Examinando por Autor "Palacios, Pablo A."
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Ítem A chimeric protein-based vaccine elicits a strong IgG antibody response and confers partial protection against Shiga toxin-producing Escherichia coli in mice(Frontiers Media SA, 2023) Montero, David A.; Garcia-Betancourt, Richard; Vidal, Roberto M.; Velasco, Juliana; Palacios, Pablo A.; Schneider, Daniela; Vega, Carolina; Gómez, Leonardo; Montecinos, Hernán; Soto-Shara, Rodrigo; Oñate, Ángel; Carreño, Leandro J.Background: Shiga toxin-producing Escherichia coli (STEC) is a foodborne pathogen that causes gastrointestinal infections, ranging from acute diarrhea and dysentery to life-threatening diseases such as Hemolytic Uremic Syndrome. Currently, a vaccine to prevent STEC infection is an unmet medical need. Results: We developed a chimeric protein-based vaccine targeting seven virulence factors of STEC, including the Stx2B subunit, Tir, Intimin, EspA, Cah, OmpT, and AggA proteins. Immunization of mice with this vaccine candidate elicited significant humoral and cellular immune responses against STEC. High levels of specific IgG antibodies were found in the serum and feces of immunized mice. However, specific IgA antibodies were not detected in either serum or feces. Furthermore, a significantly higher percentage of antigen-specific CD4+ T cells producing IFN-γ, IL-4, and IL-17 was observed in the spleens of immunized mice. Notably, the immunized mice showed decreased shedding of STEC O157:H7 and STEC O91:H21 strains and were protected against weight loss during experimental infection. Additionally, infection with the STEC O91:H21 strain resulted in kidney damage in control unimmunized mice; however, the extent of damage was slightly lower in immunized mice. Our findings suggest that IgG antibodies induced by this vaccine candidate may have a role in inhibiting bacterial adhesion and complement-mediated killing. Conclusion: This study provides evidence that IgG responses are involved in the host defense against STEC. However, our results do not rule out that other classes of antibodies also participate in the protection against this pathogen. Additional work is needed to improve the protection conferred by our vaccine candidate and to elucidate the relevant immune responses that lead to complete protection against this pathogen. Copyright © 2023 Montero, Garcia-Betancourt, Vidal, Velasco, Palacios, Schneider, Vega, Gómez, Montecinos, Soto-Shara, Oñate and Carreño.Ítem Contribution of viral and bacterial infections to senescence and immunosenescence(Frontiers Media SA, 2023) Reyes, Antonia; Ortiz, Gerardo; Duarte, Luisa F.; Fernández, Christian; Hernández-Armengol, Rosario; Palacios, Pablo A.; Prado, Yolanda; Andrade, Catalina A.; Rodriguez-Guilarte, Linmar; Kalergis, Alexis M.; Simon, Felipe; Carreño, Leandro J.; Riedel, Claudia A.; Cáceres, Mónica; González, Pablo A.Cellular senescence is a key biological process characterized by irreversible cell cycle arrest. The accumulation of senescent cells creates a pro-inflammatory environment that can negatively affect tissue functions and may promote the development of aging-related diseases. Typical biomarkers related to senescence include senescence-associated β-galactosidase activity, histone H2A.X phosphorylation at serine139 (γH2A.X), and senescence-associated heterochromatin foci (SAHF) with heterochromatin protein 1γ (HP-1γ protein) Moreover, immune cells undergoing senescence, which is known as immunosenescence, can affect innate and adaptative immune functions and may elicit detrimental effects over the host’s susceptibility to infectious diseases. Although associations between senescence and pathogens have been reported, clear links between both, and the related molecular mechanisms involved remain to be determined. Furthermore, it remains to be determined whether infections effectively induce senescence, the impact of senescence and immunosenescence over infections, or if both events coincidently share common molecular markers, such as γH2A.X and p53. Here, we review and discuss the most recent reports that describe cellular hallmarks and biomarkers related to senescence in immune and non-immune cells in the context of infections, seeking to better understand their relationships. Related literature was searched in Pubmed and Google Scholar databases with search terms related to the sections and subsections of this review. Copyright © 2023 Reyes, Ortiz, Duarte, Fernández, Hernández-Armengol, Palacios, Prado, Andrade, Rodriguez-Guilarte, Kalergis, Simon, Carreño, Riedel, Cáceres and González.