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首页> 外文期刊>Science translational medicine >Generation of effector memory T cell-based mucosal and systemic immunity with pulmonary nanoparticle vaccination
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Generation of effector memory T cell-based mucosal and systemic immunity with pulmonary nanoparticle vaccination

机译:肺纳米颗粒疫苗接种产生基于效应记忆T细胞的粘膜和全身免疫

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Many pathogens infiltrate the body and initiate infection via mucosal surfaces. Hence, eliciting cellular immune responses at mucosal portals of entry is of great interest for vaccine development against mucosal pathogens. We describe a pulmonary vaccination strategy combining Toll-like receptor (TLR) agonists with antigen-carrying lipid nanocapsules [interbilayer-crosslinked multilamellar vesicles (ICMVs)], which elicit high-frequency, long-lived, antigen-specific effector memory T cell responses at multiple mucosal sites. Pulmonary immunization using protein- or peptide-loaded ICMVs combined with two TLR agonists, polyinosinic-polycytidylic acid (polyI:C) and monophosphoryl lipid A, was safe and well tolerated in mice, and led to increased antigen transport to draining lymph nodes compared to equivalent subcutaneous vaccination. This response was mediated by the vast number of antigen-presenting cells (APCs) in the lungs. Nanocapsules primed 13-fold more T cells than did equivalent soluble vaccines, elicited increased expression of mucosal homing integrin α4β7 +, and generated long-lived T cells in both the lungs and distal (for example, vaginal) mucosa strongly biased toward an effector memory (TEM) phenotype. These TEM responses were highly protective in both therapeutic tumor and prophylactic viral vaccine settings. Together, these data suggest that targeting cross-presentation-promoting particulate vaccines to the APC-rich pulmonary mucosa can promote robust T cell responses for protection of mucosal surfaces.
机译:许多病原体渗入人体并通过粘膜表面引发感染。因此,在针对粘膜病原体的疫苗开发中,在进入粘膜入口引起细胞免疫应答是非常感兴趣的。我们描述了一种肺疫苗接种策略,将Toll样受体(TLR)激动剂与携带抗原的脂质纳米胶囊[双分子层交联的多层囊泡(ICMVs)]相结合,可引起高频,长寿命,抗原特异性效应记忆T细胞反应在多个粘膜部位。使用蛋白或肽负载的ICMV结合两种TLR激动剂,多肌苷-聚胞苷酸(polyI:C)和单磷酰脂质A进行肺免疫接种,在小鼠中是安全且耐受性良好的,与转移至引流淋巴结的抗原运输相比等效皮下接种。这种反应是由肺中大量抗原呈递细胞(APC)介导的。纳米胶囊引发的T细胞比同等的可溶性疫苗多13倍,引起粘膜归巢整联蛋白α4β7+的表达增加,并在肺部和远端(例如阴道)粘膜中产生长寿的T细胞,这些T细胞强烈偏向效应记忆(TEM)表型。这些TEM反应在治疗性肿瘤和预防性病毒疫苗设置中均具有高度保护性。总之,这些数据表明,将交叉表达促进颗粒疫苗靶向富含APC的肺粘膜可以促进健壮的T细胞反应,以保护粘膜表面。

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