Zhou Jian-Hua, Wang Yi-Ning, Chang Qiu-Yan, Ma Peng, Hu Yonghao, Cao Xin
College of Veterinary Medicine, Gansu Agricultural University, Lanzhou,
College of Veterinary Medicine, Gansu Agricultural University, Lanzhou, China.
Cell Physiol Biochem. 2018;51(1):173-185. doi: 10.1159/000495172. Epub 2018 Nov 15.
Interferons (IFNs) can serve as the first line of immune defense against viral infection. The identification of IFN-λs 1, 2, 3 & 4 (termed as type III IFNs) has revealed that the antiviral immune response to viruses contains more components than the type I IFNs that have been known for more than 50 years. IFN-λs are IFN-λ1 (IL-29), IFN-λ2 (IL-28a), IFN-λ3 (IL-28b) and IFN-λ4, which resembles IFN-λ3. IFN-λs have type I-IFN-like immune responses and biological activities, but our knowledge of these novel players in the antiviral response is not well established. In this review, we try to describe the current information on the expression and function of IFN-λs in the innate antiviral immune defense and IFN-λ2's role in regulating and shaping the adaptive immune response. We suggest that IFN-λs are key antiviral cytokines, directly performing an antiviral immune response at epithelial surfaces in the early stages of viral infection, and that these cytokines also skew the balance of Th1 and Th2 cells to Th1 phenotype. In addition, genetic polymorphisms in IFN-λ genes can impair antiviral immune responses in clinical treatment.
干扰素(IFNs)可作为抵抗病毒感染的第一道免疫防线。干扰素λ1、2、3和4(称为III型干扰素)的发现揭示,针对病毒的抗病毒免疫反应所包含的成分比已被知晓50多年的I型干扰素更多。干扰素λ包括干扰素λ1(IL-29)、干扰素λ2(IL-28a)、干扰素λ3(IL-28b)和与干扰素λ3相似的干扰素λ4。干扰素λ具有类似I型干扰素的免疫反应和生物学活性,但我们对这些抗病毒反应中的新成员了解尚少。在本综述中,我们试图描述关于干扰素λ在先天性抗病毒免疫防御中的表达和功能以及干扰素λ2在调节和塑造适应性免疫反应中的作用的当前信息。我们认为,干扰素λ是关键的抗病毒细胞因子,在病毒感染早期直接在上皮表面发挥抗病毒免疫反应,并且这些细胞因子还会使Th1和Th2细胞的平衡偏向Th1表型。此外,干扰素λ基因的遗传多态性可能会在临床治疗中损害抗病毒免疫反应。