Department of Cellular, Computational and Integrative Biology (CIBIO), University of Trento, 38123 Trento, Italy.
European Research Council "OMV Vaccines" Laboratory, Toscana Life Sciences Foundation, 53100 Siena, Italy.
Proc Natl Acad Sci U S A. 2019 Oct 22;116(43):21780-21788. doi: 10.1073/pnas.1905112116. Epub 2019 Oct 7.
Bacterial outer membrane vesicles (OMVs) represent an interesting vaccine platform for their built-in adjuvanticity and simplicity of production process. Moreover, OMVs can be decorated with foreign antigens using different synthetic biology approaches. However, the optimal OMV engineering strategy, which should guarantee the OMV compartmentalization of most heterologous antigens in quantities high enough to elicit protective immune responses, remains to be validated. In this work we exploited the lipoprotein transport pathway to engineer OMVs with foreign proteins. Using 5 protective antigens expressed in as fusions to a lipoprotein leader sequence, we demonstrated that all 5 antigens accumulated in the vesicular compartment at a concentration ranging from 5 to 20% of total OMV proteins, suggesting that antigen lipidation could be a universal approach for OMV manipulation. Engineered OMVs elicited high, saturating antigen-specific antibody titers when administered to mice in quantities as low as 0.2 μg/dose. Moreover, the expression of lipidated antigens in BL21(DE3)ΔΔΔ was shown to affect the lipopolysaccharide structure, with the result that the TLR4 agonist activity of OMVs was markedly reduced. These results, together with the potent protective activity of engineered OMVs observed in mice challenged with Newman strain, makes the 5-combo-OMVs a promising vaccine candidate to be tested in clinics.
细菌外膜囊泡 (OMVs) 因其内在的佐剂特性和简单的生产工艺而成为一种很有前途的疫苗平台。此外,OMVs 可以使用不同的合成生物学方法用外来抗原进行修饰。然而,最佳的 OMV 工程策略,应该保证大多数异源抗原在足够高的数量下被分隔在 OMV 中,以引发保护性免疫反应,这仍有待验证。在这项工作中,我们利用脂蛋白转运途径来工程化具有外来蛋白的 OMV。使用 5 种在 中表达的保护性抗原融合到脂蛋白前导序列中,我们证明所有 5 种抗原都以 5%至 20%的总 OMV 蛋白浓度积累在囊泡区,这表明抗原脂质化可能是一种通用的 OMV 操作方法。当以低至 0.2 μg/剂量的剂量施用于小鼠时,工程化的 OMV 引发了高、饱和的抗原特异性抗体滴度。此外,在 BL21(DE3)ΔΔΔ 中表达脂质化抗原被证明会影响脂多糖结构,结果是 OMV 的 TLR4 激动剂活性显著降低。这些结果,加上在接受 Newman 菌株挑战的小鼠中观察到的工程化 OMV 的强大保护活性,使得 5 种组合 OMV 成为一种很有前途的候选疫苗,将在临床上进行测试。