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破解人类巨细胞病毒密码:潜伏、免疫逃逸及保护相关因素的三重挑战

Cracking the Human Cytomegalovirus Code: Trinary Challenges of Latency, Immune Evasion, and Correlates of Protection.

作者信息

Mami Somayeh, Shekarchian Sajjad, Mousavi Mohammad Javad, Nicknam Mohammad Hossein

机构信息

Department of Immunology, School of Medicine, Tehran University of Medical Sciences, Tehran, Iran.

Department of Immunology, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

出版信息

Iran J Allergy Asthma Immunol. 2025 Jun 26;24(4):403-427.

Abstract

Human cytomegalovirus (HCMV) poses a significant challenge to vaccine development due to its complex biology characterized by latency, immune evasion strategies, and undefined correlates of protection (CoPs). HCMV latency allows the virus to evade immune surveillance by remaining in a quiescent state in host cells, with the risk of reactivation triggered by immune damage or cell differentiation. In addition, HCMV employs an arsenal of immune evasion strategies, including modulating MHC expression, inhibiting natural killer (NK) cell activity, and subverting antibody-mediated responses, so these mechanisms further complicate vaccine design. Despite these obstacles, advances in basic research in immunology and vaccine technologies offer new opportunities. Strategies such as targeting latency-associated mechanisms, using memory inflation of CMV-specific T cells to induce long-term tissue-resident immunity, and developing immunogens that antagonize viral immunoevasins are promising approaches. New platforms, including mRNA and vector-based vaccines, show the potential to elicit robust humoral and cellular responses against key viral antigens such as glycoprotein B, pentamer complex, and pp65. In addition, adjuvants that restore impaired NK and T cell function could improve vaccine effectiveness. This review examines the molecular and immunological barriers to HCMV vaccine development and highlights innovative approaches to address these challenges. By addressing the complexities of latency, immune evasion, and CoPs, we propose a roadmap for developing a multimodal vaccine that can provide effective and durable protection against HCMV infections.

摘要

人巨细胞病毒(HCMV)因其复杂的生物学特性,包括潜伏性、免疫逃逸策略以及尚未明确的保护相关因素(CoP),给疫苗研发带来了重大挑战。HCMV潜伏性使病毒能够通过在宿主细胞中保持静止状态来逃避免疫监视,存在因免疫损伤或细胞分化而引发重新激活的风险。此外,HCMV采用了一系列免疫逃逸策略,包括调节MHC表达、抑制自然杀伤(NK)细胞活性以及破坏抗体介导的反应,因此这些机制进一步使疫苗设计复杂化。尽管存在这些障碍,但免疫学和疫苗技术的基础研究进展提供了新的机遇。诸如靶向潜伏相关机制、利用CMV特异性T细胞的记忆膨胀来诱导长期组织驻留免疫以及开发对抗病毒免疫逃逸蛋白的免疫原等策略都是很有前景的方法。包括基于mRNA和载体的疫苗在内的新平台显示出针对关键病毒抗原(如糖蛋白B、五聚体复合物和pp65)引发强大体液和细胞反应的潜力。此外,恢复受损NK和T细胞功能的佐剂可以提高疫苗效力。本综述探讨了HCMV疫苗研发的分子和免疫障碍,并强调了解决这些挑战的创新方法。通过应对潜伏性、免疫逃逸和CoP的复杂性,我们提出了一条开发多模式疫苗的路线图,该疫苗能够提供针对HCMV感染的有效且持久的保护。

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