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The Multifaceted Roles of NK Cells in the Context of Murine Cytomegalovirus and Lymphocytic Choriomeningitis Virus Infections. NK细胞在巨细胞病毒和淋巴细胞色素膜炎病毒感染中的多方面作用
IF 4.3 4区 医学 Q2 IMMUNOLOGY Pub Date : 2024-06-27 eCollection Date: 2024-08-01 DOI: 10.4110/in.2024.24.e29
Thamer A Hamdan

NK cells belong to innate lymphoid cells and able to eliminate infected cells and tumor cells. NK cells play a valuable role in controlling viral infections. Also, they have the potential to shape the adaptive immunity via a unique crosstalk with the different immune cells. Murine models are important tools for delineating the immunological phenomena in viral infection. To decipher the immunological virus-host interactions, two major infection models are being investigated in mice regarding NK cell-mediated recognition: murine cytomegalovirus (MCMV) and lymphocytic choriomeningitis virus (LCMV). In this review, we recapitulate recent findings regarding the multifaceted role of NK cells in controlling LCMV and MCMV infections and outline the exquisite interplay between NK cells and other immune cells in these two settings. Considering that, infections with MCMV and LCMV recapitulates many physiopathological characteristics of human cytomegalovirus infection and chronic virus infections respectively, this study will extend our understanding of NK cells biology in interactions between the virus and its natural host.

NK 细胞属于先天性淋巴细胞,能够清除受感染的细胞和肿瘤细胞。NK 细胞在控制病毒感染方面发挥着重要作用。此外,NK 细胞还能通过与不同免疫细胞之间的独特串扰,形成适应性免疫。小鼠模型是描述病毒感染免疫现象的重要工具。为了破译病毒与宿主之间的免疫学相互作用,目前正在小鼠中研究 NK 细胞介导识别的两种主要感染模型:鼠巨细胞病毒(MCMV)和淋巴细胞性脉络膜炎病毒(LCMV)。在这篇综述中,我们回顾了有关 NK 细胞在控制 LCMV 和 MCMV 感染中的多方面作用的最新发现,并概述了 NK 细胞和其他免疫细胞在这两种情况下的微妙相互作用。考虑到 MCMV 和 LCMV 感染分别再现了人类巨细胞病毒感染和慢性病毒感染的许多生理病理特征,本研究将扩展我们对 NK 细胞在病毒与其自然宿主相互作用中的生物学作用的理解。
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引用次数: 0
Germinal Center Response to mRNA Vaccination and Impact of Immunological Imprinting on Subsequent Vaccination. 生殖中心对 mRNA 疫苗接种的反应以及免疫印迹对后续疫苗接种的影响。
IF 4.3 4区 医学 Q2 IMMUNOLOGY Pub Date : 2024-06-25 eCollection Date: 2024-08-01 DOI: 10.4110/in.2024.24.e28
Wooseob Kim

Vaccines are the most effective intervention currently available, offering protective immunity against targeted pathogens. The emergence of the coronavirus disease 2019 pandemic has prompted rapid development and deployment of lipid nanoparticle encapsulated, mRNA-based vaccines. While these vaccines have demonstrated remarkable immunogenicity, concerns persist regarding their ability to confer durable protective immunity to continuously evolving severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) variants. This review focuses on human B cell responses induced by SARS-CoV-2 mRNA vaccination, with particular emphasis on the crucial role of germinal center reactions in shaping enduring protective immunity. Additionally, we explored observations of immunological imprinting and dynamics of recalled pre-existing immunity following variants of concern-based booster vaccination. Insights from this review contribute to comprehensive understanding B cell responses to mRNA vaccination in humans, thereby refining vaccination strategies for optimal and sustained protection against evolving coronavirus variants.

疫苗是目前最有效的干预措施,可提供针对目标病原体的保护性免疫。2019 年冠状病毒疾病大流行的出现,促使基于 mRNA 的脂质纳米颗粒封装疫苗的快速开发和部署。虽然这些疫苗已显示出显著的免疫原性,但人们仍然担心它们能否对不断演变的严重急性呼吸系统综合征冠状病毒 2(SARS-CoV-2)变种产生持久的保护性免疫。本综述重点探讨接种 SARS-CoV-2 mRNA 疫苗诱导的人类 B 细胞反应,特别强调生殖中心反应在形成持久保护性免疫力中的关键作用。此外,我们还探讨了免疫印记的观察结果,以及在接种基于关注的变异株加强免疫后回忆原有免疫力的动态变化。本综述中的观点有助于全面了解人类 B 细胞对 mRNA 疫苗接种的反应,从而完善疫苗接种策略,针对不断演变的冠状病毒变种提供最佳和持续的保护。
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引用次数: 0
Recombinant Human IL-32θ Induces Polarization Into M1-like Macrophage in Human Monocytic Cells. 重组人 IL-32θ 可诱导人单核细胞极化为 M1 样巨噬细胞。
IF 4.3 4区 医学 Q2 IMMUNOLOGY Pub Date : 2024-06-24 eCollection Date: 2024-06-01 DOI: 10.4110/in.2024.24.e27
Hyo-Min Park, Jae-Young Park, Na-Yeon Kim, Hyemoon Kim, Hong-Gyum Kim, Dong-Ju Son, Jin Tae Hong, Do-Young Yoon

