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瞬态温敏性乙缩醛聚合物作为一种安全有效的两性霉素 B 疫苗佐剂。

Transiently Thermoresponsive Acetal Polymers for Safe and Effective Administration of Amphotericin B as a Vaccine Adjuvant.

机构信息

Department of Pharmaceutics , Ghent University , Ottergemsesteenweg 460 , 9000 Ghent , Belgium.

Cancer Research Institute Ghent (CRIG) , Ghent University , Ghent , Belgium.

出版信息

Bioconjug Chem. 2018 Mar 21;29(3):748-760. doi: 10.1021/acs.bioconjchem.7b00641. Epub 2017 Dec 13.

Abstract

The quest for new potent and safe adjuvants with which to skew and boost the immune response of vaccines against intracellular pathogens and cancer has led to the discovery of a series of small molecules that can activate Toll-like receptors (TLRs). Whereas many small molecule TLR agonists cope with a problematic safety profile, amphotericin B (AmpB), a Food and Drug Administration approved antifungal drug, has recently been discovered to possess TLR-triggering activity. However, its poor aqueous solubility and cytotoxicity at elevated concentrations currently hampers its development as a vaccine adjuvant. We present a new class of transiently thermoresponsive polymers that, in their native state, have a phase-transition temperature below room temperature but gradually transform into fully soluble polymers through acetal hydrolysis at endosomal pH values. RAFT polymerization afforded well-defined block copolymers that self-assemble into micellar nanoparticles and efficiently encapsulate AmpB. Importantly, nanoencapsulation strongly reduced the cytotoxic effect of AmpB but maintained its TLR-triggering capacity. Studies in mice showed that AmpB-loaded nanoparticles can adjuvant an RSV vaccine candidate with almost equal potency as a highly immunogenic oil-in-water benchmark adjuvant.

摘要

为了寻找新的有效且安全的佐剂,以改变和增强针对细胞内病原体和癌症的疫苗的免疫反应,人们发现了一系列能够激活 Toll 样受体(TLRs)的小分子。虽然许多小分子 TLR 激动剂存在安全性问题,但两性霉素 B(AmpB)是一种获得美国食品和药物管理局批准的抗真菌药物,最近被发现具有 TLR 触发活性。然而,其较差的水溶性和在高浓度下的细胞毒性目前阻碍了它作为疫苗佐剂的发展。我们提出了一类新的瞬态热响应聚合物,在其天然状态下,其相转变温度低于室温,但在内涵体 pH 值下通过缩醛水解逐渐转变为完全可溶的聚合物。RAFT 聚合得到了具有明确结构的嵌段共聚物,这些共聚物自组装成胶束纳米颗粒,并有效地包封 AmpB。重要的是,纳米封装强烈降低了 AmpB 的细胞毒性,但保持了其 TLR 触发能力。在小鼠中的研究表明,负载 AmpB 的纳米颗粒可以使 RSV 疫苗候选物具有与高度免疫原性的水包油基准佐剂几乎相同的效力。

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