Modeling the Effects of Helminth Infection on the Transmission Dynamics of Mycobacterium tuberculosis under Optimal Control Strategies

被引:3
|
作者
Lambura, Aristide G. [1 ,2 ]
Mwanga, Gasper G. [3 ]
Luboobi, Livingstone [1 ,4 ]
Kuznetsov, Dmitry [1 ]
机构
[1] Nelson Mandela African Inst Sci & Technol, Sch Computat & Commun Sci & Engn, POB 447, Arusha, Tanzania
[2] Ardhi Univ, Dept Comp Syst & Math, POB 35176, Dar Es Salaam, Tanzania
[3] Univ Dar Salaam, POB 2329, Dar Es Salaam, Tanzania
[4] Strathmore Univ, Inst Math Sci IMS, POB 59857, Nairobi 00200, Kenya
关键词
MATHEMATICAL-MODEL; VACCINATION;
D O I
10.1155/2020/8869377
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
A deterministic mathematical model for the transmission and control of cointeraction of helminths and tuberculosis is presented, to examine the impact of helminth on tuberculosis and the effect of control strategies. The equilibrium point is established, and the effective reproduction number is computed. The disease-free equilibrium point is confirmed to be asymptotically stable whenever the effective reproduction number is less than the unit. The analysis of the effective reproduction number indicates that an increase in the helminth cases increases the tuberculosis cases, suggesting that the control of helminth infection has a positive impact on controlling the dynamics of tuberculosis. The possibility of bifurcation is investigated using the Center Manifold Theorem. Sensitivity analysis is performed to determine the effect of every parameter on the spread of the two diseases. The model is extended to incorporate control measures, and Pontryagin's Maximum Principle is applied to derive the necessary conditions for optimal control. The optimal control problem is solved numerically by the iterative scheme by considering vaccination of infants for Mtb, treatment of individuals with active tuberculosis, mass drug administration with regular antihelminthic drugs, and sanitation control strategies. The results show that a combination of educational campaign, treatment of individuals with active tuberculosis, mass drug administration, and sanitation is the most effective strategy to control helminth-Mtb coinfection. Thus, to effectively control the helminth-Mtb coinfection, we suggest to public health stakeholders to apply intervention strategies that are aimed at controlling helminth infection and the combination of vaccination of infants and treatment of individuals with active tuberculosis.
引用
收藏
页数:21
相关论文
共 50 条
  • [21] Mycobacterium tuberculosis Infection: Control and Treatment
    Salina, Elena G.
    MICROORGANISMS, 2023, 11 (04)
  • [22] Epidemiology of Mycobacterium bovis and Mycobacterium tuberculosis in animals: Transmission dynamics and control challenges of zoonotic TB in Ethiopia
    Romha, Gebremedhin
    Gebru, Gebreyohans
    Asefa, Abrha
    Mamo, Gezahegne
    PREVENTIVE VETERINARY MEDICINE, 2018, 158 : 1 - 17
  • [23] Parameter Estimation and Optimal Control of the Dynamics Of Transmission of Tuberculosis with Application to Cameroon
    Temgoua, A.
    Malong, Y.
    Mbang, J.
    Bowong, S.
    APPLICATIONS AND APPLIED MATHEMATICS-AN INTERNATIONAL JOURNAL, 2018, 13 (02): : 952 - 974
  • [24] TRANSMISSION DYNAMICS AND OPTIMAL CONTROL OF AN AGE-STRUCTURED TUBERCULOSIS MODEL
    Guo, Zhong-Kai
    Huo, Hai-Feng
    Xiang, Hong
    JOURNAL OF APPLIED ANALYSIS AND COMPUTATION, 2024, 14 (03): : 1434 - 1466
  • [25] The dynamics of Mycobacterium tuberculosis phagosome and the fate of infection
    Zhang, Qi-ao
    Ma, Shaying
    Li, Peibo
    Xie, Jianping
    CELLULAR SIGNALLING, 2023, 108
  • [26] Modeling and analysis of transmission dynamics of tuberculosis with preventive treatment and vaccination strategies in China
    Zhao, Kailong
    Liu, Zhijun
    Guo, Caihong
    Xiang, Huili
    Liu, Lili
    Wang, Lianwen
    APPLIED MATHEMATICAL MODELLING, 2025, 138
  • [27] Transmission of Mycobacterium tuberculosis from tuberculosis patients with HIV infection or AIDS
    Cauthen, GM
    Dooley, SW
    Onorato, IM
    Ihle, WW
    Burr, JM
    Bigler, WJ
    Witte, J
    Castro, KG
    AMERICAN JOURNAL OF EPIDEMIOLOGY, 1996, 144 (01) : 69 - 77
  • [28] A novel computational fractional modeling approach for the global dynamics and optimal control strategies in mitigating Marburg infection
    Medjoudja, Meroua
    Mezabia, Mohammed El hadi
    Riaz, Muhammad Bilal
    Boudaoui, Ahmed
    Ullah, Saif
    Awwad, Fuad A.
    AIMS MATHEMATICS, 2024, 9 (05): : 13159 - 13194
  • [29] Towards optimal treatment for latent Mycobacterium tuberculosis infection
    Abubakar, Ibrahim
    Chakaya, Jeremiah
    Maeurer, Markus
    Zumla, Alimuddin
    LANCET RESPIRATORY MEDICINE, 2019, 7 (03): : 195 - 197
  • [30] Modeling the Transmission Dynamics of Bovine Tuberculosis
    Shirima Sabini, Theresia
    Ismail Irunde, Jacob
    Kuznetsov, Dmitry
    INTERNATIONAL JOURNAL OF MATHEMATICS AND MATHEMATICAL SCIENCES, 2020, 2020