A comprehensive and detailed within-host modeling study involving crucial biomarkers and optimal drug regimen for type I Lepra reaction: A deterministic approach

Q2 Mathematics
D. Nayak, Bishal Chhetri, Krishna Kiran Vamsi Dasu, Swapna Muthusamy, V. Bhagat
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引用次数: 0

Abstract

Abstract Leprosy (Hansen’s disease) is an infectious, neglected tropical disease caused by the Mycobacterium Leprae (M. Leprae). About 2,02,189 new cases are diagnosed worldwide each year. Lepra reactions are an off shoot of leprosy infection causing major nerve damage leading to disability. Early detection of lepra reactions through the study of biomarkers can prevent subsequent disabilities. Motivated by these observations, in this study, we have proposed and analyzed a three-dimensional mathematical model to capture the dynamics of susceptible schwann cells, infected schwann cells, and the bacterial load based on the pathogenesis of leprosy. We did the stability analysis, numerical simulations, and also performed the sensitivity analysis using Spearman’s rank correlation coefficient, partial rank correlation coefficient, and Sobol’s index methods. We later performed the optimal control studies with both multi-drug therapy and steroid interventions as control variables. Finally, we did the comparative and effectiveness study of these different control interventions.
一项全面而详细的涉及关键生物标志物和I型Lepra反应最佳药物方案的宿主内建模研究:一种确定性方法
摘要麻风病是由麻风分枝杆菌引起的一种被忽视的热带传染病。全球每年约有202189例新确诊病例。麻风病反应是麻风病感染的一个分支,会导致严重的神经损伤,导致残疾。通过生物标志物的研究早期发现麻风反应可以预防随后的残疾。基于这些观察结果,在本研究中,我们提出并分析了一个三维数学模型,以捕捉易感雪旺细胞、受感染雪旺细胞的动力学,以及基于麻风病发病机制的细菌负荷。我们使用Spearman秩相关系数、偏秩相关系数和Sobol指数方法进行了稳定性分析、数值模拟,并进行了敏感性分析。我们随后进行了最佳对照研究,将多种药物治疗和类固醇干预作为对照变量。最后,我们对这些不同的控制干预措施进行了比较和有效性研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Computational and Mathematical Biophysics
Computational and Mathematical Biophysics Mathematics-Mathematical Physics
CiteScore
2.50
自引率
0.00%
发文量
8
审稿时长
30 weeks
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