Key result
CVB vaccines did not alter islet inflammation or accelerate disease progression in female NOD mice, but successfully prevented CVB-mediated accelerated diabetes onset.
Why the study?
Before clinical trials, it was important to determine whether a CVB vaccine induces adverse immune reactions or accelerates diabetes onset in a diabetes-prone host, and whether it prevents CVB-induced diabetes.
Does CVB vaccination prevent CVB-induced diabetes and avoid accelerating diabetes onset in female NOD mice?
Does CVB vaccination prevent CVB-induced diabetes and avoid accelerating diabetes onset in female NOD mice?
CVB vaccines are safe and effective in preventing CVB-accelerated diabetes in a preclinical NOD mouse model, supporting their advancement to clinical trials.
CVB vaccines appear safe without accelerating diabetes in NOD mice; leaves open translation to human prevention trials.
Enteroviruses, including the Coxsackievirus Bs (CVB), have been implicated as causal agents in human type 1 diabetes. Immunization of at-risk individuals with a CVB vaccine provides an attractive strategy for elucidating the role of CVBs in the disease etiology. Previously, we have shown that an inactivated whole-virus vaccine covering all CVB serotypes (CVB1–6) is safe to administer and highly immunogenic in preclinical models, including nonhuman primates. Before initiating clinical trials with this type of vaccine, it was also important to address 1) whether the vaccine itself induces adverse immune reactions, including accelerating diabetes onset in a diabetes-prone host, and 2) whether the vaccine can prevent CVB-induced diabetes in a well-established disease model. Here, we present results from studies in which female NOD mice were left untreated, mock-vaccinated, or vaccinated with CVB1–6 vaccine and monitored for insulitis occurrence or diabetes development. We demonstrate that vaccination induces virus-neutralizing antibodies without altering insulitis scores or the onset of diabetes. We also show that NOD mice vaccinated with a CVB1 vaccine are protected from CVB-induced accelerated disease onset. Taken together, these studies show that CVB vaccines do not alter islet inflammation or accelerate disease progression in an animal model that spontaneously develops autoimmune type 1 diabetes. However, they can prevent CVB-mediated disease progression in the same model.
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Stone et al. (2021) studied Type 1 diabetes. CVB1-6 vaccine and CVB1 vaccine vs. Untreated or mock-vaccinated was evaluated on Insulitis occurrence or diabetes development. CVB vaccines did not alter islet inflammation or accelerate disease progression in female NOD mice, but successfully prevented CVB-mediated accelerated diabetes onset.
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