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基于单酰基甘油类似物的纳米自组装脂质佐剂接种沙眼衣原体主要外膜蛋白后诱导的免疫应答。

Immune responses induced by nano-self-assembled lipid adjuvants based on a monomycoloyl glycerol analogue after vaccination with the Chlamydia trachomatis major outer membrane protein.

机构信息

Department of Pharmacy, Pharmaceutical Technology and Biopharmacy, Ludwig-Maximilians-Universität München, Butenandtstraße 5-13, DE-81377 Munich, Germany.

Physics Department, Soft Matter Physics Group, Technische Universität München, James-Franck-Straße 1, DE-85748 Garching, Germany.

出版信息

J Control Release. 2018 Sep 10;285:12-22. doi: 10.1016/j.jconrel.2018.06.028. Epub 2018 Jun 28.

Abstract

Nanocarriers based on inverse hexagonal liquid crystalline phases (hexosomes) show promising potential as vaccine delivery systems. Their unique internal structure, composed of both lipophilic domains and water-containing channels, renders them capable of accommodating immunopotentiating compounds and antigens. However, their adjuvant properties are poorly understood. We hypothesized that the supramolecular structure of the lyotropic liquid crystalline phase influences the immunostimulatory activity of lipid-based nanocarriers. To test this, hexosomes were designed containing the lipid phytantriol (Phy) and the immunopotentiator monomycoloyl glycerol-1 (MMG-1). Self-assembly of Phy and MMG-1 into nanocarriers featuring an internal hexagonal phase was confirmed by small-angle X-ray scattering and cryogenic transmission electron microscopy. The effect of the nanostructure on the adjuvant activity was studied by comparing the immunogenicity of Phy/MMG-1 hexosomes with MMG-1-containing lamellar liquid crystalline nanoparticles (liposomes, CAF04). The quality and magnitude of the elicited immune responses were determined after vaccination of CB6/F1 mice using the Chlamydia trachomatis major outer membrane protein (MOMP) as antigen. MMG-1-based hexosomes potentiated significantly stronger MOMP-specific humoral responses than CAF04 liposomes. The liposome-based vaccine formulation induced a much stronger MOMP-specific cell-mediated immune response compared to hexosome-adjuvanted MOMP, which elicited minimal MOMP-specific T-cell stimulation after vaccination. Hence, our data demonstrates that hexosomal and liposomal adjuvants activate the immune system via different mechanisms. Our work provides valuable insights into the adjuvant potential of hexosomes and emphasizes that engineering of the supramolecular structure can be used to design adjuvants with customized immunological properties.

摘要

基于反六方液晶相(hexosomes)的纳米载体作为疫苗递送系统具有很大的潜力。它们独特的内部结构由亲脂性区域和含水通道组成,能够容纳免疫增强化合物和抗原。然而,它们的佐剂特性尚未得到充分理解。我们假设溶致液晶相的超分子结构会影响基于脂质的纳米载体的免疫刺激活性。为了验证这一点,设计了含有脂质植物三醇(Phy)和免疫增强剂单油酰基甘油-1(MMG-1)的 hexosomes。通过小角度 X 射线散射和低温透射电子显微镜证实了 Phy 和 MMG-1 自组装成具有内部六方相的纳米载体。通过比较 Phy/MMG-1 hexosomes 与含有 MMG-1 的层状液晶纳米颗粒(脂质体,CAF04)的免疫原性,研究了纳米结构对佐剂活性的影响。用沙眼衣原体主要外膜蛋白(MOMP)作为抗原对 CB6/F1 小鼠进行疫苗接种后,确定了引发的免疫应答的质量和程度。基于 MMG-1 的 hexosomes 比 CAF04 脂质体显著增强了 MOMP 特异性体液应答。与 hexosome 佐剂的 MOMP 相比,基于脂质体的疫苗配方诱导了更强的 MOMP 特异性细胞介导免疫应答,而接种后诱导的 MOMP 特异性 T 细胞刺激最小。因此,我们的数据表明,hexosome 和 liposome 佐剂通过不同的机制激活免疫系统。我们的工作为 hexosome 的佐剂潜力提供了有价值的见解,并强调了超分子结构的工程可以用于设计具有定制免疫特性的佐剂。

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