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纳米颗粒在变应原特异性免疫治疗中的应用新进展。

Recent advances in the use of nanoparticles for allergen-specific immunotherapy.

机构信息

Department of Dermatology, University Medical Center of the Johannes Gutenberg University Mainz, Mainz, Germany.

Institute of Organic Chemistry, Johannes Gutenberg-University Mainz, Mainz, Germany.

出版信息

Allergy. 2017 Oct;72(10):1461-1474. doi: 10.1111/all.13199. Epub 2017 Jun 23.

Abstract

The number of patients suffering from allergic asthma and rhinoconjunctivitis has increased dramatically within the last decades. Allergen-specific immunotherapy (AIT) is the only available cause-oriented therapy so far. AIT reduces symptoms, but has also a disease-modifying effect. Disadvantages are a long-lasting procedure, and in a few cases potential systemic adverse reactions. Encapsulation of allergens or DNA vaccines into nanostructures may provide advantages compared to the conventional AIT with noncapsulated allergen extracts: The protein/DNA molecule can be protected from degradation, higher local concentrations and targeted delivery to the site of action appear possible, and most importantly, recognition of encapsulated allergen by the immune system, especially by IgE antibodies, is prevented. AIT with nanoparticles (NPs) may offer a safer and potentially more efficient way of treatment for allergic diseases. In this review, we summarize the use of biodegradable NPs consisting of synthetic or natural polymers, liposomes, and virus-like particles as well as nonbiodegradable NPs like dendrimers, and carbon- or metal-based NPs for AIT. More or less successful applications of these NPs in prophylactic as well as therapeutic vaccination approaches in rodents or other animals as well as first human clinical trials are discussed in detail.

摘要

在过去的几十年中,患有过敏性哮喘和鼻结膜炎的患者数量急剧增加。过敏原特异性免疫疗法(AIT)是迄今为止唯一可用的病因治疗方法。AIT 可减轻症状,但也具有疾病修饰作用。缺点是治疗过程漫长,并且在少数情况下存在潜在的全身不良反应。与未包封的过敏原提取物的常规 AIT 相比,将过敏原或 DNA 疫苗包封在纳米结构中可能具有优势:可以保护蛋白质/DNA 分子免受降解,更高的局部浓度和靶向递送到作用部位成为可能,最重要的是,免疫系统,特别是 IgE 抗体,对包封的过敏原的识别被阻止。使用纳米颗粒(NPs)进行 AIT 可能为治疗过敏疾病提供一种更安全、更有效的方法。在这篇综述中,我们总结了使用由合成或天然聚合物、脂质体和类病毒颗粒组成的可生物降解的 NPs 以及像树枝状聚合物、碳基或金属基 NPs 等不可生物降解的 NPs 进行 AIT。详细讨论了这些 NPs 在预防和治疗性疫苗接种方法中在啮齿动物或其他动物中的或多或少成功的应用,以及首次人体临床试验。

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