2020
DOI: 10.1101/2020.01.19.911594
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Modeling SIV kinetics supports that cytotoxic response drives natural control and unravels heterogeneous populations of infected cells

Abstract: One sentence summary: Modeling viral dynamics in SIV natural controller macaques predicts that viral control is primarily driven by the capability to establish an efficient cytotoxic response and the viral decline during control unravels distinct compartments of infected cells. Abstract:SIVmac 251 -infected Mauritius cynomolgus macaques presenting a M6 MHC haplotype or challenged with a low inoculum dose by mucosal route are models for natural HIV control.Here we characterized by modeling the dynamics of plasm… Show more

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Cited by 2 publications
(1 citation statement)
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“…We provide several arguments supporting that the progressive enhancement of the capacity of CD8 + T cells to suppress SIV infection led to the establishment of controlled viremia, rather than evolving as a consequence of viral control. Because the dynamics of control were not homogeneous, we established a mathematical model to predict the development of effective immune-mediated control of SIV in our study (Madelain et al, 2020). Importantly, the model was constructed using SIV-RNA and SIV-DNA data exclusively from VIRs and SICs.…”
Section: Discussionmentioning
confidence: 99%
“…We provide several arguments supporting that the progressive enhancement of the capacity of CD8 + T cells to suppress SIV infection led to the establishment of controlled viremia, rather than evolving as a consequence of viral control. Because the dynamics of control were not homogeneous, we established a mathematical model to predict the development of effective immune-mediated control of SIV in our study (Madelain et al, 2020). Importantly, the model was constructed using SIV-RNA and SIV-DNA data exclusively from VIRs and SICs.…”
Section: Discussionmentioning
confidence: 99%