Suppression of immune response by antigen-modified liposomes encapsulating model agents: A novel strategy for the treatment of allergy

2013 ◽  
Vol 167 (3) ◽  
pp. 284-289 ◽  
Author(s):  
Kanae Ichikawa ◽  
Tomohiro Asai ◽  
Kosuke Shimizu ◽  
Sei Yonezawa ◽  
Takeo Urakami ◽  
...  
2017 ◽  
Vol 89 (7) ◽  
pp. 885-898 ◽  
Author(s):  
Vadim B. Krylov ◽  
Lucia Paulovičová ◽  
Ema Paulovičová ◽  
Yury E. Tsvetkov ◽  
Nikolay E. Nifantiev

AbstractThe driving force for the constant improvement and development of new synthetic methodologies in carbohydrate chemistry is a growing demand for biologically important oligosaccharide ligands and neoglycoconjugates thereof for numerous biochemical investigations such as cell-to-pathogen interactions, immune response, cell adhesion, etc. Here we report our syntheses of the spacer-armed antigenic oligosaccharides related to three groups of the polysaccharides of the fungal cell-wall including α- and β-mannan, α- and β-glucan and galactomannan chains, which include new rationally designed synthetic blocks, efficient solutions for the stereoselective construction of glycoside bonds, and novel strategy for preparation of furanoside-containing oligosaccharides based on recently discovered pyranoside-into-furanoside (PIF) rearrangement.


2019 ◽  
Vol 39 (12) ◽  
Author(s):  
Hongmin Gao ◽  
Juan Zhang ◽  
Xiaohong Ren

Abstract PD-L1 is a well-known immune co-stimulatory molecule that regulates tumour cell escape from immunity by suppressing the immune response. However, the clinical significance of PD-L1 in the progression of ovarian cancer is unclear. Our study demonstrated that PD-L1 is up-regulated in ovarian tumour tissue compared with its expression level in adjacent normal tissue. Furthermore, we confirmed that PD-L1 increases the proliferation of cancer cells by activating the AKT-mTORC signalling pathway, which is also enhanced by the expression of S6K, the substrate of mTORC. In addition, PD-L1 promotes the autophagy of ovarian cancer cells by up-regulating the expression of BECN1, a crucial molecule involved in the regulation of autophagy. In conclusion, PD-L1 may provide a target for the development of a novel strategy for the treatment of ovarian cancer.


2020 ◽  
Vol 205 (10) ◽  
pp. 2566-2575
Author(s):  
Alexandre E. Nowill ◽  
Pedro O. de Campos-Lima

Genes ◽  
2020 ◽  
Vol 11 (3) ◽  
pp. 323 ◽  
Author(s):  
Guoying Wang ◽  
Xianghui Li ◽  
Lei Zhang ◽  
Abualgasim Elgaili Abdalla ◽  
Tieshan Teng ◽  
...  

Dendritic cells (DCs) play a critical role in the immune system which sense pathogens and present their antigens to prime the adaptive immune responses. As the progression of sepsis occurs, DCs are capable of orchestrating the aberrant innate immune response by sustaining the Th1/Th2 responses that are essential for host survival. Hence, an in-depth understanding of the characteristics of DCs would have a beneficial effect in overcoming the obstacle occurring in sepsis. This paper focuses on the role of DCs in the progression of sepsis and we also discuss the reverse sepsis-induced immunosuppression through manipulating the DC function. In addition, we highlight some potent immunotherapies that could be used as a novel strategy in the early treatment of sepsis.


Blood ◽  
2012 ◽  
Vol 120 (21) ◽  
pp. 3285-3285
Author(s):  
Suresh Veeramani ◽  
George J. Weiner

Abstract Abstract 3285 Background: The complement system has complex activity that impacts on the immune response in a broad variety of ways. The current study was designed to assess the effect of complement components, specifically C5a, on the immune regulatory cells and on the development of an antigen-specific active immune response. Methods: Myeloid dendritic cells (mDCs), enriched from healthy human peripheral blood mononuclear cells, were pulsed with antigen (tetanus toxoid) and co-cultured with autologous, enriched human CD4+ T cells in the presence of various purified complement components. The percent of CD4+ T-cells that were CD25highFoxp3+ (henceforth referred to as Tregs) was determined. The presence of cytokines in supernatant of mDCs cultured with purified complement proteins was also evaluated. In murine models, the effect of C5a on in vivo induction of Tregs and on the development of immune response to ovalbumin was determined by analyzing anti-ovalbumin antibody. This was done in C5-sufficient (B10-D2-HC1) and C5-deficient (B10-D2-HC0) mice immunized with 100 μg of ovalbumin, and in wild type C57Bl/6 mice immunized with 100 μg of ovalbumin along with either irrelevant rat IgG2a (Ova+Isotype control) or rat anti-mouse C5a antibody (Ova+anti-C5a Ab). Results: In Vitro: In Vivo: Conclusions: Presence of C5a in the immune microenvironment results in increased generation of Treg cells and leads to dampening of antigen-specific immune responses. Absence or depletion of C5a results in a drop in the Tregs and a higher antigen-specific immune response. Ongoing studies are exploring the use of C5a depletion as a novel strategy to overcome the low immunogenicity of vaccines, such as cancer vaccines. Disclosures: No relevant conflicts of interest to declare.


2015 ◽  
Vol 112 (11) ◽  
pp. E1333-E1342 ◽  
Author(s):  
Mauro Di Pilato ◽  
Ernesto Mejías-Pérez ◽  
Manuela Zonca ◽  
Beatriz Perdiguero ◽  
Carmen Elena Gómez ◽  
...  

Neutrophils are antigen-transporting cells that generate vaccinia virus (VACV)-specific T-cell responses, yet how VACV modulates neutrophil recruitment and its significance in the immune response are unknown. We generated an attenuated VACV strain that expresses HIV-1 clade C antigens but lacks three specific viral genes (A52R, K7R, and B15R). We found that these genes act together to inhibit the NFκB signaling pathway. Triple ablation in modified virus restored NFκB function in macrophages. After virus infection of mice, NFκB pathway activation led to expression of several cytokines/chemokines that increased the migration of neutrophil populations (Nα and Nβ) to the infection site. Nβ cells displayed features of antigen-presenting cells and activated virus-specific CD8 T cells. Enhanced neutrophil trafficking to the infection site correlated with an increased T-cell response to HIV vector-delivered antigens. These results identify a mechanism for poxvirus-induced immune response and alternatives for vaccine vector design.


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