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Reduction of HIV Infection that Includes a Delay with Cure Rate During Long Term Treatment: A Mathematical Study

机译:减少长期治疗中包括延迟治愈率的艾滋病毒感染:一项数学研究

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摘要

Progress towards antiviral treatment of HIV infected individual has largely been improved in recent years. From amassed literature it has been observed that antiviral treatment during disease progression can develop CTL and these CTL has an immense importance to control the disease progression. During long term treatment, CD4 and CD8 mediated immune response take part in an effective role against HIV and thus virus load is abridged monotonically or else high virus load leads to have weak immunity. Here we extended our work (Roy PK, Chatterjee AN, Chattopadhyay B (2010) Lecture notes in engineering and computer science: proceedings of the World Congress on engineering 2010:533-538) and further introduced a population model representing long term dynamics of HIV infection in response to available drug therapies considering a cure rate and a discrete time delay in the disease transmission term. We studied the model in different avenue. Our studies reveal that delay in the disease transmission term competes with the killing rate of infected T-cells as well as stimulation rate of CTL. Increasing of delay in this case makes the system progressively unstable and when delay reach to its threshold value, a periodical solution arise through Hopf bifurcation. It is also been observed that increasing value of cure rate could be able to improvise towards stability of the system inspite of delay effect.
机译:近年来,在艾滋病毒感染者的抗病毒治疗方面取得了很大进步。从大量文献中已经观察到,疾病进展过程中的抗病毒治疗可以发展CTL,而这些CTL在控制疾病进展中具有极其重要的意义。在长期治疗中,CD4和CD8介导的免疫反应参与了对抗HIV的有效作用,因此病毒载量单调减少,否则高病毒载量导致免疫力较弱。在这里,我们扩展了工作范围(Roy PK,Chatterjee AN和Chattopadhyay B(2010)工程和计算机科学讲座笔记:2010年世界工程大会论文集:533-538),并进一步介绍了代表艾滋病毒长期动态的人口模型考虑到治愈率和疾病传播期间的离散时间延迟,对可用药物疗法做出回应。我们研究了不同途径的模型。我们的研究表明,疾病传播期的延迟与被感染T细胞的杀灭率以及CTL的刺激率竞争。在这种情况下,延迟的增加会使系统逐渐不稳定,并且当延迟达到其阈值时,会通过Hopf分支产生周期性的解决方案。还观察到,尽管有延迟作用,但提高固化速率的值仍可改善体系的稳定性。

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  • 会议地点 London(GB);London(GB);London(GB)
  • 作者单位

    Centre for Mathematical Biology and Ecology, Department of Mathematics,Jadavpur University, Kolkata 700032, India;

    Centre for Mathematical Biology and Ecology, Department of Mathematics,Jadavpur University, Kolkata 700032, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 半导体技术;
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