Mutwiri G, Pontarollo R, Babiuk S, Griebel P, van Drunen Littel-van den Hurk S, Mena A, Tsang C, Alcon V, Nichani A, Ioannou X, Gomis S, Townsend H, Hecker R, Potter A, Babiuk L A
Veterinary Infectious Disease Organization, University of Saskatchewan, 120 Veterinary Road, Saskatoon, SK, Canada S7N 5E3.
Vet Immunol Immunopathol. 2003 Jan 30;91(2):89-103. doi: 10.1016/s0165-2427(02)00246-5.
Bacterial DNA contains a much higher frequency of CpG dinucleotides than are present in mammalian DNA. Furthermore, bacterial CpG dinucleotides are often not methylated. It is thought that these two features in combination with specific flanking bases constitute a CpG motif that is recognized as a "danger" signal by the innate immune system of mammals and therefore an immune response is induced when these motifs are encountered. These immunostimulatory activities of bacterial CpG DNA can also be achieved with synthetic CpG oligodeoxynucleotides (ODN). Recognition of CpG motifs by the innate immune system requires engagement of Toll-like receptor 9 (TLR-9), which induces cell signaling and subsequently triggers a pro-inflammatory cytokine response and a predominantly Th1-type immune response. CpG ODN-induced innate and adaptive immune responses can result in protection in various mouse models of disease. Based on these observations, clinical trials are currently underway in humans to evaluate CpG ODN therapies for cancer, allergy and infectious disease. However, potential applications for immunostimulatory CpG ODN in species of veterinary importance are just being explored. In this review, we will highlight what is presently known about the immunostimulatory effects of CpG ODN in domestic animals.
细菌DNA中CpG二核苷酸的频率比哺乳动物DNA中的要高得多。此外,细菌的CpG二核苷酸通常未被甲基化。人们认为,这两个特征与特定的侧翼碱基相结合,构成了一个CpG基序,该基序被哺乳动物的先天免疫系统识别为“危险”信号,因此当遇到这些基序时会诱导免疫反应。细菌CpG DNA的这些免疫刺激活性也可以通过合成的CpG寡脱氧核苷酸(ODN)来实现。先天免疫系统对CpG基序的识别需要Toll样受体9(TLR-9)的参与,它会诱导细胞信号传导,随后引发促炎细胞因子反应和主要为Th1型的免疫反应。CpG ODN诱导的先天和适应性免疫反应可以在各种疾病的小鼠模型中产生保护作用。基于这些观察结果,目前正在进行人体临床试验,以评估CpG ODN疗法对癌症、过敏和传染病的疗效。然而,具有免疫刺激作用的CpG ODN在重要兽医物种中的潜在应用才刚刚开始探索。在这篇综述中,我们将重点介绍目前已知的CpG ODN在家畜中的免疫刺激作用。