Ítem Inactivated Vaccine-Induced SARS-CoV-2 Variant-Specific Immunity in Children(American Society for Microbiology, 2022-12) Soto, Jorge A.; Melo González, Felipe; Gutierrez Vera, Cristián; Schultz, Bárbara M.; Berríos Rojas, Roslye V.; Rivera Pérez, Daniela; Piña Iturbe, Alejandro; Hoppe Elsholz, Guillermo; Duarte, Luisa F.; Vázquez, Yaneisi; Moreno Tapia, Daniela; Ríos, Mariana; Palacios, Pablo A.; Garcia Betancourt, Richard; Santibañez, Álvaro; Pacheco, Gaspar A.; Mendez, Constanza; Andrade, Catalina A.; Silva, Pedro H.; Diethelm Varela, Benjamín; Astudillo, Patricio; Calvo, Mario; Cárdenas, Antonio; González, Marcela; Goldsack, Macarena; Gutiérrez, Valentina; Potin, Marcela; Schilling, Andrea; Tapia, Lorena I.; Twele, Loreto; Villena, Rodolfo; Grifoni, Albar; Sette, Alessandro; Weiskopf, Daniela; Fasce, Rodrigo A.; Fernández, Jorge; Mora, Judith; Ramírez, Eugenio; Gaete Argel, Aracelly; Acevedo, Mónica L.; Valiente Echeverría, Fernando; Soto Rifo, Ricardo; Retamal Díaz, Angello; Muñoz Jofré, Nathalia; Meng, Xing; Xin, Qianqian; Alarcón Bustamante, Eduardo; González Aramundiz, José V.; Le Corre, Nicole; Álvarez Figueroa, María Javiera; González, Pablo A.; Abarca, Katia; Perret, Cecilia; Carreño, Leandro J.; Bueno, Susan M.; Kalergis, Alexis M.Multiple vaccines against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) have been evaluated in clinical trials. However, trials addressing the immune response in the pediatric population are scarce. The inactivated vaccine CoronaVac has been shown to be safe and immunogenic in a phase 1/2 clinical trial in a pediatric cohort in China. Here, we report interim safety and immunogenicity results of a phase 3 clinical trial for CoronaVac in healthy children and adolescents in Chile. Participants 3 to 17 years old received two doses of CoronaVac in a 4-week interval until 31 December 2021. Local and systemic adverse reactions were registered for volunteers who received one or two doses of CoronaVac. Whole-blood samples were collected from a subgroup of 148 participants for humoral and cellular immunity analyses. The main adverse reaction reported after the first and second doses was pain at the injection site. Four weeks after the second dose, an increase in neutralizing antibody titer was observed in subjects relative to their baseline visit. Similar results were found for activation of specific CD41 T cells. Neutralizing antibodies were identified against the Delta and Omicron variants. However, these titers were lower than those for the D614G strain. Importantly, comparable CD41 T cell responses were detected against these variants of concern. Therefore, CoronaVac is safe and immunogenic in subjects 3 to 17 years old, inducing neutralizing antibody secretion and activating CD41 T cells against SARS-CoV-2 and its variants. (This study has been registered at ClinicalTrials .gov under no. NCT04992260.) IMPORTANCE This work evaluated the immune response induced by two doses of CoronaVac separated by 4 weeks in healthy children and adolescents in Chile. To date, few studies have described the effects of CoronaVac in the pediatric population. Therefore, it is essential to generate knowledge regarding the protection of vaccines in this population. Along these lines, we reported the anti-S humoral response and cellular immune response to several SARS-CoV-2 proteins that have been published and recently studied. Here, we show that a vaccination schedule consisting of two doses separated by 4 weeks induces the secretion of neutralizing antibodies against SARS-CoV-2. Furthermore, CoronaVac induces the activation of CD41 T cells upon stimulation with peptides from the proteome of SARS-CoV-2. These results indicate that, even though the neutralizing antibody response induced by vaccination decreases against the Delta and Omicron variants, the cellular response against these variants is comparable to the response against the ancestral strain D614G, even being significantly higher against Omicron. Copyright © 2022 Soto et al.Ítem Natural killer T cells in allergic asthma: implications for the development of novel immunotherapeutical strategies(Frontiers Media SA, 2024) Gutiérrez-Vera, Cristián; García-Betancourt, Richard; Palacios, Pablo A.; Müller, Marioly; Montero, David A.; Verdugo, Carlos; Ortiz, Francisca; Simon, Felipe; Kalergis, Alexis M.; González, Pablo A.; Saavedra-Avila, Noemi A.; Porcelli, Steven A.; Carreño, Leandro J.Allergic asthma has emerged as a prevalent allergic disease worldwide, affecting most prominently both young individuals and lower-income populations in developing and developed countries. To devise effective and curative immunotherapy, it is crucial to comprehend the intricate nature of this condition, characterized by an immune response imbalance that favors a proinflammatory profile orchestrated by diverse subsets of immune cells. Although the involvement of Natural Killer T (NKT) cells in asthma pathology is frequently implied, their specific contributions to disease onset and progression remain incompletely understood. Given their remarkable ability to modulate the immune response through the rapid secretion of various cytokines, NKT cells represent a promising target for the development of effective immunotherapy against allergic asthma. This review provides a comprehensive summary of the current understanding of NKT cells in the context of allergic asthma, along with novel therapeutic approaches that leverage the functional response of these cells.