussis/patogenicidad , Sistema Respiratorio/microbiología , Tos Ferina/microbiología , Animales , Proteínas de la Membrana Bacteriana Externa/genética , Proteínas Bacterianas/genética , Bordetella pertussis/genética , Femenino , Regulación Bacteriana de la Expresión Génica/genética , Ratones , Ratones Endogámicos BALB C , Factores de Transcripción/genética
3.
Vaccine ; 41(1): 10-14, 2023 01 04.
Artículo en Inglés | MEDLINE | ID: mdl-36446656

RESUMEN

INTRODUCTION: Several studies have shown that intradermal vaccination leads to improved immune responses. In addition, lowering vaccine doses will reduce costs and therefore potentially increase coverage. To determine whether intradermal delivery enhances the antibody responses against the 13-valent pneumococcal conjugate vaccine (PCV13), we compared intradermally and intramuscularly vaccinated mice. METHODS: Mice were immunized with PCV13, either intradermally or intramuscularly and CFU-counts in the nasal tissue were determined three or seven days after intranasal colonization with a serotype 4 clinical strain. Antibody concentrations against all thirteen polysaccharides were measured in blood and mucosal samples using a fluorescent-bead-based multiplex immunoassay. RESULTS: Antibody levels in both serum and mucosal samples were higher in the intramuscularly vaccinated group as compared to the intradermally vaccinated group. No protection against S. pneumoniae intranasal colonization was observed for either vaccination route. CONCLUSIONS: Intradermal vaccination was inferior to intramuscular immunization in inducing serotype-specific antibodies.


Asunto(s)
Formación de Anticuerpos , Infecciones Neumocócicas , Ratones , Animales , Vacunas Conjugadas , Anticuerpos Antibacterianos , Vacunas Neumococicas , Streptococcus pneumoniae , Serogrupo , Vacunación/métodos , Infecciones Neumocócicas/prevención & control
4.
Vaccines (Basel) ; 8(2)2020 Jun 17.
Artículo en Inglés | MEDLINE | ID: mdl-32560374

RESUMEN

Streptococcus pneumoniae infections lead to high morbidity and mortality rates worldwide. Pneumococcal polysaccharide conjugate vaccines significantly reduce the burden of disease but have a limited range of protection, which encourages the development of a broadly protective protein-based alternative. We and others have shown that immunization with pneumococcal lipoproteins that lack the lipid anchor protects against colonization. Since immunity against S. pneumoniae is mediated through Toll-like receptor 2 signaling induced by lipidated proteins, we investigated the effects of a lipid modification on the induced immune responses in either intranasally or subcutaneously vaccinated mice. Here, we demonstrate that lipidation of recombinant lipoproteins DacB and PnrA strongly improves their immunogenicity. Mice immunized with lipidated proteins showed enhanced antibody concentrations and different induction kinetics. The induced humoral immune response was modulated by lipidation, indicated by increased IgG2/IgG1 subclass ratios related to Th1-type immunity. In a mouse model of colonization, immunization with lipidated antigens led to a moderate but consistent reduction of pneumococcal colonization as compared to the non-lipidated proteins, indicating that protein lipidation can improve the protective capacity of the coupled antigen. Thus, protein lipidation represents a promising approach for the development of a serotype-independent pneumococcal vaccine.

5.
Virulence ; 11(1): 1310-1328, 2020 12.
Artículo en Inglés | MEDLINE | ID: mdl-33017224

RESUMEN

Nasopharyngeal colonization by Streptococcus pneumoniae is a prerequisite for pneumococcal transmission and disease. Current vaccines protect only against disease and colonization caused by a limited number of serotypes, consequently allowing serotype replacement and transmission. Therefore, the development of a broadly protective vaccine against colonization, transmission and disease is desired but requires a better understanding of pneumococcal adaptation to its natural niche. Hence, we measured the levels of free and protein-bound transition metals in human nasal fluid, to determine the effect of metal concentrations on the growth and proteome of S. pneumoniae. Pneumococci cultured in medium containing metal levels comparable to nasal fluid showed a highly distinct proteomic profile compared to standard culture conditions, including the increased abundance of nine conserved, putative surface-exposed proteins. AliA, an oligopeptide binding protein, was identified as the strongest protective antigen, demonstrated by the significantly reduced bacterial load in a murine colonization and a lethal mouse pneumonia model, highlighting its potential as vaccine antigen.


Asunto(s)
Antígenos Bacterianos/aislamiento & purificación , Proteínas de la Membrana/aislamiento & purificación , Metales/farmacología , Vacunas Neumococicas/inmunología , Streptococcus pneumoniae/efectos de los fármacos , Adulto , Animales , Anticuerpos Antibacterianos/sangre , Anticuerpos Antibacterianos/inmunología , Antígenos Bacterianos/inmunología , Medios de Cultivo/química , Modelos Animales de Enfermedad , Femenino , Humanos , Masculino , Proteínas de la Membrana/inmunología , Metales/análisis , Ratones , Ratones Endogámicos C57BL , Persona de Mediana Edad , Líquido del Lavado Nasal/química , Nasofaringe/microbiología , Infecciones Neumocócicas/inmunología , Infecciones Neumocócicas/prevención & control , Vacunas Neumococicas/administración & dosificación , Adulto Joven
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