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纳米颗粒状的STING激动剂是有效的淋巴结靶向疫苗佐剂。

Nanoparticulate STING agonists are potent lymph node-targeted vaccine adjuvants.

作者信息

Hanson Melissa C, Crespo Monica P, Abraham Wuhbet, Moynihan Kelly D, Szeto Gregory L, Chen Stephanie H, Melo Mariane B, Mueller Stefanie, Irvine Darrell J

出版信息

J Clin Invest. 2015 Jun;125(6):2532-46. doi: 10.1172/JCI79915. Epub 2015 May 4.

Abstract

Cyclic dinucleotides (CDNs) are agonists of stimulator of IFN genes (STING) and have potential as vaccine adjuvants. However, cyclic di-GMP (cdGMP) injected s.c. shows minimal uptake into lymphatics/draining lymph nodes (dLNs) and instead is rapidly distributed to the bloodstream, leading to systemic inflammation. Here, we encapsulated cdGMP within PEGylated lipid nanoparticles (NP-cdGMP) to redirect this adjuvant to dLNs. Compared with unformulated CDNs, encapsulation blocked systemic dissemination and markedly enhanced dLN accumulation in murine models. Delivery of NP-cdGMP increased CD8+ T cell responses primed by peptide vaccines and enhanced therapeutic antitumor immunity. A combination of a poorly immunogenic liposomal HIV gp41 peptide antigen and NP-cdGMP robustly induced type I IFN in dLNs, induced a greater expansion of vaccine-specific CD4+ T cells, and greatly increased germinal center B cell differentiation in dLNs compared with a combination of liposomal HIV gp41 and soluble CDN. Further, NP-cdGMP promoted durable antibody titers that were substantially higher than those promoted by the well-studied TLR agonist monophosphoryl lipid A and comparable to a much larger dose of unformulated cdGMP, without the systemic toxicity of the latter. These results demonstrate that nanoparticulate delivery safely targets CDNs to the dLNs and enhances the efficacy of this adjuvant. Moreover, this approach can be broadly applied to other small-molecule immunomodulators of interest for vaccines and immunotherapy.

摘要

环二核苷酸(CDNs)是干扰素基因刺激因子(STING)的激动剂,具有作为疫苗佐剂的潜力。然而,皮下注射的环二鸟苷酸(cdGMP)进入淋巴管/引流淋巴结(dLN)的摄取量极少,反而迅速分布到血液中,导致全身炎症。在此,我们将cdGMP包裹在聚乙二醇化脂质纳米颗粒(NP-cdGMP)中,以将这种佐剂重新导向dLN。与未配制的CDNs相比,包封可阻断全身扩散,并显著增强小鼠模型中dLN的积累。NP-cdGMP的递送增加了肽疫苗引发的CD8+T细胞反应,并增强了治疗性抗肿瘤免疫力。与脂质体HIV gp41和可溶性CDN的组合相比,免疫原性较差的脂质体HIV gp41肽抗原与NP-cdGMP的组合在dLN中强烈诱导I型干扰素,诱导疫苗特异性CD4+T细胞的更大扩增,并极大地增加dLN中生发中心B细胞的分化。此外,NP-cdGMP促进了持久的抗体滴度,该滴度显著高于经过充分研究的TLR激动剂单磷酰脂质A所促进的滴度,并且与大得多剂量的未配制cdGMP相当,而没有后者的全身毒性。这些结果表明,纳米颗粒递送可将CDNs安全地靶向dLN,并增强这种佐剂的功效。此外,这种方法可广泛应用于疫苗和免疫疗法中其他感兴趣的小分子免疫调节剂。

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