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使用基于I型干扰素的非动物方法预测疫苗疗效和安全性概况的可行性。

Feasibility of Using a Type I IFN-Based Non-Animal Approach to Predict Vaccine Efficacy and Safety Profiles.

作者信息

Abdel-Haq Hanin

机构信息

Istituto Superiore di Sanità, Viale Regina Elena, 299, 00161 Rome, Italy.

出版信息

Vaccines (Basel). 2024 May 27;12(6):583. doi: 10.3390/vaccines12060583.

Abstract

Animal-based tests are used for the control of vaccine quality. However, because highly purified and safe vaccines are now available, alternative approaches that can replace or reduce animal use for the assessment of vaccine outcomes must be established. In vitro tests for vaccine quality control exist and have already been implemented. However, these tests are specifically designed for some next-generation vaccines, and this makes them not readily available for testing other vaccines. Therefore, universal non-animal tests are still needed. Specific signatures of the innate immune response could represent a promising approach to predict the outcome of vaccines by non-animal methods. Type I interferons (IFNs) have multiple immunomodulatory activities, which are exerted through effectors called interferon stimulated genes (ISGs), and are one of the most important immune signatures that might provide potential candidate molecular biomarkers for this purpose. This paper will mainly examine if this idea might be feasible by analyzing all relevant published studies that have provided type I IFN-related biomarkers for evaluating the safety and efficacy profiles of vaccines using an advanced transcriptomic approach as an alternative to the animal methods. Results revealed that such an approach could potentially provide biomarkers predictive of vaccine outcomes after addressing some limitations.

摘要

基于动物的试验用于疫苗质量控制。然而,由于现在已有高度纯化且安全的疫苗,必须建立能够替代或减少用于评估疫苗效果的动物使用的替代方法。存在用于疫苗质量控制的体外试验并且已经实施。然而,这些试验是专门为一些下一代疫苗设计的,这使得它们不容易用于测试其他疫苗。因此,仍然需要通用的非动物试验。先天免疫反应的特定特征可能代表一种通过非动物方法预测疫苗效果的有前景的方法。I型干扰素(IFN)具有多种免疫调节活性,通过称为干扰素刺激基因(ISG)的效应器发挥作用,并且是可能为此目的提供潜在候选分子生物标志物的最重要的免疫特征之一。本文将主要通过分析所有相关已发表的研究来检验这一想法是否可行,这些研究使用先进的转录组学方法作为动物方法的替代方法,提供了用于评估疫苗安全性和有效性概况的I型干扰素相关生物标志物。结果表明,在解决一些局限性后,这种方法可能潜在地提供预测疫苗效果的生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a4c/11209158/fc503b814f5a/vaccines-12-00583-g001.jpg

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