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Updated: Oct 2, 2025

Evaluation of Host-Pathogen Responses and Vaccine Efficacy in Mice
Published on: February 22, 2019
Predictors of Survival after Vaccination in a Pneumonic Plague Model
Barry D Moore1, Clair Macleod1, Lisa Henning2
1Department of Pure and Applied Chemistry, University of Strathclyde, Glasgow G1 1XQ, UK.
Abstract:
Background: The need for an updated plague vaccine is highlighted by outbreaks in endemic regions together with the pandemic potential of this disease. There is no easily available, approved vaccine. Methods: Here we have used a murine model of pneumonic plague to examine the factors that maximise immunogenicity and contribute to survival following vaccination. We varied vaccine type, as either a genetic fusion of the F1 and V protein antigens or a mixture of these two recombinant antigens, as well as antigen dose-level and formulation in order to correlate immune response to survival. Results: Whilst there was interaction between each of the variables of vaccine type, dose level and formulation and these all contributed to survival, vaccine formulation in protein-coated microcrystals (PCMCs) was the key contributor in inducing antibody titres. From these data, we propose a cut-off in total serum antibody titre to the F1 and V proteins of 100 µg/mL and 200 µg/mL, respectively. At these thresholds, survival is predicted in this murine pneumonic model to be >90%. Within the total titre of antibody to the V antigen, the neutralising antibody component correlated with dose level and was enhanced when the V antigen in free form was formulated in PCMCs. Antibody titre to F1 was limited by fusion to V, but this was compensated for by PCMC formulation. Conclusions: These data will enable clinical assessment of this and other candidate plague vaccines that utilise the same vaccine antigens by identifying a target antibody titre from murine models, which will guide the evaluation of clinical titres as serological surrogate markers of efficacy.
Insights
Developing an effective plague vaccine is crucial due to disease outbreaks. Protein-coated microcrystals (PCMCs) significantly boosted antibody levels and survival in a murine model, identifying key antibody targets for vaccine efficacy.
Area of Science:
- * Vaccinology and immunology
- * Infectious disease research
- * Bacterial pathogenesis
Background:
- * Urgent need for an updated plague vaccine due to recurrent outbreaks and pandemic potential.
- * Lack of readily available and approved vaccines for plague.
- * Pneumonic plague poses a significant public health threat.
Purpose of the Study:
- * To identify factors maximizing immunogenicity and survival in a murine model of pneumonic plague.
- * To evaluate different vaccine types, antigen doses, and formulations.
- * To correlate immune responses with survival outcomes.
Main Methods:
- * Utilized a murine model of pneumonic plague.
- * Tested vaccine strategies including genetic fusion vs. mixture of F1 and V antigens.
- * Varied antigen dose and formulation (protein-coated microcrystals - PCMCs).
Main Results:
- * Vaccine formulation in PCMCs was the primary driver of antibody titers.
- * Proposed antibody titer cut-offs for >90% survival: 100 µg/mL for F1 and 200 µg/mL for V.
- * Neutralizing antibody response to V antigen correlated with dose and was enhanced by PCMC formulation.
Conclusions:
- * PCMC formulation is critical for enhancing plague vaccine immunogenicity.
- * Identified target antibody titers in a murine model to guide clinical evaluation.
- * These findings will aid in developing serological surrogate markers for plague vaccine efficacy.
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