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1.
Int J Med Chem ; 2017: 4852537, 2017.
Article in English | MEDLINE | ID: mdl-29201461

ABSTRACT

Antagonism of the adenosine A2A receptor on T cells blocks the hypoxia-adenosinergic pathway to promote tumor rejection. Using an in vivo immunoassay based on the Concanavalin A mouse model, a series of A2A antagonists were studied and identified preladenant as a potent lead compound for development. Molecular modeling was employed to assist drug design and subsequent synthesis of analogs and those of tozadenant, including fluorinated polyethylene glycol PEGylated derivatives. The efficacy of the analogs was evaluated using two in vitro functional bioassays, and compound 29, a fluorinated triethylene glycol derivative of preladenant, was confirmed as a potential immunotherapeutic agent.

2.
Cell Rep ; 21(13): 3672-3680, 2017 12 26.
Article in English | MEDLINE | ID: mdl-29281817

ABSTRACT

Rapidly evolving pathogens such as HIV or influenza can quickly mutate their antigenic profiles, reducing the efficacy of conventional vaccines. Despite this challenge, functionally required epitopes are highly conserved among heterologous viral strains and represent a key vulnerability that could be targeted during vaccine development. As the antigenicity of these conserved epitopes is frequently subdominant, there is a critical need for innovative vaccination strategies designed to target these neutralizing epitopes. Here, we immunized mice with antigens containing discrete immunodominant and subdominant moieties and show that treatment with soluble heterologous antigen bearing only the immunodominant epitope selectively suppresses these germinal center (GC) B cells. By exploiting this intrinsic tolerance mechanism, we promote the expansion of subdominant B cells in the GC and the subsequent long-lived components of the humoral response. We propose that this strategy may be applied to elicit preferential expansion of subdominant B cells that recognize weakly immunogenic epitopes on microbial pathogens.


Subject(s)
B-Lymphocytes/metabolism , Germinal Center/metabolism , Immunodominant Epitopes/metabolism , Animals , Antibody Formation , Cell Count , Clone Cells , Mice, Inbred C57BL , Nitrophenols/chemistry , Ovalbumin/immunology , Phenylacetates/chemistry , Plasma Cells/metabolism , Solubility
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