Safety, Tolerability, and Immunogenicity of a DNA Vaccine (pGX9501) Against SARS-CoV-2 in Healthy Volunteers: A Single-Center, Randomized, Double-Blind, Placebo-Controlled, and Dose-Ranging Phase I Trial.

IF 5.2 3区 医学 Q1 IMMUNOLOGY
Vaccines Pub Date : 2025-05-27 DOI:10.3390/vaccines13060573
Haijing Yang, Yang Zhou, Xin Cheng, Chao Qiu, Shuo Wang, Yu Xia, Xuefen Huai, Zhenning Xiu, Jiarong Wang, Yue He, Guoying Cao, Qiong Wei, Jingjing Wang, Jingwen Ai, Haochen Zhang, Yi Zhang, Jing Zhang, Wenhong Zhang, Bin Wang
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Abstract

Background: pGX9501 is a prophylactic DNA vaccine encoding the spike protein of SARS-CoV-2 and can induce immune response in the human body so as to prevent COVID-19. With respect to non-clinical studies, pGX9501 has been demonstrated to induce both cellular and humoral immune responses in various animal models. It was found that the level of antibody titers following a two-dose regimen was higher than that following a single-dose regimen in nonhuman primate challenge model. Methods: In China, a phase I, randomized, double-blind, placebo-controlled clinical trial has been conducted in Huashan Hospital, Shanghai, China to evaluate the safety, tolerability, and immunogenicity of DNA vaccine pGX9501 administered intradermally (ID) followed by electroporation (EP) in 45 Chinese healthy volunteers aged 18 to 59 years old. Results: No adverse events of special interest (AESIs), death, or treatment-related SAEs occurred in this study. All the treatment-related (vaccine or EP) adverse events (TRAEs) were of grade 1 and 2 in severity. The solicited AEs were reported in thirty-two (32/36, 88.9%) and nine (9/9, 100.0%) subjects, respectively, in the DNA vaccine and placebo group. The frequency of solicited AEs did not increase with vaccine dose level and frequency. The DNA vaccine pGX9501 effectively enhanced both humoral and cellular immune responses in a dose-dependent manner, with increased antibody GMTs and peak seroconversion rates observed on day 42. The significant rise in IFN-γ levels confirmed the vaccine's ability to induce cellular immune responses. Variations in the microbiome structure suggested a tangible impact of the gut microbiota on vaccine immunogenicity. Conclusions: The findings from this study confirm the immunogenicity and safety of the DNA vaccine pGX9501 and point to the potential role of the gut microbiota in vaccine immune responses. These insights provide practical references for the future design and development of DNA vaccines.

抗SARS-CoV-2 DNA疫苗(pGX9501)在健康志愿者中的安全性、耐受性和免疫原性:一项单中心、随机、双盲、安慰剂对照和剂量范围的I期试验
背景:pGX9501是一种编码SARS-CoV-2刺突蛋白的预防性DNA疫苗,可在人体内诱导免疫反应,从而预防COVID-19。在非临床研究方面,pGX9501已被证明在各种动物模型中诱导细胞和体液免疫反应。研究发现,在非人灵长类动物攻击模型中,两剂量方案的抗体滴度水平高于单剂量方案。方法:在中国,在中国上海华山医院进行了一项随机、双盲、安慰剂对照的I期临床试验,以评估45名年龄在18至59岁的中国健康志愿者皮内注射(ID)后电穿孔(EP)的DNA疫苗pGX9501的安全性、耐受性和免疫原性。结果:本研究中未发生特殊关注不良事件(AESIs)、死亡或治疗相关的SAEs。所有治疗相关(疫苗或EP)不良事件(TRAEs)的严重程度均为1级和2级。在DNA疫苗组和安慰剂组中,分别有32名(32/ 36,88.9%)和9名(9/ 9,100.0%)受试者报告了征求的不良反应。不良反应的发生频率不随疫苗剂量和接种频率的增加而增加。DNA疫苗pGX9501以剂量依赖的方式有效增强了体液和细胞免疫反应,在第42天观察到抗体GMTs和血清转化率峰值增加。IFN-γ水平的显著升高证实了疫苗诱导细胞免疫反应的能力。微生物组结构的变化表明肠道微生物群对疫苗免疫原性有切实的影响。结论:本研究结果证实了DNA疫苗pGX9501的免疫原性和安全性,并指出了肠道微生物群在疫苗免疫应答中的潜在作用。这些见解为未来DNA疫苗的设计和开发提供了实用参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Vaccines
Vaccines Pharmacology, Toxicology and Pharmaceutics-Pharmacology
CiteScore
8.90
自引率
16.70%
发文量
1853
审稿时长
18.06 days
期刊介绍: Vaccines (ISSN 2076-393X) is an international, peer-reviewed open access journal focused on laboratory and clinical vaccine research, utilization and immunization. Vaccines publishes high quality reviews, regular research papers, communications and case reports.
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