Ignatius R, Marovich M, Mehlhop E, Villamide L, Mahnke K, Cox W I, Isdell F, Frankel S S, Mascola J R, Steinman R M, Pope M
Laboratory of Cellular Physiology and Immunology, The Rockefeller University, New York, New York 10021, USA.
J Virol. 2000 Dec;74(23):11329-38. doi: 10.1128/jvi.74.23.11329-11338.2000.
Recombinant avipox viruses are being widely evaluated as vaccines. To address how these viruses, which replicate poorly in mammalian cells, might be immunogenic, we studied how canarypox virus (ALVAC) interacts with primate antigen-presenting dendritic cells (DCs). When human and rhesus macaque monocyte-derived DCs were exposed to recombinant ALVAC, immature DCs were most susceptible to infection. However, many of the infected cells underwent apoptotic cell death, and dying infected cells were engulfed by uninfected DCs. Furthermore, a subset of DCs matured in the ALVAC-exposed DC cultures. DC maturation coincided with tumor necrosis factor alpha (TNF-alpha) secretion and was significantly blocked in the presence of anti-TNF-alpha antibodies. Interestingly, inhibition of apoptosis with a caspase 3 inhibitor also reduced some of the maturation induced by exposure to ALVAC. This indicates that both TNF-alpha and the presence of primarily apoptotic cells contributed to DC maturation. Therefore, infection of immature primate DCs with ALVAC results in apoptotic death of infected cells, which can be internalized by noninfected DCs driving DC maturation in the presence of the TNF-alpha secreted concomitantly by exposed cells. This suggests an important mechanism that may influence the immunogenicity of avipox virus vectors.
重组禽痘病毒正作为疫苗被广泛评估。为了研究这些在哺乳动物细胞中复制不良的病毒如何具有免疫原性,我们研究了金丝雀痘病毒(ALVAC)与灵长类抗原呈递树突状细胞(DCs)的相互作用。当人和恒河猴单核细胞衍生的DCs暴露于重组ALVAC时,未成熟的DCs最易受到感染。然而,许多被感染的细胞发生凋亡性细胞死亡,垂死的被感染细胞被未感染的DCs吞噬。此外,在暴露于ALVAC的DC培养物中有一部分DCs成熟。DC成熟与肿瘤坏死因子α(TNF-α)分泌同时发生,并且在存在抗TNF-α抗体的情况下显著受阻。有趣的是,用半胱天冬酶3抑制剂抑制凋亡也减少了一些因暴露于ALVAC而诱导的成熟。这表明TNF-α和主要凋亡细胞的存在都有助于DC成熟。因此,用ALVAC感染未成熟的灵长类DCs会导致被感染细胞的凋亡死亡,这些死亡细胞可被未感染的DCs内化,在暴露细胞同时分泌的TNF-α存在的情况下驱动DC成熟。这提示了一种可能影响禽痘病毒载体免疫原性的重要机制。