MODELING DIPHTHERIA TRANSMISSION AND CONTROL STRATEGIES IN NIGERIA USING A COMPARTMENTAL MODEL APPROACH
Keywords:
Keywords: Diphtheria modeling; Mathematical modeling; Infectious diseases; Epidemiology; Intervention Strategies; Basic reproduction numberAbstract
Diphtheria remains a significant public health concern in many developing countries,
particularly in regions characterized by low immunization coverage and undiagnosed
infections. One of the major challenges in controlling the disease is the often
overlooked contribution of asymptomatic individuals, who may silently sustain and
propagate transmission within the population. This study develops a deterministic
diphtheria vaccine–treatment model to describe the transmission dynamics of
diphtheria within the Nigerian population and to evaluate the impact of different
vaccination and treatment strategies on disease prevention and control. Model
parameters were estimated using reported diphtheria incidence data obtained from
the Nigeria Centre for Disease Control covering the period from 1 December 2022 to
31 July 2023. The basic reproduction number, (R0), was derived analytically, and the
estimated mean value of (R0 = 6.010) indicates sustained endemic transmission and
suggests that existing intervention strategies are insufficient to effectively curtail
disease spread. Sensitivity analysis identified key epidemiological parameters driving
diphtheria transmission dynamics, including the recruitment rate, waning immunity rate
from fully vaccinated individuals to the susceptible class, asymptomatic transmission
rate, and waning immunity rate from partially vaccinated individuals to susceptibles.
The findings underscore the critical need for comprehensive control strategies that
extend beyond symptomatic case management. Such strategies should include
sustained immunization campaigns, booster vaccination programmes, enhanced
surveillance, and targeted interventions aimed at reducing asymptomatic transmission.
The proposed model provides valuable quantitative insights for evidence-based
diphtheria prevention and control policies, particularly in resource-constrained
settings.
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