The tumor microenvironment (TME) is formed by several immune cells. Notably, tumor-associated macrophages (TAMs) are existed in the TME that induce angiogenesis, metastasis, and proliferation of cancer cells. Recently, a point-mutated variant of IL-32θ was discovered in breast cancer tissues, which suppressed migration and proliferation through intracellular pathways. Although the relationship between cancer and IL-32 has been previously studied, the effects of IL-32θ on TAMs remain elusive. Recombinant human IL-32θ (rhIL-32θ) was generated using an Escherichia coli expression system. To induce M0 macrophage polarization, THP-1 cells were stimulated with PMA. After PMA treatment, the cells were cultured with IL-4 and IL-13, or rhIL-32θ. The mRNA level of M1 macrophage markers (IL-1β, TNFα, inducible nitric oxide synthase) were increased by rhIL-32θ in M0 macrophages. On the other hand, the M2 macrophage markers (CCL17, CCL22, TGFβ, CD206) were decreased by rhIL-32θ in M2 macrophages. rhIL-32θ induced nuclear translocation of the NF-κB via regulation of the MAPK (p38) pathway. In conclusion, point-mutated rhIL-32θ induced the polarization to M1-like macrophages through the MAPK (p38) and NF-κB (p65/p50) pathways.

肿瘤微环境(TME)由多种免疫细胞组成。值得注意的是,肿瘤相关巨噬细胞(TAMs)存在于肿瘤微环境中,诱导血管生成、转移和癌细胞增殖。最近,在乳腺癌组织中发现了 IL-32θ 的点突变变体,它通过细胞内途径抑制迁移和增殖。虽然癌症与 IL-32 之间的关系此前已有研究,但 IL-32θ 对 TAMs 的影响仍然难以捉摸。重组人 IL-32θ(rhIL-32θ)是利用大肠杆菌表达系统产生的。为诱导 M0 巨噬细胞极化,用 PMA 刺激 THP-1 细胞。PMA 处理后,用 IL-4 和 IL-13 或 rhIL-32θ 培养细胞。rhIL-32θ 能提高 M0 巨噬细胞中 M1 巨噬细胞标志物(IL-1β、TNFα、诱导型一氧化氮合酶)的 mRNA 水平。rhIL-32θ 通过调节 MAPK(p38)通路诱导 NF-κB 核转位。总之,点突变的 rhIL-32θ 通过 MAPK(p38)和 NF-κB (p65/p50)途径诱导巨噬细胞极化为 M1 样巨噬细胞。
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引用次数: 0
Exploring the Potential of Glycolytic Modulation in Myeloid-Derived Suppressor Cells for Immunotherapy and Disease Management. 探索髓系衍生抑制细胞糖酵解调节在免疫疗法和疾病管理方面的潜力
IF 4.3 4区 医学 Q2 IMMUNOLOGY Pub Date : 2024-06-24 eCollection Date: 2024-06-01 DOI: 10.4110/in.2024.24.e26
Jisu Kim, Jee Yeon Choi, Hyeyoung Min, Kwang Woo Hwang

Recent advancements in various technologies have shed light on the critical role of metabolism in immune cells, paving the way for innovative disease treatment strategies through immunometabolism modulation. This review emphasizes the glucose metabolism of myeloid-derived suppressor cells (MDSCs), an emerging pivotal immunosuppressive factor especially within the tumor microenvironment. MDSCs, an immature and heterogeneous myeloid cell population, act as a double-edged sword by exacerbating tumors or mitigating inflammatory diseases through their immune-suppressive functions. Numerous recent studies have centered on glycolysis of MDSC, investigating the regulation of altered glycolytic pathways to manage diseases. However, the specific changes in MDSC glycolysis and their exact functions continue to be areas of ongoing discussion yet. In this paper, we review a range of current findings, including the latest research on the alteration of glycolysis in MDSCs, the consequential functional alterations in these cells, and the outcomes of attempts to modulate MDSC functions by regulating glycolysis. Ultimately, we will provide insights into whether these research efforts could be translated into clinical applications.

