电子传递链能力扩大了黄热病疫苗的免疫原性。

IF 9 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
EMBO Molecular Medicine Pub Date : 2024-06-01 Epub Date: 2024-05-14 DOI:10.1038/s44321-024-00065-7
Darren Zl Mok, Danny Jh Tng, Jia Xin Yee, Valerie Sy Chew, Christine Yl Tham, Justin Sg Ooi, Hwee Cheng Tan, Summer L Zhang, Lowell Z Lin, Wy Ching Ng, Lavanya Lakshmi Jeeva, Ramya Murugayee, Kelvin K-K Goh, Tze-Peng Lim, Liang Cui, Yin Bun Cheung, Eugenia Z Ong, Kuan Rong Chan, Eng Eong Ooi, Jenny G Low
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引用次数: 0

摘要

疫苗接种已成功控制了几种传染病,但仍需要更好的疫苗。宿主对疫苗接种的反应研究发现了疫苗免疫原性的相关因素,这些因素可能有助于指导未来疫苗的开发和选择。然而,这些研究结果仅仅代表统计相关性,还是反映了与疫苗免疫原性的功能关联,目前仍不清楚。功能性关联而非统计相关性将为疫苗诱导的适应性免疫提供机理上的启示。通过一项测试二甲双胍(一种抗糖尿病药物)免疫调节特性的人体实验研究,我们偶然发现了中和抗体的一个功能性决定因素。尽管疫苗病毒血症是抗体反应的已知相关因素,但我们发现,在未检测到黄热病 17D 病毒血症或病毒血症较低的健康志愿者中,二甲双胍治疗的志愿者比安慰剂治疗的志愿者能激发出更高的中和抗体滴度。转录和代谢组学分析共同表明,在接种 YF17D 疫苗前 3 天开始并在接种后 3 天停止的二甲双胍简短疗程提高了氧化磷酸化和蛋白质翻译能力。这些能力的提高与 YF17D 中和抗体滴度直接相关,与服用安慰剂的志愿者相比,活性氧反应有所降低。因此,我们的研究结果证明了细胞呼吸与疫苗诱导的体液免疫之间的功能性联系,并提出了增强疫苗免疫原性的潜在方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electron transport chain capacity expands yellow fever vaccine immunogenicity.

Vaccination has successfully controlled several infectious diseases although better vaccines remain desirable. Host response to vaccination studies have identified correlates of vaccine immunogenicity that could be useful to guide development and selection of future vaccines. However, it remains unclear whether these findings represent mere statistical correlations or reflect functional associations with vaccine immunogenicity. Functional associations, rather than statistical correlates, would offer mechanistic insights into vaccine-induced adaptive immunity. Through a human experimental study to test the immunomodulatory properties of metformin, an anti-diabetic drug, we chanced upon a functional determinant of neutralizing antibodies. Although vaccine viremia is a known correlate of antibody response, we found that in healthy volunteers with no detectable or low yellow fever 17D viremia, metformin-treated volunteers elicited higher neutralizing antibody titers than placebo-treated volunteers. Transcriptional and metabolomic analyses collectively showed that a brief course of metformin, started 3 days prior to YF17D vaccination and stopped at 3 days after vaccination, expanded oxidative phosphorylation and protein translation capacities. These increased capacities directly correlated with YF17D neutralizing antibody titers, with reduced reactive oxygen species response compared to placebo-treated volunteers. Our findings thus demonstrate a functional association between cellular respiration and vaccine-induced humoral immunity and suggest potential approaches to enhancing vaccine immunogenicity.

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来源期刊
EMBO Molecular Medicine
EMBO Molecular Medicine 医学-医学:研究与实验
CiteScore
17.70
自引率
0.90%
发文量
105
审稿时长
4-8 weeks
期刊介绍: EMBO Molecular Medicine is an open access journal in the field of experimental medicine, dedicated to science at the interface between clinical research and basic life sciences. In addition to human data, we welcome original studies performed in cells and/or animals provided they demonstrate human disease relevance. To enhance and better specify our commitment to precision medicine, we have expanded the scope of EMM and call for contributions in the following fields: Environmental health and medicine, in particular studies in the field of environmental medicine in its functional and mechanistic aspects (exposome studies, toxicology, biomarkers, modeling, and intervention). Clinical studies and case reports - Human clinical studies providing decisive clues how to control a given disease (epidemiological, pathophysiological, therapeutic, and vaccine studies). Case reports supporting hypothesis-driven research on the disease. Biomedical technologies - Studies that present innovative materials, tools, devices, and technologies with direct translational potential and applicability (imaging technologies, drug delivery systems, tissue engineering, and AI)
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