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用负载分枝杆菌脂质的纳米颗粒进行疫苗接种可导致脂质抗原持续存在以及抗原特异性T细胞的记忆分化。

Vaccination with mycobacterial lipid loaded nanoparticle leads to lipid antigen persistence and memory differentiation of antigen-specific T cells.

作者信息

Morgun Eva, Zhu Jennifer, Almunif Sultan, Bobbala Sharan, Aguilar Melissa S, Wang Junzhong, Conner Kathleen, Cui Yongyong, Cao Liang, Seshadri Chetan, Scott Evan A, Wang Chyung-Ru

机构信息

Department of Microbiology and Immunology, Feinberg School of Medicine, Northwestern University, Chicago, IL, USA.

Department of Biomedical Engineering, Northwestern University, Evanston, IL, USA.

出版信息

bioRxiv. 2023 Jul 13:2023.03.07.531489. doi: 10.1101/2023.03.07.531489.

Abstract

(Mtb) infection elicits both protein and lipid antigen-specific T cell responses. However, the incorporation of lipid antigens into subunit vaccine strategies and formulations has been underexplored, and the characteristics of vaccine-induced Mtb lipid-specific memory T cells have remained elusive. Mycolic acid (MA), a major lipid component of the Mtb cell wall, is presented by human CD1b molecules to unconventional T cell subsets. These MA-specific CD1b-restricted T cells have been detected in the blood and disease sites of Mtb-infected individuals, suggesting that MA is a promising lipid antigen for incorporation into multicomponent subunit vaccines. In this study, we utilized the enhanced stability of bicontinuous nanospheres (BCN) to efficiently encapsulate MA for delivery to MA-specific T cells, both alone and in combination with an immunodominant Mtb protein antigen (Ag85B). Pulmonary administration of MA-loaded BCN (MA-BCN) elicited MA-specific T cell responses in humanized CD1 transgenic mice. Simultaneous delivery of MA and Ag85B within BCN activated both MA- and Ag85B-specific T cells. Notably, pulmonary vaccination with MA-Ag85B-BCN resulted in the persistence of MA, but not Ag85B, within alveolar macrophages in the lung. Vaccination of MA-BCN through intravenous or subcutaneous route, or with attenuated Mtb likewise reproduced MA persistence. Moreover, MA-specific T cells in MA-BCN-vaccinated mice differentiated into a T follicular helper-like phenotype. Overall, the BCN platform allows for the dual encapsulation and activation of lipid and protein antigen-specific T cells and leads to persistent lipid depots that could offer long-lasting immune responses.

摘要

结核分枝杆菌(Mtb)感染会引发蛋白质和脂质抗原特异性T细胞反应。然而,脂质抗原在亚单位疫苗策略和配方中的应用尚未得到充分探索,疫苗诱导的Mtb脂质特异性记忆T细胞的特性也仍然难以捉摸。分枝菌酸(MA)是Mtb细胞壁的主要脂质成分,由人类CD1b分子呈递给非常规T细胞亚群。在Mtb感染个体的血液和疾病部位已检测到这些MA特异性CD1b限制性T细胞,这表明MA是一种有前景的脂质抗原,可用于多组分亚单位疫苗。在本研究中,我们利用双连续纳米球(BCN)的增强稳定性,有效地封装MA,以便单独或与免疫显性Mtb蛋白抗原(Ag85B)联合递送至MA特异性T细胞。经肺部给药含MA的BCN(MA-BCN)可在人源化CD1转基因小鼠中引发MA特异性T细胞反应。在BCN内同时递送MA和Ag85B可激活MA特异性和Ag85B特异性T细胞。值得注意的是,用MA-Ag85B-BCN进行肺部疫苗接种导致MA而非Ag85B在肺内的肺泡巨噬细胞中持续存在。通过静脉或皮下途径接种MA-BCN,或用减毒Mtb进行接种同样可使MA持续存在。此外,接种MA-BCN的小鼠中的MA特异性T细胞分化为T滤泡辅助样表型。总体而言,BCN平台允许脂质和蛋白质抗原特异性T细胞的双重封装和激活,并导致持久的脂质储存库,从而提供持久的免疫反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6aee/10350970/45366d02ac2a/nihpp-2023.03.07.531489v2-f0001.jpg

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