老年人和糖尿病患者接种SARS-COV-2疫苗后,肠道微生物群调节合生剂对免疫原性的影响

IF 9.2 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Lin Zhang, Shilan Wang, Martin C S Wong, Chris K P Mok, Jessica Y L Ching, Joyce W Y Mak, Chunke Chen, Bing Huo, Shuai Yan, Chun Pan Cheung, Emily O L Chiu, Emily Y T Fung, Pui Kuan Cheong, Francis K L Chan, Siew C Ng
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引用次数: 0

摘要

本研究旨在探讨合生剂在老年人和糖尿病患者接种SARS-CoV-2疫苗后增强免疫原性作用的种子和土壤微生物组及其机制。在369名受试者中,他们在接受SARS-CoV-2疫苗(mRNA疫苗BNT162b2(辉瑞- biontech)或灭活疫苗Sinovac-CoronaVac)后,接受了3个月的SIM01、肠道微生物衍生的三种双歧杆菌菌株(B.青春期、B. bididum和B. longum)的合成配方或安慰剂。我们对基线和接种疫苗后3个月收集的280名疫苗接种者的粪便样本进行了宏基因组测序,并对基线和接种疫苗后1个月收集的276名疫苗接种者进行了代谢组测序。本地肠道微生物群的开放生态位(双歧杆菌水平降低和碳水化合物代谢功能潜力下降)与含有sim01的物种增加有关。SIM01干预3个月后,3种双歧杆菌(BABBBL_fc)的富集与接种6个月后BNT162b2疫苗的中和抗体水平呈正相关。BNT162b2疫苗接种者的苯甲酸折叠变化与BABBBL_fc呈正相关,这也与接种后1个月的SARS-CoV-2代病毒中和试验(sVNT)%水平有关。重要的是,通过strain phlan(一种元基因组菌株水平群体基因组工具)评估的SIM01菌株植入与三种双歧杆菌种类的更高倍数变化相关,并且可以基于基线肠道微生物组进行预测。因此,常驻肠道微生物组影响了SIM01的植入,这与SARS-CoV-2 BNT162b2疫苗的免疫原性有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The resident gut microbiome modulates the effect of synbiotics on the immunogenicity after SARS-COV-2 vaccination in elderly and diabetes patients.

The resident gut microbiome modulates the effect of synbiotics on the immunogenicity after SARS-COV-2 vaccination in elderly and diabetes patients.

The resident gut microbiome modulates the effect of synbiotics on the immunogenicity after SARS-COV-2 vaccination in elderly and diabetes patients.

The resident gut microbiome modulates the effect of synbiotics on the immunogenicity after SARS-COV-2 vaccination in elderly and diabetes patients.

The study aims to tackle the seed and soil microbiome and mechanisms that contribute to the effect of synbiotics in enhancing immunogenicity after SARS-CoV-2 vaccination in elderly and diabetic patients. Among 369 subjects who received 3 months of SIM01, a gut microbiota-derived synbiotic formula of three Bifidobacterium strains (B. adolescentis, B. bididum, and B. longum) or a placebo after the SARS-CoV-2 vaccines (mRNA vaccine BNT162b2 (Pfizer-BioNTech) or the inactivated vaccine Sinovac-CoronaVac), we performed metagenomic sequencing in stool samples of 280 vaccinees collected at baseline and 3-month postvaccination and metabonomic sequencing in 276 vaccinees collected at baseline and 1-month postvaccination. The open niche of autochthonous gut microbiota (lower levels of Bifidobacterium and decreased functional potential for carbohydrate metabolism) was associated with enhancing SIM01-contained species. The enrichment of three bifidobacterial species after 3 months of SIM01 intervention (BABBBL_fc) was positively correlated with the level of neutralizing antibodies to the BNT162b2 vaccine at 6-month postvaccination. The fold change of benzoic acid was positively correlated with BABBBL_fc in the BNT162b2 vaccinees, which was also implicated with SARS-CoV-2 surrogate virus neutralization test (sVNT)% levels at 1-month postvaccination. Importantly, SIM01 strain engraftment assessed by StrainPhlAn (A metagenomic strain-level population genomics tool) was associated with a higher fold change of three bifidobacterial species and could be predicted based on the baseline gut microbiome. Therefore, the resident gut microbiome affected the SIM01 engraftment, which was associated with the immunogenicity of SARS-CoV-2 BNT162b2 vaccines.

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来源期刊
npj Biofilms and Microbiomes
npj Biofilms and Microbiomes Immunology and Microbiology-Microbiology
CiteScore
12.10
自引率
3.30%
发文量
91
审稿时长
9 weeks
期刊介绍: npj Biofilms and Microbiomes is a comprehensive platform that promotes research on biofilms and microbiomes across various scientific disciplines. The journal facilitates cross-disciplinary discussions to enhance our understanding of the biology, ecology, and communal functions of biofilms, populations, and communities. It also focuses on applications in the medical, environmental, and engineering domains. The scope of the journal encompasses all aspects of the field, ranging from cell-cell communication and single cell interactions to the microbiomes of humans, animals, plants, and natural and built environments. The journal also welcomes research on the virome, phageome, mycome, and fungome. It publishes both applied science and theoretical work. As an open access and interdisciplinary journal, its primary goal is to publish significant scientific advancements in microbial biofilms and microbiomes. The journal enables discussions that span multiple disciplines and contributes to our understanding of the social behavior of microbial biofilm populations and communities, and their impact on life, human health, and the environment.
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