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限制 HIV 耐药突变传播的因素:适应性成本和遗传瓶颈。

Factors limiting the transmission of HIV mutations conferring drug resistance: fitness costs and genetic bottlenecks.

机构信息

Center for Biomedical Modeling, Semel Institute for Neuroscience and Human Behavior, David Geffen School of Medicine, University of California Los Angeles, Los Angeles, California, USA.

出版信息

Sci Rep. 2012;2:320. doi: 10.1038/srep00320. Epub 2012 Mar 19.

Abstract

Transmission of HIV strains with drug-resistance mutations (DRMs) causes public health problems in resource-rich countries. We use a stochastic model, with data from viral competition experiments, to analyze the effect of fitness costs (FCs) and genetic bottlenecks on limiting transmission of 10 clinically significant DRMs. Transmission of DRMs with low FCs (∼0.2%) is similar to wild-type; transmission chains last ∼8 generations causing clusters of ∼60 infected individuals. Genetic bottlenecks substantially limit transmission of DRMs with moderately high FCs (∼0.6%); chains last ∼1-3 generations with transmission clusters of 2-7. Transmission of DRMs with extremely high FCs (>6%) only occurs from ∼5% of index cases. DRMs can revert to wild-type and remain as minority strains, within treatment-naïve individuals, undetectable by current resistance assays. We calculate, based on assay sensitivity, the length of time each DRM is detectable within individuals. Taken together, our results imply a hidden epidemic of transmitted resistance may exist.

摘要

耐药突变(DRMs)的 HIV 株传播会在资源丰富的国家引发公共卫生问题。我们使用一种随机模型,结合病毒竞争实验的数据,分析了适应性成本(FCs)和遗传瓶颈对限制传播 10 种临床显著 DRMs 的影响。具有低 FCs(约 0.2%)的 DRMs 的传播与野生型相似;传播链持续约 8 代,导致约 60 名感染者的集群。具有中度高 FCs(约 0.6%)的 DRMs 的遗传瓶颈会严重限制其传播;链条持续约 1-3 代,传播集群为 2-7。具有极高 FCs (>6%)的 DRMs 仅能从约 5%的首发感染病例中传播。DRMs 可以回复为野生型并作为少数菌株存在于未经治疗的个体中,目前的耐药性检测方法无法检测到。我们根据检测灵敏度计算了每种 DRM 在个体中可检测到的时间长度。综上所述,我们的研究结果表明可能存在隐匿性的传播耐药性流行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9086/3307053/4417d151960a/srep00320-f1.jpg

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