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1.
Hepatol Commun ; 7(5)2023 05 01.
Artículo en Inglés | MEDLINE | ID: mdl-37058078

RESUMEN

BACKGROUND AND AIMS: HDV, a satellite of HBV, is responsible for the most severe form of human viral hepatitis, for which curative therapy is still awaited. Both HBV and HDV use the hepatic transporter of bile acids (ie, Na+-taurocholate cotransporting polypeptide) to enter hepatocytes. We have previously shown that ligands of the farnesoid-X-receptor alpha (FXR), a master regulator of bile acids metabolism, inhibit HBV replication. Here we asked whether FXR ligands can also control HDV infection. APPROACH AND RESULTS: In vitro HDV monoinfections or HDV/HBV coinfections and superinfections were performed in differentiated HepaRG cells (dHepaRG) and primary human hepatocytes. Following treatment with FXR ligands, HDV RNAs and antigens were analyzed by RT-qPCR, northern blot, immunofluorescence, and western blot. Virus secretion was studied by RNA quantification in supernatants, and the infectivity of secreted HDV particles was measured by reinfection of naive HuH7.5-Na+-taurocholate cotransporting polypeptide cells. In HDV/HBV superinfection models, a 10-day treatment with FXR ligand GW4064 decreased intracellular HDV RNAs by 60% and 40% in dHepaRG cells and primary human hepatocytes, respectively. Both HDV genomic and antigenomic RNAs were affected by treatment, which also reduced the amount of intracellular delta antigen. This antiviral effect was also observed in HDV monoinfected dHepaRG cells, abolished by FXR loss of function, and reproduced with other FXR ligands. In HBV/HDV coinfected dHepaRG cells, HDV secretion was decreased by 60% and virion-specific infectivity by >95%. CONCLUSIONS: FXR ligands both inhibit directly (ie, independently of anti-HBV activity) and indirectly (ie, dependently of anti-HBV activity) the replication, secretion, and infectivity of HDV. The overall anti-HDV activity was superior to that obtained with interferon-α, highlighting the therapeutic potential of FXR ligands in HDV-infected patients.


Asunto(s)
Ácidos y Sales Biliares , Virus de la Hepatitis B , Humanos , Virus de la Hepatitis B/genética , Ligandos , Virión/metabolismo , Ácido Taurocólico/metabolismo , Péptidos
2.
Dis Model Mech ; 13(9)2020 09 28.
Artículo en Inglés | MEDLINE | ID: mdl-32471891

RESUMEN

Bacterial pathogens have evolved to secrete strong anti-inflammatory proteins that target the immune system. It was long speculated whether these virulence factors could serve as therapeutics in diseases in which abnormal immune activation plays a role. We adopted the secreted chemotaxis inhibitory protein of Staphylococcus aureus (CHIPS) as a model virulence factor-based therapeutic agent for diseases in which C5AR1 stimulation plays an important role. We show that the administration of CHIPS in human C5AR1 knock-in mice successfully dampens C5a-mediated neutrophil migration during immune complex-initiated inflammation. Subsequent CHIPS toxicology studies in animal models were promising. However, during a small phase I trial, healthy human volunteers showed adverse effects directly after CHIPS administration. Subjects showed clinical signs of anaphylaxis with mild leukocytopenia and increased C-reactive protein concentrations, which are possibly related to the presence of relatively high circulating anti-CHIPS antibodies and suggest an inflammatory response. Even though our data in mice show CHIPS as a potential anti-inflammatory agent, safety issues in human subjects temper the use of CHIPS in its current form as a therapeutic candidate. The use of staphylococcal proteins, or other bacterial proteins, as therapeutics or immune-modulators in humans is severely hampered by pre-existing circulating antibodies.


Asunto(s)
Anticuerpos Antibacterianos/efectos adversos , Proteínas Bacterianas/metabolismo , Adolescente , Adulto , Animales , Complejo Antígeno-Anticuerpo/metabolismo , Biomarcadores/sangre , Movimiento Celular , Complemento C5a/metabolismo , Modelos Animales de Enfermedad , Voluntarios Sanos , Humanos , Masculino , Mastocitos/enzimología , Ratones Transgénicos , Persona de Mediana Edad , Neutrófilos/metabolismo , Receptor de Anafilatoxina C5a/metabolismo , Triptasas/sangre , Adulto Joven
3.
Nat Microbiol ; 3(10): 1187, 2018 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-30177744

RESUMEN

In the version of this Article originally published, the name of author Robert Jan Lebbink was coded wrongly, resulting in it being incorrect when exported to citation databases. This has now been corrected, though no visible changes will be apparent.

4.
Nat Microbiol ; 3(6): 708-717, 2018 06.
Artículo en Inglés | MEDLINE | ID: mdl-29736038

RESUMEN

The staphylococcal bi-component leukocidins Panton-Valentine leukocidin (PVL) and γ-haemolysin CB (HlgCB) target human phagocytes. Binding of the toxins' S-components to human complement C5a receptor 1 (C5aR1) contributes to cellular tropism and human specificity of PVL and HlgCB. To investigate the role of both leukocidins during infection, we developed a human C5aR1 knock-in (hC5aR1KI) mouse model. HlgCB, but unexpectedly not PVL, contributed to increased bacterial loads in tissues of hC5aR1KI mice. Compared to humans, murine hC5aR1KI neutrophils showed a reduced sensitivity to PVL, which was mediated by the toxin's F-component LukF-PV. By performing a genome-wide CRISPR-Cas9 screen, we identified CD45 as a receptor for LukF-PV. The human-specific interaction between LukF-PV and CD45 provides a molecular explanation for resistance of hC5aR1KI mouse neutrophils to PVL and probably contributes to the lack of a PVL-mediated phenotype during infection in these mice. This study demonstrates an unsuspected role of the F-component in driving the sensitivity of human phagocytes to PVL.


Asunto(s)
Toxinas Bacterianas/metabolismo , Exotoxinas/metabolismo , Leucocidinas/metabolismo , Antígenos Comunes de Leucocito/metabolismo , Receptor de Anafilatoxina C5a/genética , Infecciones Estafilocócicas/microbiología , Staphylococcus aureus/patogenicidad , Animales , Carga Bacteriana , Proteínas Bacterianas/metabolismo , Sistemas CRISPR-Cas , Línea Celular , Modelos Animales de Enfermedad , Proteínas Hemolisinas/metabolismo , Humanos , Ratones , Ratones Noqueados , Neutrófilos/metabolismo , Infecciones Estafilocócicas/genética , Infecciones Estafilocócicas/inmunología , Infecciones Estafilocócicas/metabolismo , Staphylococcus aureus/metabolismo
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