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Research Article | Open Access

Modeling tuberculosis transmission dynamics in Algeria: Effects of vaccination, exogenous reinfection, and endogenous reactivation

Rayane Boucherma1,2Mohammed-Salah Abdelouahab2,3Messaoud Berkal2,3Taha Radwan4( )Yakup Yildirim5,6Karim K. Ahmed7
Laboratoire des Mathématiques Appliquées et Didactique, Ecole Normale Supérieure de Constantine, Constantine, Algeria
Department of Mathematics and Computer Sciences, University Abdelhafid Boussouf, Mila 43000, Algeria
Laboratory of Mathematics and Their Interactions, Abdelhafid Boussouf University, Mila 43000, Algeria
Department of Management Information Systems, College of Business and Economics, Qassim University, Buraydah 51452, Saudi Arabia
Department of Computer Engineering, Biruni University, Istanbul 34010, Turkey
Mathematics Research Center, Near East University, Nicosia 99138, Cyprus
Department of Mathematics, Faculty of Engineering, German International University (GIU), New Administrative Capital, Cairo, Egypt
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Abstract

This paper developed a novel nonlinear Susceptible–Vaccinated–Exposed–Infectious–Treated–Recovered–Susceptible (SVEITRS) compartmental model to investigate the transmission dynamics of tuberculosis (TB) in Algeria over the period between 1990–2024, explicitly accounting for partial Bacillus Calmette-Guérin (BCG) vaccine efficacy, endogenous reactivation of latent infection, and exogenous reinfection. The basic reproduction number R 0 was derived using the next-generation matrix approach, and rigorous analytical results were established for the local and global stability of both the disease-free and endemic equilibrium points. Model parameters were estimated by fitting the model to Algerian TB surveillance data, achieving a coefficient of determination of R 2 = 0.84, which indicates a strong agreement between the model predictions and reported epidemiological trends. A global sensitivity analysis based on partial rank correlation coefficients (PRCCs) reveals that demographic recruitment and transmission-related parameters exert the greatest influence on TB dynamics, whereas intervention-related parameters such as vaccination and treatment rates have a comparatively weaker impact. These findings indicate that vaccination alone is insufficient to eliminate TB and highlight the need for integrated control strategies that combine sustained vaccination coverage, early case detection, and effective management of latent infections. The proposed modeling framework provides a quantitative basis for evaluating TB control policies in high-burden settings such as Algeria.

CLC number: 34A55, 92D30, 62F10

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AIMS Mathematics
Pages 13339-13370

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Cite this article:
Boucherma R, Abdelouahab M-S, Berkal M, et al. Modeling tuberculosis transmission dynamics in Algeria: Effects of vaccination, exogenous reinfection, and endogenous reactivation. AIMS Mathematics, 2026, 11(5): 13339-13370. https://doi.org/10.3934/math.2026550

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Received: 25 February 2026
Revised: 26 April 2026
Accepted: 08 May 2026
Published: 15 May 2026
©2026 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)