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由组蛋白去乙酰化酶抑制剂帕比司他的大分子前药介导的HIV抗潜伏治疗。

HIV anti-latency treatment mediated by macromolecular prodrugs of histone deacetylase inhibitor, panobinostat.

作者信息

Zuwala Kaja, Smith Anton A A, Tolstrup Martin, Zelikin Alexander N

机构信息

Department of Chemistry , Aarhus University , Aarhus , Denmark . Email:

Department of Infectious Diseases , Aarhus University Hospital , Denmark . Email:

出版信息

Chem Sci. 2016 Mar 1;7(3):2353-2358. doi: 10.1039/c5sc03257a. Epub 2016 Jan 5.

Abstract

Histone deacetylase inhibitors (HDACi) and panobinostat in particular are currently in the focus of intensive investigation as latency reversing agents against the human immunodeficiency virus (HIV). Regretfully, HDACi have dose limiting side-effects making controlled, optimized methods for delivery of panobinostat highly warranted. This has proven to be highly challenging, predominantly because panobinostat has no readily available classic sites for bioconjugation. In this work, we address this challenge and present the first macromolecular prodrugs of panobinostat engineered using self immolative linkers (SIL) and a disulfide trigger for drug release upon cell entry. Synthetic methodology involved the development of a novel monomer with functionalities of SIL and activated ester for one-step polymer-analogous conjugation to drugs. In agreement with the design set forward, copolymers were stable in buffered solutions and released panobinostat at reducing conditions. Synthesized polymers were highly efficacious as latency reversing agents as monitored in three cell lines harboring latent HIV, at no expense to the cytotoxicity of treatment. The data presented herein provide broad pre- characterization of a promising prodrug system developed to address a global healthcare challenge, safe and efficient reversal of HIV latency.

摘要

组蛋白去乙酰化酶抑制剂(HDACi),尤其是帕比司他,目前作为抗人类免疫缺陷病毒(HIV)的潜伏逆转剂正处于深入研究的焦点。遗憾的是,HDACi具有剂量限制副作用,因此非常需要可控、优化的帕比司他递送方法。事实证明,这极具挑战性,主要是因为帕比司他没有易于利用的经典生物共轭位点。在这项工作中,我们应对了这一挑战,并展示了首个使用自毁连接子(SIL)和二硫键触发机制设计的帕比司他大分子前药,使其在细胞进入后释放药物。合成方法包括开发一种具有SIL和活化酯功能的新型单体,用于与药物进行一步聚合物类似物共轭。与预先设定的设计一致,共聚物在缓冲溶液中稳定,并在还原条件下释放帕比司他。在三种携带潜伏HIV的细胞系中监测发现,合成的聚合物作为潜伏逆转剂非常有效,且不影响治疗的细胞毒性。本文提供的数据对一种有前景的前药系统进行了广泛的预表征,该系统旨在应对全球医疗保健挑战,即安全有效地逆转HIV潜伏。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7ef/6003675/4e2d89237090/c5sc03257a-f1.jpg

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