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Updated: Jun 27, 2026

High Throughput In Vitro Assessment of Latency Reversing Agents on HIV Transcription and Splicing
Published on: January 22, 2019
Histone Deacetylase Inhibitors (HDACis) as Latency-Reversing Agents in HIV Cure Strategies: Chemistry, Selectivity,
1Department of Chemistry, College of Science, Northern Border University, Arar, 91431, Saudi Arabia.
Abstract:
Latently infected resting CD4+ T cells represent the principal barrier to HIV eradication. Their immunological quiescence renders them invisible to combination antiretroviral therapy (cART) and host immune surveillance, sustaining a reservoir that mandates lifelong treatment. The 'shock and kill' strategy seeks to reverse this latency using pharmacological latency-reversing agents (LRAs) so that immune effectors and cART can eliminate reactivated cells. In this narrative, structured review, we examine histone deacetylase inhibitors (HDACis) as LRAs from a medicinal chemistry perspective. The review places particular emphasis on structure-activity relationship (SAR), isoform selectivity, and the mechanistic basis of differential clinical performance, synthesizing evidence from preclinical, ex vivo, and clinical studies published between 2010 and 2026. Four structural classes of HDACis-hydroxamic acids, benzamides, cyclic depsipeptides, and short-chain fatty acids-differ substantially in isoform selectivity, potency, pharmacokinetics, and tolerability. No single agent has achieved statistically significant reservoir reduction in clinical trials, highlighting the apparent inadequacy of the 'shock' phase alone and suggesting a need for complementary 'kill' strategies. Rational design of HDACis informed by isoform-selective SAR, combined with emerging combination LRA strategies and immunological 'kill' components, represents a promising direction toward a functional HIV cure, though substantial translational hurdles remain.
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