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Modeling the role of acquired immune response and antiretroviral therapy in the dynamics of HIV infection

机译:模拟获得性免疫应答和抗逆转录病毒疗法在HIV感染动态中的作用

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This paper deals with the study of a virus dynamics model in order to get better insights into HIV infection within the body. The model incorporates therapeutic modalities such as reverse transcriptase inhibitors (RTIs) and protease inhibitors (PIs). RTIs prevent viral replication/entry within the infected CD4~+ T cells while PIs block the virus assembly and thus further propagation and production of new virions. The proliferation of uninfected CD4~+ T cells has been assumed to be as full logistic growth term to capture the dynamics of HIV virus. The model also considers two important components of the acquired immune response, namely the cytotoxic T lymphocyte (CTL) immune response (self stimulation due to infection and stimulation due to infected cells have been considered) and antibody immune response. Critical threshold conditions for the existence of equilibrium points have been determined. We studied the analytical behavior of these equilibrium points locally as well as globally using Lasalle's invariance principle and Lyapunov's direct method. We explored the sensitivity of the therapeutic drugs on the model system. Further, the behavior of the proposed model system has been studied numerically through simulation tools.
机译:本文旨在研究病毒动力学模型,以便更好地了解人体中的HIV感染情况。该模型结合了治疗手段,例如逆转录酶抑制剂(RTIs)和蛋白酶抑制剂(PIs)。 RTI阻止了受感染的CD4 + T细胞内的病毒复制/进入,而PI阻止了病毒的装配,从而进一步繁殖和生产了新的病毒粒子。未感染的CD4〜+ T细胞的增殖被认为是捕获HIV病毒动力学的完整逻辑增长期。该模型还考虑了获得性免疫应答的两个重要组成部分,即细胞毒性T淋巴细胞(CTL)免疫应答(已考虑到由于感染引起的自我刺激和由于感染细胞引起的刺激)和抗体免疫应答。已经确定了存在平衡点的临界阈值条件。我们使用Lasalle的不变性原理和Lyapunov的直接方法研究了本地和全球这些平衡点的分析行为。我们探索了模型系统上治疗药物的敏感性。此外,已通过仿真工具对提出的模型系统的行为进行了数值研究。

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