Transmission dynamics of dengue–Zika co-infection with antibody-dependent enhancement, cross-immunity, and vaccination: backward bifurcation analysis and data calibration
Keywords:
Dengue–Zika co-infection, Antibody-dependent enhancement, Backward bifurcation, Dengue vaccination, Vector controlAbstract
The co-circulation of dengue virus (DENV) and Zika virus (ZIKV) in Aedes aegypti-endemic regions creates a significantly more dangerous epidemiological landscape than either pathogen alone. Yet no existing model simultaneously incorporates antibody-dependent enhancement (ADE), dual Zika transmission routes, synergistic co-infection mortality, dengue vaccination, and calibration against confirmed co-endemic surveillance data. We address this gap by developing a sixteen-compartment deterministic model that captures ADE through susceptibility multipliers epsilon_1 and epsilon_2, partial cross-immunity, imperfect dengue vaccination, and both vector-borne and sexual Zika transmission. We derived the disease-free equilibrium and obtained closed-form expressions for the component reproduction numbers mathcal{R}_{0d} and mathcal{R}_{0z}. The overall reproduction number mathcal{R}_0 = rho(FV^{-1}), computed as the spectral radius of the 8 X 8 next-generation matrix, satisfies mathcal{R}_0 geq max{mathcal{R}_{0d}, mathcal{R}_{0z}}, with equality only when the linear cross-infection parameters beta_{z3}, beta_{vd2}, beta_{vz2} are zero. All co-infection effects, including ADE, are confined to the nonlinear regime. This confirms that single-disease models can systematically underestimate epidemic risk during co-circulation. Local asymptotic stability of the disease-free equilibrium when mathcal{R}_0 < 1, uniform persistence when mathcal{R}_0 > 1, and the existence of at least one endemic equilibrium are established. Centre manifold analysis reveals backward bifurcation in both submodels, implying that reducing \mathcal{R}_0 below unity is necessary but not sufficient for disease elimination. The model was calibrated using 36 weeks of SINAN surveillance data from Esp\'{i}rito Santo state, Brazil (January--September 2021), yielding key fitted parameters: b^* = 1.278~wk^{-1}, beta_d^* = 0.749, beta_{z2}^* = 0.161, beta_{vd1}^* = 0.118, and beta_{vz1}^* = 0.252, with Pearson correlations of r = 0.594 (dengue) and r = 0.739 (Zika). Sensitivity analysis identifies the mosquito biting rate b and vector mortality \mu_v as the dominant intervention targets. Simulations reveal super-linear amplification of co-infections with rising biting rates and a 120-fold suppression of peak dengue incidence when vector mortality doubles. These findings support an integrated control strategy in which sustained vector management is the most cost-effective lever, complemented by improved healthcare access and high-coverage dengue vaccination to mitigate ADE-driven amplification.
Published
How to Cite
Issue
Section
Copyright (c) 2026 Thomas U. Onoja, Benson A. E. Afere, Ayodele Gabriel Fasanya, Sunday Yomi, Bolarinwa Bolaji (Author)

This work is licensed under a Creative Commons Attribution 4.0 International License.
How to Cite
Similar Articles
- Akeem Olarewaju Yunus, Morufu Oyedunsi Olayiwola, The analysis of a novel COVID-19 model with the fractional-order incorporating the impact of the vaccination campaign in Nigeria via the Laplace-Adomian Decomposition Method , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 2, May 2024
- D. D. Bwede, R. A. Wuana, G. O. Egah, A. U. Itodo, E. Ogah, E. A. Yerima, A. I. Ibrahim, Characterization and Evaluation of Human Health Risk of Heavy Metals in Tin Mine Tailings in Selected Area of Plateau State, Nigeria , Journal of the Nigerian Society of Physical Sciences: Volume 3, Issue 4, November 2021
- Gabriel O. Odekina, Adedayo F. Adedotun, Ogbu F. Imaga, Modeling and Forecasting the Third wave of Covid-19 Incidence Rate in Nigeria Using Vector Autoregressive Model Approach , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 1, February 2022
- Olusegun Olotu, Charles Aladesaye, Kazeem Adebowale Dawodu, Modified Gradient Flow Method for Solving One-Dimensional Optimal Control Problem Governed by Linear Equality Constraint , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 1, February 2022
- Fatmawati, Faishal F. Herdicho, Nurina Fitriani, Norma Alias, Mazlan Hashim, Olumuyiwa J. Peter, Optimal control strategies for dynamical model of climate change under real data , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 3, August 2025
- A. O. Sangotola, S. B. Adeyemo, O. A. Nuga, A. E. Adeniji, A. J. Adigun, A tuberculosis model with three infected classes , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 1, February 2024
- A. Murali, K. Muthunagai, Some theorems on fixed points in bi-complex valued metric spaces with an application to integral equations , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 2, May 2024
- Muhammad Farman, Noreen Asghar, Muhammad Umer Saleem, Nezihal Gokbulut, Evren Hincal, Aseel Smerat, Mohamed Hafez, Optimal control of smoking-induced asthma and cardiovascular disorders with medical and public health interventions , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 3, August 2026 (In Progress)
- Kazeem adebowale Dawodu, Extension of ADMMAlgorithmin Solving Optimal Control Model Governed by Partial Differential Equation , Journal of the Nigerian Society of Physical Sciences: Volume 3, Issue 2, May 2021
- Felix Yakubu Eguda, Andrawus James, Sunday Babuba, The Solution of a Mathematical Model for Dengue Fever Transmission Using Differential Transformation Method , Journal of the Nigerian Society of Physical Sciences: Volume 1, Issue 3, August 2019
You may also start an advanced similarity search for this article.
Most read articles by the same author(s)
- Bolarinwa Bolaji, Abdullahi Ibrahim, Favour Ani, Benjamin Omede, Godwin Acheneje, A model for the control of transmission dynamics of human monkeypox disease in Sub-Saharan Africa , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 2, May 2024
- Bolarinwa Bolaji, B. I. Omede, U. B. Odionyenma, P. B. Ojih, Abdullahi A. Ibrahim, Modelling the transmission dynamics of Omicron variant of COVID-19 in densely populated city of Lagos in Nigeria , Journal of the Nigerian Society of Physical Sciences: Volume 5, Issue 2, May 2023

