Herpes zoster mRNA vaccine elicits superior immune responses over licensed vaccines with a favorable safety profile in animal models

免疫学 木瓦 免疫系统 皮疹 医学 反应性 抗体 细胞因子 病毒学 接种疫苗 病毒 安全概况 免疫球蛋白E 过敏反应 不利影响 埃利斯波特 毒性 过敏 免疫病理学 细胞因子释放综合征 白细胞介素 疱疹病毒科 趋化因子 中和抗体 疫苗效力 洞穴科 细胞免疫 脂多糖 信使核糖核酸
作者
Yan Chen,Qi Liu,Chunxia Wang,Shaoyi Chen,Shuang Li,Jun Liu,Liping Luo,Zhendong Zhang,Jiaru Cai,Minhe Huang,Ronglin Xie,Yucai Peng
出处
期刊:Vaccine [Elsevier BV]
卷期号:72: 128136-128136 被引量:3
标识
DOI:10.1016/j.vaccine.2025.128136
摘要

Herpes zoster, a painful rash that is commonly known as shingles, occurs when the varicella-zoster virus is reactivated from its latent state in neurons. The condition is more frequent among older or immunocompromised individuals. Although the licensed vaccine Shingrix® has demonstrated high efficacy against herpes zoster, its undesired reactogenicity and escalating global demand have necessitated the development of improved or novel VZV vaccines. In the present research, we developed a VZV mRNA vaccine candidate, LVRNA015, that contains sequence-optimized mRNA encoding modified glycoprotein E encapsulated in an ionizable lipid nanoparticle. Our results demonstrated that LVRNA015 exhibited robust humoral and cellular immune responses for over 9 months in BALB/c mice. The magnitude of these responses was significantly higher than that observed with live attenuated VZV. Notably, mice vaccinated with LVRNA015 exhibited significantly higher neutralizing antibody levels and antigen-specific T-cell cytokine production in comparison with those receiving Shingrix®. Additionally, LVRNA015 induced a long-lasting immunological memory response, as evidenced by detection of memory T cells at 7 months after the final immunization. To evaluate vaccine safety, acute and repeat-dose toxicity studies were performed in rats; no significant alterations in body weight or in hematological and biochemical markers were observed following LVRNA015 administration. Active systemic anaphylaxis tests in guinea pigs showed no hypersensitivity in LVRNA015-treated animals. These findings support the further advancement of LVRNA015 to clinical studies as a promising shingles vaccine.

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