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艾滋病进展的进化模型。

An Evolutionary Model of Progression to AIDS.

作者信息

Rouzine Igor M

机构信息

Laboratory of Computational and Quantitative Biology, 7238 CNRS-UPMC, Institut Biologie Paris-Seine, Sorbonne Université, Campus Pierre et Marie Curie, 75005 Paris, France.

出版信息

Microorganisms. 2020 Oct 31;8(11):1714. doi: 10.3390/microorganisms8111714.

Abstract

The time to the onset of AIDS symptoms in an HIV infected individual is known to correlate inversely with viremia and the level of immune activation. The correlation exists against the background of strong individual fluctuations demonstrating the existence of hidden variables depending on patient and virus parameters. At the moment, prognosis of the time to AIDS based on patient parameters is not possible. In addition, it is of paramount importance to understand the reason of progression to AIDS in untreated patients to be able to learn to control it by means other than anti-retroviral therapy. Here we develop a mechanistic mathematical model to predict the speed of progression to AIDS in individual untreated patients and patients treated with suboptimal therapy, based on a single-time measurement of several virological and immunological parameters. We show that the gradual increase in virus fitness during a chronic infection causes slow gradual depletion of CD4 T cells. Using the existing evolution models of HIV, we obtain general expressions predicting the time to the onset of AIDS symptoms in terms of the patient parameters, for low-viremia and high-viremia patients separately. We show that the evolution model of AIDS fits the existing data on virus-time correlations better than the alternative model of the deregulation of homeostatic response.

摘要

已知HIV感染者出现艾滋病症状的时间与病毒血症及免疫激活水平呈负相关。这种相关性存在于个体波动较大的背景下,表明存在取决于患者和病毒参数的隐藏变量。目前,基于患者参数预测艾滋病发病时间是不可能的。此外,了解未治疗患者进展为艾滋病的原因对于能够学会通过抗逆转录病毒疗法以外的其他方法控制病情至关重要。在此,我们基于对多个病毒学和免疫学参数的单次测量,开发了一个机械数学模型,以预测个体未治疗患者和接受次优治疗患者进展为艾滋病的速度。我们表明,慢性感染期间病毒适应性的逐渐增加会导致CD4 T细胞逐渐缓慢耗竭。利用现有的HIV进化模型,我们分别针对低病毒血症和高病毒血症患者,获得了根据患者参数预测艾滋病症状出现时间的一般表达式。我们表明,艾滋病进化模型比稳态反应失调的替代模型更符合现有的病毒-时间相关性数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c96b/7692852/cc34adc74cc2/microorganisms-08-01714-g001.jpg

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