母乳喂养和新生儿年龄影响人出生后第一周由中性粒细胞驱动的血细胞群体的本体发育

IF 3.5 3区 医学 Q2 IMMUNOLOGY Journal of Immunology Research Pub Date : 2024-07-23 eCollection Date: 2024-01-01 DOI:10.1155/2024/1117796
Sebastiano Montante, Rym Ben-Othman, Nelly Amenyogbe, Asimenia Angelidou, Anita van den Biggelaar, Bing Cai, Yixuan Chen, Alansana Darboe, Joann Diray-Arce, Rebecca Ford, Olubukola Idoko, Amy Lee, Mandy Lo, Kerry McEnaney, Mehrnoush Malek, David Martino, Geraldine Masiria, Oludare A Odumade, William Pomat, Casey Shannon, Kinga Smolen, The Epic Consortium, Al Ozonoff, Peter Richmond, Scott Tebbutt, Ofer Levy, Beate Kampmann, Ryan Brinkman, Tobias Kollmann
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引用次数: 0

摘要

生命最初几天的特点是外部和内部的快速变化,需要免疫系统做出重大调整。尽管越来越多的证据表明这一时期对终生免疫健康的影响,但这一时期在很大程度上仍是未知的。为了找出可能影响免疫系统发育轨迹的因素,我们在人类免疫学项目联盟(HIPC)研究框架内,对两个不同队列(西非冈比亚和美拉尼西亚巴布亚新几内亚)的796名新生儿的外周白细胞(WBC)群进行了严格标准化的高通量表型分析。在新生儿出生后的第一周,对每个新生儿采集了两次样本,第一次是在生命第 0 天(出生时),第二次是在生命第 1、3 或 7 天(取决于新生儿所属的随机分组)。随后的分析采用流式细胞仪和无偏见的自动门控算法进行,其详细程度前所未有。结果表明,外周血中白细胞组成的变化模式在不同人群和环境中高度一致。先天性髓系细胞在生命不同时期的变化最为明显。母乳喂养和较小范围的新生儿疫苗接种与外周血中性粒细胞和单核细胞数量的变化有关。我们的研究结果表明,新生儿的免疫发展有一个共同的轨迹,并可能与开始母乳喂养的时间有关,这可能有助于在生命早期提供免疫介导的免于感染的保护。这些数据开始勾勒出一个特定的干预机会之窗,可以有意识地指导白细胞的组成,从而指导免疫轨迹,进而指导生命早期的本体发育。该试验已在 NCT03246230 上注册。
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Breastfeeding and Neonatal Age Influence Neutrophil-Driven Ontogeny of Blood Cell Populations in the First Week of Human Life.

The first few days of life are characterized by rapid external and internal changes that require substantial immune system adaptations. Despite growing evidence of the impact of this period on lifelong immune health, this period remains largely uncharted. To identify factors that may impact the trajectory of immune development, we conducted stringently standardized, high-throughput phenotyping of peripheral white blood cell (WBC) populations from 796 newborns across two distinct cohorts (The Gambia, West Africa; Papua New Guinea, Melanesia) in the framework of a Human Immunology Project Consortium (HIPC) study. Samples were collected twice from each newborn during the first week of life, first at Day of Life 0 (at birth) and then subsequently at Day of Life 1, 3, or 7 depending on the randomization group the newborn belongs to. The subsequent analysis was conducted at an unprecedented level of detail using flow cytometry and an unbiased automated gating algorithm. The results showed that WBC composition in peripheral blood changes along patterns highly conserved across populations and environments. Changes across days of life were most pronounced in the innate myeloid compartment. Breastfeeding, and at a smaller scale neonatal vaccination, were associated with changes in peripheral blood neutrophil and monocyte cell counts. Our results suggest a common trajectory of immune development in newborns and possible association with timing of breastfeeding initiation, which may contribute to immune-mediated protection from infection in early life. These data begin to outline a specific window of opportunity for interventions that could deliberately direct WBC composition, and with that, immune trajectory and thus ontogeny in early life. This trial is registered with NCT03246230.

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来源期刊
CiteScore
6.90
自引率
2.40%
发文量
423
审稿时长
15 weeks
期刊介绍: Journal of Immunology Research is a peer-reviewed, Open Access journal that provides a platform for scientists and clinicians working in different areas of immunology and therapy. The journal publishes research articles, review articles, as well as clinical studies related to classical immunology, molecular immunology, clinical immunology, cancer immunology, transplantation immunology, immune pathology, immunodeficiency, autoimmune diseases, immune disorders, and immunotherapy.
期刊最新文献
The Potential of Single-Chain Variable Fragment Antibody: Role in Future Therapeutic and Diagnostic Biologics. Taz/Tead1 Promotes Alternative Macrophage Activation and Kidney Fibrosis via Transcriptional Upregulation of Smad3. Promoting Articular Cartilage Regeneration through Microenvironmental Regulation. Exosome-Derived microRNA: Potential Target for Diagnosis and Treatment of Sepsis. Breastfeeding and Neonatal Age Influence Neutrophil-Driven Ontogeny of Blood Cell Populations in the First Week of Human Life.
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