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A mathematical model for CTL effect on a latently infected cell inclusive HIV dynamics and treatment

机译:一种数学模型对潜伏细胞包容性HIV动力学和治疗的CTL效应

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This paper investigates theoretically and numerically the effect of immune effectors, such as the cytotoxic lymphocyte (CTL), in modeling HIV pathogenesis (via a newly developed mathematical model); our results suggest the significant impact of the immune response on the control of the virus during primary infection. Qualitative aspects (including positivity, boundedness, stability, uncertainty, and sensitivity analysis) are addressed. Additionally, by introducing drug therapy, we analyze numerically the model to assess the effect of treatment consisting of a combination of several antiretroviral drugs. Our results show that the inclusion of the CTL compartment produces a higher rebound for an individual's healthy helper T-cell compartment than drug therapy alone. Furthermore, we quantitatively characterize successful drugs or drug combination scenarios.
机译:本文在理论上和数值上调查免疫效应器,例如细胞毒性淋巴细胞(CTL),在造型HIV发病机制中的影响(通过新开发的数学模型);我们的研究结果表明免疫反应对原发性感染期间病毒控制的重大影响。解决了定性方面(包括积极性,有界,稳定性,不确定性和敏感性分析)。另外,通过引入药物治疗,我们分析了数值模型,以评估由几种抗逆转录病毒药物组合组成的治疗的效果。我们的研究结果表明,包含CTL隔间的纳入量为个体健康的辅助T细胞舱比单独药物治疗产生更高的反弹。此外,我们定量表征成功的药物或药物组合情景。

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