A ROS-Responsive Dimeric Prodrug Nanoassembly for Amplified Epigenetic Therapy of Lymphoma.
The clinical utility of histone deacetylase inhibitors (HDACi) like vorinostat (SAHA) in lymphoma is constrained by poor pharmacokinetics and off-target toxicity.
APA
Li T, Zhuang W, et al. (2026). A ROS-Responsive Dimeric Prodrug Nanoassembly for Amplified Epigenetic Therapy of Lymphoma.. Journal of medicinal chemistry, 69(5), 5677-5690. https://doi.org/10.1021/acs.jmedchem.5c02897
MLA
Li T, et al.. "A ROS-Responsive Dimeric Prodrug Nanoassembly for Amplified Epigenetic Therapy of Lymphoma.." Journal of medicinal chemistry, vol. 69, no. 5, 2026, pp. 5677-5690.
PMID
41764633
Abstract
The clinical utility of histone deacetylase inhibitors (HDACi) like vorinostat (SAHA) in lymphoma is constrained by poor pharmacokinetics and off-target toxicity. To address this, we developed a reactive oxygen species (ROS)-responsive homodimeric SAHA prodrug (SAHA-tk-SAHA) linked via a thioketal bridge, which self-assembled into PEGylated nanoparticles (tk-diSAHA NP). These monodisperse nanoparticles (119.3 ± 4.0 nm) demonstrated excellent stability and ROS-triggered drug release (68.18 ± 2.25% with 10 mM HO vs 6.24% in PBS over 48 h). , tk-diSAHA NP induced G/G cell cycle arrest and apoptosis in lymphoma cells. In A20 lymphoma-bearing mice, intravenous tk-diSAHA NP achieved superior tumor growth inhibition (615.18 ± 147.88 mm) compared to oral SAHA (1134.78 ± 311.31 mm, < 0.05), with enhanced histone H3 acetylation in tumors and no appreciable systemic toxicity. This ROS-activatable nanoprodrug platform presents a promising strategy to enhance the efficacy and safety of HDACi-based epigenetic therapy for lymphoma.
MeSH Terms
Prodrugs; Reactive Oxygen Species; Animals; Lymphoma; Humans; Nanoparticles; Mice; Vorinostat; Histone Deacetylase Inhibitors; Epigenesis, Genetic; Antineoplastic Agents; Cell Line, Tumor; Apoptosis; Drug Liberation; Cell Proliferation
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