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Suppression of antitumour protective cytotoxic T lymphocyte responses to a human papillomavirus 16 E7 DNA vaccine by coinjection of interleukin-12 complementary DNA: involvement of nitric oxide in immune suppression

机译:通过共注射白介素12互补DNA抑制对人乳头瘤病毒16 E7 DNA疫苗的抗肿瘤保护性细胞毒性T淋巴细胞应答:一氧化氮参与免疫抑制

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摘要

Interleukin-12 (IL-12) has been shown to enhance cellular immunity in vitro and in vivo. The beneficial roles of IL-12 as a DNA vaccine adjuvant have been commonly observed. Here the impact of IL-12 complementary DNA (cDNA) as an adjuvant for a human papillomavirus (HPV) type 16 E7 DNA vaccine is investigated in a mouse tumour model. Coinjection of E7 DNA vaccine with IL-12 cDNA completely suppressed antigen-specific cytotoxic T-lymphocyte (CTL) responses, leading to a complete loss of antitumour protection from a tumour cell challenge. In addition, antigen-specific antibody and T helper cell proliferative responses were also suppressed by IL-12 cDNA coinjection. This inhibition was observed over different IL-12 cDNA doses. Furthermore, separate leg injections of IL-12 and E7 cDNAs suppressed antigen-specific CTL and tumour protective responses, but not antibody and T helper cell proliferative responses, suggesting different pathways for suppression of these two separate responses. Further knockout animal studies demonstrated that interferon-γ and nitric oxide are not directly associated with suppression of antigen-specific antibody responses by IL-12 cDNA coinjection. However, nitric oxide was found to be involved in suppression of antigen-specific CTL and tumour protective responses by IL-12 cDNA coinjection. These data suggest that coinjection of IL-12 cDNA results in suppression of E7-specific CTL responses through nitric oxide, leading to a loss of antitumour resistance in this DNA vaccine model. This study further shows that the adjuvant effect of IL-12 is dependent on the antigen types tested.
机译:白介素12(IL-12)已显示出在体外和体内都能增强细胞免疫力。通常已经观察到IL-12作为DNA疫苗佐剂的有益作用。在小鼠肿瘤模型中,研究了IL-12互补DNA(cDNA)作为人乳头瘤病毒(HPV)16 E7型DNA疫苗佐剂的影响。 E7 DNA疫苗与IL-12 cDNA的共注射可完全抑制抗原特异性细胞毒性T淋巴细胞(CTL)反应,从而导致肿瘤细胞攻击引起的抗肿瘤保护作用完全丧失。此外,IL-12 cDNA共注射也抑制了抗原特异性抗体和T辅助细胞的增殖反应。在不同的IL-12 cDNA剂量下观察到这种抑制。此外,单独注射IL-12和E7 cDNA可以抑制抗原特异性CTL和肿瘤保护反应,但不能抑制抗体和T辅助细胞的增殖反应,提示抑制这两种不同反应的途径不同。进一步的基因敲除动物研究表明,干扰素-γ和一氧化氮与IL-12 cDNA共注射对抗原特异性抗体反应的抑制作用不直接相关。然而,一氧化氮被发现通过IL-12 cDNA共注射抑制抗原特异性CTL和肿瘤保护反应。这些数据表明,IL-12 cDNA的共注射导致通过一氧化氮抑制E7特异性CTL反应,从而导致该DNA疫苗模型中抗肿瘤抗性的丧失。这项研究进一步表明,IL-12的佐剂作用取决于所测试的抗原类型。

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