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结合具有不同作用机制的药物的混合纳米载体用于淋巴 CD4 T 细胞激活和 HIV-1 潜伏期逆转。

Hybrid nanocarriers incorporating mechanistically distinct drugs for lymphatic CD4 T cell activation and HIV-1 latency reversal.

机构信息

Department of Bioengineering, University of Washington, Seattle, WA, USA.

Department of Obstetrics and Gynecology, University of Washington, Seattle, WA, USA.

出版信息

Sci Adv. 2019 Mar 27;5(3):eaav6322. doi: 10.1126/sciadv.aav6322. eCollection 2019 Mar.

Abstract

A proposed strategy to cure HIV uses latency-reversing agents (LRAs) to reactivate latent proviruses for purging HIV reservoirs. A variety of LRAs have been identified, but none has yet proven effective in reducing the reservoir size in vivo. Nanocarriers could address some major challenges by improving drug solubility and safety, providing sustained drug release, and simultaneously delivering multiple drugs to target tissues and cells. Here, we formulated hybrid nanocarriers that incorporate physicochemically diverse LRAs and target lymphatic CD4 T cells. We identified one LRA combination that displayed synergistic latency reversal and low cytotoxicity in a cell model of HIV and in CD4 T cells from virologically suppressed patients. Furthermore, our targeted nanocarriers selectively activated CD4 T cells in nonhuman primate peripheral blood mononuclear cells as well as in murine lymph nodes, and substantially reduced local toxicity. This nanocarrier platform may enable new solutions for delivering anti-HIV agents for an HIV cure.

摘要

一种治疗 HIV 的策略是使用潜伏逆转剂(LRAs)来激活潜伏的前病毒,以清除 HIV 储库。已经确定了多种 LRA,但没有一种在体内减少储库大小方面被证明是有效的。纳米载体可以通过提高药物的溶解度和安全性、提供持续的药物释放以及同时将多种药物递送到靶组织和细胞来解决一些主要挑战。在这里,我们构建了包含物理化学性质不同的 LRA 并靶向淋巴 CD4 T 细胞的混合纳米载体。我们确定了一种 LRA 组合,在 HIV 细胞模型和来自病毒学抑制患者的 CD4 T 细胞中显示出协同的潜伏逆转和低细胞毒性。此外,我们的靶向纳米载体选择性地激活了非人类灵长类动物外周血单核细胞和小鼠淋巴结中的 CD4 T 细胞,并显著降低了局部毒性。这个纳米载体平台可能为开发用于 HIV 治愈的抗 HIV 药物提供新的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeef/6436934/3f8542afd2c9/aav6322-F1.jpg

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