TL;DR
This paper introduces a mathematical model demonstrating that hybrid spreading mechanisms, combining cell-free and cell-to-cell transmission, are crucial for HIV-1 infection progression and influence treatment strategies.
Contribution
The study develops a new mathematical model explicitly incorporating hybrid spreading mechanisms, revealing their role in HIV-1 infection dynamics and treatment resistance.
Findings
Hybrid spreading is essential for establishing infection.
Cell-to-cell spread increases with disease progression.
Targeting cell-to-cell transmission can delay AIDS onset.
Abstract
HIV-1 can disseminate between susceptible cells by two mechanisms: cell-free infection following fluid-phase diffusion of virions and by highly-efficient direct cell-to-cell transmission at immune cell contacts. The contribution of this hybrid spreading mechanism, which is also a characteristic of some important computer worm outbreaks, to HIV-1 progression in vivo remains unknown. Here we present a new mathematical model that explicitly incorporates the ability of HIV-1 to use hybrid spreading mechanisms and evaluate the consequences for HIV-1 pathogenenesis. The model captures the major phases of the HIV-1 infection course of a cohort of treatment naive patients and also accurately predicts the results of the Short Pulse Anti-Retroviral Therapy at Seroconversion (SPARTAC) trial. Using this model we find that hybrid spreading is critical to seed and establish infection, and that…
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