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新型人乳头瘤病毒 16 型 L1 五聚体加载混合颗粒疫苗系统:大小对免疫应答的影响。

A Novel Human Papillomavirus 16 L1 Pentamer-Loaded Hybrid Particles Vaccine System: Influence of Size on Immune Responses.

机构信息

State Key Laboratory of Biochemical Engineering , Institute of Process Engineering, Chinese Academy of Sciences , Beijing 100190 , P. R. China.

Beijing Health Guard Biotechnology Co., LTD , Beijing 100176 , P.R. China.

出版信息

ACS Appl Mater Interfaces. 2018 Oct 24;10(42):35745-35759. doi: 10.1021/acsami.8b11556. Epub 2018 Oct 15.

Abstract

Cervical cancer remains the second-most prevalent female malignancy around the world, leading to a great majority of cancer-related mortality that occurs mainly in developing countries. Developing an effective and low-cost vaccine against human papillomavirus (HPV) infection, especially in medically underfunded areas, is urgent. Compared with vaccines based on HPV L1 viruslike particles (VLPs) in the market, recombinant HPV L1 pentamer expressed in Escherichia coli represents a promising and potentially cost-effective vaccine for preventing HPV infection. Hybrid particles comprising a polymer core and lipid shell have shown great potential compared to conventional aluminum salts adjuvant and is urgently needed for HPV L1 pentamer vaccines. It is well-reported that particle sizes are crucial in regulating immune responses. Nevertheless, reports on the relationship between the particulate size and the resultant immune response have been in conflict, and there is no answer to how the size of particles regulates specific immune response for HPV L1 pentamer-based candidate vaccines. Here, we fabricated HPV 16 L1 pentamer-loaded poly(d,l-lactide- co-glycolide) (PLGA)/lecithin hybrid particles with uniform sizes (0.3, 1, and 3 μm) and investigated the particle size effects on antigen release, activation of lymphocytes, dendritic cells (DCs) activation and maturation, follicular helper CD4 T (TFH) cells differentiation, and release of pro-inflammatory cytokines and chemokines. Compared with the other particle sizes, 1 μm particles induced more powerful antibody protection and yielded more persistent antibody responses, as well as more heightened anamnestic responses upon repeat vaccination. The superior immune responses might be attributed to sustainable antigen release and robust antigen uptake and transport and then further promoted a series of cascade reactions, including enhanced DCs maturation, increased lymphocytes activation, and augmented TFH cells differentiation in draining lymph nodes (DLNs). Here, a powerful and economical platform for HPV vaccine and a comprehensive understanding of particle size effect on immune responses for HPV L1 pentamer-based candidate vaccines are provided.

摘要

宫颈癌仍然是全球第二大常见女性恶性肿瘤,导致大多数癌症相关死亡发生在发展中国家。在医学资源匮乏的地区,开发针对人乳头瘤病毒(HPV)感染的有效且低成本疫苗迫在眉睫。与市场上基于 HPV L1 病毒样颗粒(VLPs)的疫苗相比,在大肠杆菌中表达的重组 HPV L1 五聚体代表了一种有前途且具有潜在成本效益的预防 HPV 感染的疫苗。与传统的铝盐佐剂相比,由聚合物核和脂质壳组成的杂交颗粒显示出巨大的潜力,这对于 HPV L1 五聚体疫苗来说是迫切需要的。已有大量报道表明,颗粒大小在调节免疫反应方面至关重要。然而,关于颗粒大小与免疫反应之间关系的报道存在冲突,目前尚不清楚颗粒大小如何调节 HPV L1 五聚体候选疫苗的特异性免疫反应。在这里,我们制备了具有均匀大小(0.3、1 和 3 μm)的 HPV 16 L1 五聚体负载的聚(D,L-乳酸-共-乙醇酸)(PLGA)/卵磷脂杂交颗粒,并研究了颗粒大小对抗原释放、淋巴细胞激活、树突状细胞(DC)激活和成熟、滤泡辅助 CD4 T(TFH)细胞分化以及促炎细胞因子和趋化因子释放的影响。与其他颗粒大小相比,1 μm 颗粒诱导了更强的抗体保护作用,并产生了更持久的抗体反应,以及在重复接种时产生更强的回忆反应。优越的免疫反应可能归因于持续的抗原释放和强大的抗原摄取和转运,然后进一步促进了一系列级联反应,包括增强 DC 成熟、增加淋巴细胞激活以及增加引流淋巴结(DLN)中的 TFH 细胞分化。在这里,为 HPV 疫苗提供了一个强大且经济的平台,并全面了解了 HPV L1 五聚体候选疫苗的颗粒大小对免疫反应的影响。

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