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糖蛋白D缺失的2型单纯疱疹病毒可预防阴道、皮肤和神经疾病。

Herpes simplex type 2 virus deleted in glycoprotein D protects against vaginal, skin and neural disease.

作者信息

Petro Christopher, González Pablo A, Cheshenko Natalia, Jandl Thomas, Khajoueinejad Nazanin, Bénard Angèle, Sengupta Mayami, Herold Betsy C, Jacobs William R

机构信息

Department of Microbiology and Immunology, Albert Einstein College of Medicine, New York, United States.

Department of Pediatrics, Albert Einstein College of Medicine, New York, United States.

出版信息

Elife. 2015 Mar 10;4:e06054. doi: 10.7554/eLife.06054.

Abstract

Subunit vaccines comprised of glycoprotein D (gD-2) failed to prevent HSV-2 highlighting need for novel strategies. To test the hypothesis that deletion of gD-2 unmasks protective antigens, we evaluated the efficacy and safety of an HSV-2 virus deleted in gD-2 and complemented allowing a single round of replication on cells expressing HSV-1 gD (ΔgD(-/+gD-1)). Subcutaneous immunization of C57BL/6 or BALB/c mice with ΔgD(-/+gD1) provided 100% protection against lethal intravaginal or skin challenges and prevented latency. ΔgD(-/+gD1) elicited no disease in SCID mice, whereas 1000-fold lower doses of wild-type virus were lethal. HSV-specific antibodies were detected in serum (titer 1:800,000) following immunization and in vaginal washes after intravaginal challenge. The antibodies elicited cell-mediated cytotoxicity, but little neutralizing activity. Passive transfer of immune serum completely protected wild-type, but not Fcγ-receptor or neonatal Fc-receptor knock-out mice. These studies demonstrate that non-neutralizing Fc-mediated humoral responses confer protection and support advancement of this attenuated vaccine.

摘要

由糖蛋白D(gD-2)组成的亚单位疫苗未能预防单纯疱疹病毒2型(HSV-2),这凸显了采用新策略的必要性。为了验证缺失gD-2会暴露保护性抗原这一假说,我们评估了一种在gD-2基因上缺失并经改造可在表达HSV-1 gD的细胞上进行一轮复制的HSV-2病毒(ΔgD(-/+gD-1))的有效性和安全性。用ΔgD(-/+gD1)对C57BL/6或BALB/c小鼠进行皮下免疫,可提供100%的保护,使其免受致命的阴道内或皮肤攻击,并预防潜伏感染。ΔgD(-/+gD1)在严重联合免疫缺陷(SCID)小鼠中未引发疾病,而1000倍低剂量的野生型病毒却是致命的。免疫后在血清中(滴度为1:800,000)以及阴道内攻击后在阴道灌洗液中检测到了HSV特异性抗体。这些抗体引发了细胞介导的细胞毒性,但中和活性很低。免疫血清的被动转移完全保护了野生型小鼠,但对Fcγ受体或新生Fc受体基因敲除小鼠无效。这些研究表明,非中和性的Fc介导的体液反应具有保护作用,并支持这种减毒活疫苗的进一步研发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40f9/4352706/e17ecc62ed43/elife06054f001.jpg

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