Abstract:
:While viral latency remains one of the biggest challenges for successful antiviral therapy, it has also inspired mathematical modelers to develop dynamical system approaches with the aim of predicting the impact of drug efficacy on disease progression and the persistence of latent viral reservoirs. In this review we present several differential equation models and assess their relative success in giving advice to the working clinician and their predictive power for inferring long term viral eradication from short term abatement. Many models predict that there is a considerable likelihood of viral rebound due to continuous reseeding of latent reservoirs. Most mathematical models of HIV latency suffer from being reductionist by ignoring the growing variety of different cell types harboring latent virus, the considerable intercellular delay involved in reactivation, and host-related epigenetic modifications which may alter considerably the dynamical system of immune cell populations.
journal_name
Curr Opin Viroljournal_title
Current opinion in virologyauthors
Selinger C,Katze MGdoi
10.1016/j.coviro.2013.06.015subject
Has Abstractpub_date
2013-08-01 00:00:00pages
402-7issue
4eissn
1879-6257issn
1879-6265pii
S1879-6257(13)00109-0journal_volume
3pub_type
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journal_title:Current opinion in virology
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