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在鼻用疫苗制剂中,将B类CpG ODN附着于DOTAP/DC-胆固醇脂质体上可增强小鼠的抗原特异性免疫反应。

Attachment of class B CpG ODN onto DOTAP/DC-chol liposome in nasal vaccine formulations augments antigen-specific immune responses in mice.

作者信息

Tada Rui, Muto Shoko, Iwata Tomoko, Hidaka Akira, Kiyono Hiroshi, Kunisawa Jun, Aramaki Yukihiko

机构信息

Department of Drug Delivery and Molecular Biopharmaceutics, School of Pharmacy, Tokyo University of Pharmacy and Life Sciences, 1432-1, Horinouchi, Hachioji, Tokyo, 192-0392, Japan.

Division of Mucosal Immunology and International Research and Development Center for Mucosal Vaccines, Department of Microbiology and Immunology, The Institute of Medical Science, The University of Tokyo, Tokyo, Japan.

出版信息

BMC Res Notes. 2017 Jan 26;10(1):68. doi: 10.1186/s13104-017-2380-8.

Abstract

BACKGROUND

To overcome infectious diseases, the development of mucosal vaccines would be an effective strategy, since mucosal surfaces are the entry site for most pathogens. In general, protein antigens show inherently poor immunogenicity when administered by the mucosal route. Therefore, co-administration of an appropriate mucosal adjuvant is required to exert immune responses toward pathogen-derived antigens effectively. However, the development of a safe and effective mucosal adjuvant system is still challenging. Although, recent studies reported that oligodeoxynucleotides (ODNs) containing immunostimulatory CpG motifs (CpG ODNs) act as potent mucosal adjuvants and are useful in the formulation of nasal vaccines, there are some disadvantages. For instance, the administration of phosphorothioate (PS)-modified CpG ODNs can induce adverse systemic effects, such as splenomegaly, in a dose-dependent manner. Therefore, a reduced dose of CpG ODN might be crucial when used as vaccine adjuvant for clinical purposes. Therefore, we prepared a CpG ODN-loaded cationic liposome, and evaluated its mucosal adjuvant activity.

RESULTS

We prepared a CpG ODN-loaded DOTAP/DC-chol liposome that was stable during our experiments, by mixing CpG ODNs and liposomes at an N/P ratio of 4. Further, we demonstrated that the attachment of class B CpG ODN to the DOTAP/DC-chol liposomes synergistically enhanced antigen-specific IgA production in the nasal area than that induced by CpG ODN and DOTAP/DC-chol liposomes alone. The endpoint titers were more than tenfolds higher than that induced by either single CpG ODN or single DOTAP/DC-chol liposomes. Additionally, although serum IgG1 responses (indicated as a Th2 response) remained unchanged for DOTAP/DC-chol liposomes and CpG ODN-loaded DOTAP/DC-chol liposomes, the CpG ODN-loaded DOTAP/DC-chol liposomes synergistically induced the production of serum IgG2a (indicated as a Th1 response) than that by the individual liposomes.

CONCLUSIONS

We conclude that the advantage of using DOTAP/DC-chol liposome harboring CpG ODN is it induces both antigen-specific mucosal IgA responses and balanced Th1/Th2 responses. Therefore, such a combination enables us to resolve the adverse effects of using CpG ODNs (as a mucosal adjuvant) by reducing the overall dose of CpG ODNs. Further, the biodegradable and essentially non-antigenic nature of the liposomes makes it superior than the other existing mucosal adjuvants.

摘要

背景

为了战胜传染病,开发黏膜疫苗将是一种有效的策略,因为黏膜表面是大多数病原体的侵入部位。一般来说,蛋白质抗原经黏膜途径给药时,其固有的免疫原性较差。因此,需要联合使用合适的黏膜佐剂,以有效地激发针对病原体衍生抗原的免疫反应。然而,开发一种安全有效的黏膜佐剂系统仍然具有挑战性。尽管最近的研究报告称,含有免疫刺激CpG基序的寡脱氧核苷酸(ODN)(CpG ODN)可作为有效的黏膜佐剂,可用于鼻用疫苗的配方,但仍存在一些缺点。例如,硫代磷酸酯(PS)修饰的CpG ODN给药可剂量依赖性地诱导不良的全身效应,如脾肿大。因此,当用作临床疫苗佐剂时,降低CpG ODN的剂量可能至关重要。因此,我们制备了负载CpG ODN的阳离子脂质体,并评估了其黏膜佐剂活性。

结果

我们通过以4的N/P比混合CpG ODN和脂质体,制备了一种在实验过程中稳定的负载CpG ODN的DOTAP/DC-胆固醇脂质体。此外,我们证明,与单独的CpG ODN和DOTAP/DC-胆固醇脂质体相比,将B类CpG ODN附着到DOTAP/DC-胆固醇脂质体上可协同增强鼻腔区域抗原特异性IgA的产生。终点滴度比单独的CpG ODN或单独的DOTAP/DC-胆固醇脂质体诱导的滴度高出十倍以上。此外,尽管DOTAP/DC-胆固醇脂质体和负载CpG ODN的DOTAP/DC-胆固醇脂质体的血清IgG1反应(表示为Th2反应)保持不变,但负载CpG ODN的DOTAP/DC-胆固醇脂质体比单独的脂质体协同诱导血清IgG2a的产生(表示为Th1反应)。

结论

我们得出结论,使用含有CpG ODN的DOTAP/DC-胆固醇脂质体的优势在于它能诱导抗原特异性黏膜IgA反应和平衡的Th1/Th2反应。因此,这种组合使我们能够通过降低CpG ODN的总体剂量来解决使用CpG ODN(作为黏膜佐剂)的不良反应。此外,脂质体的可生物降解性和基本无抗原性使其优于其他现有的黏膜佐剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2945/5270218/831c0ae36cf6/13104_2017_2380_Fig1_HTML.jpg

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