中性粒细胞-幼年利什曼原虫相互作用诱导中性粒细胞胞外诱捕、阻尼和炎症分子释放。

IF 4 2区 医学 Q2 CHEMISTRY, MEDICINAL
ACS Infectious Diseases Pub Date : 2025-02-14 Epub Date: 2025-01-31 DOI:10.1021/acsinfecdis.4c00820
Paulo Ricardo Porfírio do Nascimento, Carolina Oliveira Mendes-Aguiar, Ingryd Câmara Morais, João Firmino Rodrigues Neto, Mary E Wilson, Selma Maria Bezerra Jerônimo
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引用次数: 0

摘要

中性粒细胞是第一个到达感染部位的细胞,释放由细胞核和/或线粒体DNA网组成的中性粒细胞细胞外陷阱(NETs)。与其他寄生虫类似,幼利什曼原虫诱导净挤出。然而,我们对利什曼原虫感染中NET释放后NET形成和中性粒细胞命运的理解是有限的。我们的研究旨在确定人类中性粒细胞在化学或婴儿乳杆菌刺激下释放的NET支架的DNA来源。中性粒细胞与PMA、PHA、LPS或婴儿乳杆菌孵育,然后进行DNA和弹性酶活性定量;此外,我们评估了构成net的DNA来源。用annexin-V/7AAd标记法评价中性粒细胞活力。评估IL6、TNFA、IL10、CXCL1、CXCL8和FPR1在乳杆菌相互作用下的表达。与化学物质或婴儿乳杆菌孵育的中性粒细胞释放NETs。然而,与与寄生虫孵育的中性粒细胞相比,化学物质刺激的中性粒细胞在1小时后表现出较低的活力。化学刺激中性粒细胞产生的NETs主要由核DNA组成。相反,由寄生虫诱导的NET是线粒体DNA来源,没有利什曼尼虫活性。在寄生虫刺激4小时后,中性粒细胞表达il - 6、TNFA、CXCL1、CXCL8和FPR1等基因达到峰值。我们的研究表明,中性粒细胞在化学物质或婴儿乳杆菌暴露后产生NETs。虽然蚊帐对寄生虫没有毒性,但它们是作为危险信号释放的。这些发现支持中性粒细胞在释放信号分子中的作用,这些信号分子影响感染过程发生的炎症环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neutrophil-Leishmania infantum Interaction Induces Neutrophil Extracellular Traps, DAMPs, and Inflammatory Molecule Release.

Neutrophils, the first cells to arrive at infection sites, release neutrophil extracellular traps (NETs) comprising nuclear and/or mitochondrial DNA webs decorated with proteins. Similar to other parasites, Leishmania infantum induces NET extrusion. However, our understanding of NET formation and neutrophil fate after NET release in a Leishmania infection context is limited. Our study aimed to determine the DNA origin of the NET scaffolds released by human neutrophils in response to chemical or L. infantum stimulation. Neutrophils were incubated with PMA, PHA, LPS, or L. infantum, followed by DNA and elastase activity quantification; additionally, we evaluated the source of DNA that composes NETs. Neutrophil viability was evaluated by annexin-V/7AAd labeling. Expression of IL6, TNFA, IL10, CXCL1, CXCL8, and FPR1 in response to the L. infantum interaction was assessed. Neutrophils incubated with chemicals or L. infantum released NETs. However, neutrophils stimulated by the chemicals showed lower viability after 1 h in comparison to neutrophils incubated with parasites. NETs from chemically stimulated neutrophils were mainly composed of nuclear DNA. Conversely, the NET induced by the parasites was of mitochondrial DNA origin and had no leishmanicidal activity. After 4 h of parasite stimulation, neutrophils peak the expression of genes such as IL6, TNFA, CXCL1, CXCL8, and FPR1. Our study demonstrates that neutrophils produce NETs after chemical or L. infantum exposure. Although they are not toxic to the parasite, NETs are released as danger signals. These findings support the role of neutrophils in releasing signaling molecules, which influence the inflammatory environment in which the infectious process occurs.

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来源期刊
ACS Infectious Diseases
ACS Infectious Diseases CHEMISTRY, MEDICINALINFECTIOUS DISEASES&nb-INFECTIOUS DISEASES
CiteScore
9.70
自引率
3.80%
发文量
213
期刊介绍: ACS Infectious Diseases will be the first journal to highlight chemistry and its role in this multidisciplinary and collaborative research area. The journal will cover a diverse array of topics including, but not limited to: * Discovery and development of new antimicrobial agents — identified through target- or phenotypic-based approaches as well as compounds that induce synergy with antimicrobials. * Characterization and validation of drug target or pathways — use of single target and genome-wide knockdown and knockouts, biochemical studies, structural biology, new technologies to facilitate characterization and prioritization of potential drug targets. * Mechanism of drug resistance — fundamental research that advances our understanding of resistance; strategies to prevent resistance. * Mechanisms of action — use of genetic, metabolomic, and activity- and affinity-based protein profiling to elucidate the mechanism of action of clinical and experimental antimicrobial agents. * Host-pathogen interactions — tools for studying host-pathogen interactions, cellular biochemistry of hosts and pathogens, and molecular interactions of pathogens with host microbiota. * Small molecule vaccine adjuvants for infectious disease. * Viral and bacterial biochemistry and molecular biology.
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