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A simple, clinically relevant therapeutic vaccine shows long-term protection in an aggressive, delayed-treatment B lymphoma model
Pallab Pradhan, Jardin Leleux, Jiaying Liu, Krishnendu Roy
Pallab Pradhan, Jardin Leleux, Jiaying Liu, Krishnendu Roy
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Research Article Immunology Vaccines

A simple, clinically relevant therapeutic vaccine shows long-term protection in an aggressive, delayed-treatment B lymphoma model

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Abstract

Despite initial remission after successful treatments, B lymphoma patients often encounter relapses and resistance causing high mortality. Thus, there is a need to develop therapies that prevent relapse by providing long-term protection and, ultimately, lead to functional cure. In this study, our goal was to develop a simple, clinically relevant, and easily translatable therapeutic vaccine that provides durable immune protection against aggressive B cell lymphoma and identify critical immune biomarkers that are predictive of long-term survival. In a delayed-treatment, aggressive, murine model of A20 B lymphoma that mimics human diffuse large B cell lymphoma, we show that therapeutic A20 lysate vaccine adjuvanted with an NKT cell agonist, α-galactosylceramide (α-GalCer), provides long-term immune protection against lethal tumor challenges and the antitumor immunity is primarily CD8 T cell dependent. Using experimental and computational methods, we demonstrate that the initial strength of germinal center reaction and the magnitude of class-switching into a Th1 type humoral response are the best predictors for the long-term immunity of B lymphoma lysate vaccine. Our results not only provide fundamentally insights for successful immunotherapy and long-term protection against B lymphomas, but also present a simple, therapeutic vaccine that can be translated easily due to the facile and inexpensive method of preparation.

Authors

Pallab Pradhan, Jardin Leleux, Jiaying Liu, Krishnendu Roy

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Figure 3

Cellular immune responses for various therapeutic A20 lysate vaccine formulations.

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Cellular immune responses for various therapeutic A20 lysate vaccine for...
(A) Time line for mechanistic studies. BALB/C mice (n = 5–6) were first injected with 2 × 105 A20 tumor cells on day 1 and then immunized with the formulations on day 8, 10, and 14. Thereafter, a single i.p. injection of 2 μg α-GalCer was done at day 17 only in α-GalCer treatment groups. On day 21, all the mice were sacrificed and spleens were collected and analyzed for CTL, NKT, and NK cell responses by flow cytometry. (B) CD4+ and CD8+ T cell–mediated CTL response by granzyme B assay. Effector CD4+ and CD8+ T cells were magnetically sorted from pooled splenocytes for each group. (C) Box plot showing NKT cell percentage in splenocytes (n = 6). (D) Box plot showing NK cell percentage in splenocytes (n = 6). (E and F) IFN-γ (Th1 cytokine) and IL4 (Th2 cytokine) secreted by splenocytes following ex vivo restimulation with A20 lysate antigens (n = 6). Splenocytes (106/well of 96-well plate) were restimulated with A20 lysate (100 μg/well) for 72 hours in vitro, and the culture media were analyzed for various Th1/Th2 cytokines using a multiplex luminex kit. (G) Box plot showing percentage of granulocytic MDSCs in CD11b+ splenocytes (n = 6). (H) Treg percentage in spleen CD4+ T cells (n = 5–6). Data represent mean ± SD. *P < 0.05, **P < 0.01, ***P < 0.001, 1-way ANOVA with Tukey multiple comparison tests.

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