各种技术的最新进展揭示了新陈代谢在免疫细胞中的关键作用,为通过免疫代谢调控创新疾病治疗策略铺平了道路。髓源性抑制细胞(MDSCs)是一种新出现的关键免疫抑制因子,尤其是在肿瘤微环境中。MDSCs是一种未成熟的异质性髓系细胞群,是一把双刃剑,通过其免疫抑制功能加剧肿瘤或减轻炎症性疾病。最近的许多研究都以 MDSC 的糖酵解为中心,调查糖酵解途径的改变对控制疾病的调节作用。然而,MDSC 糖酵解的具体变化及其确切功能仍是目前仍在讨论的领域。在本文中,我们将回顾目前的一系列研究成果,包括有关 MDSC 糖酵解改变的最新研究、这些细胞随之发生的功能改变以及试图通过调节糖酵解来调节 MDSC 功能的结果。最后,我们将深入探讨这些研究工作能否转化为临床应用。
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引用次数: 0
Mitochondria Activity and CXCR4 Collaboratively Promote the Differentiation of CD11c+ B Cells Induced by TLR9 in Lupus. 线粒体活性和 CXCR4 协同促进红斑狼疮中由 TLR9 诱导的 CD11c+ B 细胞的分化
IF 4.3 4区 医学 Q2 IMMUNOLOGY Pub Date : 2024-06-19 eCollection Date: 2024-08-01 DOI: 10.4110/in.2024.24.e25
Sung Hoon Jang, Joo Sung Shim, Jieun Kim, Eun Gyeol Shin, Jong Hwi Yoon, Lucy Eunju Lee, Ho-Keun Kwon, Jason Jungsik Song

Lupus is characterized by the autoantibodies against nuclear Ags, underscoring the importance of identifying the B cell subsets driving autoimmunity. Our research focused on the mitochondrial activity and CXCR4 expression in CD11c+ B cells from lupus patients after ex vivo stimulation with a TLR9 agonist, CpG-oligodeoxyribonucleotide (ODN). We also evaluated the response of CD11c+ B cells in ODN-injected mice. Post-ex vivo ODN stimulation, we observed an increase in the proportion of CD11chi cells, with elevated mitochondrial activity and CXCR4 expression in CD11c+ B cells from lupus patients. In vivo experiments showed similar patterns, with TLR9 stimulation enhancing mitochondrial and CXCR4 activities in CD11chi B cells, leading to the generation of anti-dsDNA plasmablasts. The CXCR4 inhibitor AMD3100 and the mitochondrial complex I inhibitor IM156 significantly reduced the proportion of CD11c+ B cells and autoreactive plasmablasts. These results underscore the pivotal roles of mitochondria and CXCR4 in the production of autoreactive plasmablasts.

红斑狼疮的特征是针对核Ags的自身抗体,这就强调了识别驱动自身免疫的B细胞亚群的重要性。我们的研究重点是红斑狼疮患者的 CD11c+ B 细胞在体内外受到 TLR9 激动剂 CpG-寡脱氧核苷酸(ODN)刺激后的线粒体活性和 CXCR4 表达。我们还评估了注射 ODN 的小鼠 CD11c+ B 细胞的反应。在体外 ODN 刺激后,我们观察到 CD11chi 细胞比例增加,狼疮患者 CD11c+ B 细胞的线粒体活性和 CXCR4 表达升高。体内实验显示了类似的模式,TLR9刺激增强了CD11chi B细胞的线粒体和CXCR4活性,导致抗dsDNA浆细胞的产生。CXCR4 抑制剂 AMD3100 和线粒体复合体 I 抑制剂 IM156 能显著降低 CD11c+ B 细胞和自反应性浆细胞的比例。这些结果强调了线粒体和 CXCR4 在产生自反应性浆细胞中的关键作用。
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引用次数: 0
Complement C5a Receptor Signaling in Macrophages Enhances Trained Immunity Through mTOR Pathway Activation. 巨噬细胞中的补体 C5a 受体信号通过激活 mTOR 途径增强训练有素的免疫力
IF 4.3 4区 医学 Q2 IMMUNOLOGY Pub Date : 2024-06-05 eCollection Date: 2024-08-01 DOI: 10.4110/in.2024.24.e24
Eun-Hyeon Shim, Sae-Hae Kim, Doo-Jin Kim, Yong-Suk Jang

Complement C5a receptor (C5aR) signaling in immune cells has various functions, inducing inflammatory or anti-inflammatory responses based on the type of ligand present. The Co1 peptide (SFHQLPARSRPLP) has been reported to activate C5aR signaling in dendritic cells. We investigated the effect of C5aR signaling via the Co1 peptide on macrophages. In peritoneal macrophages, the interaction between C5aR and the Co1 peptide activated the mTOR pathway, resulting in the production of pro-inflammatory cytokines. Considering the close associations of mTOR signaling with IL-6 and TNF-α in macrophage training, our findings indicate that the Co1 peptide amplifies β-glucan-induced trained immunity. Overall, this research highlights a previously underappreciated aspect of C5aR signaling in trained immunity, and posits that the Co1 peptide is a potentially effective immunomodulator for enhancing trained immunity.

免疫细胞中的补体 C5a 受体(C5aR)信号具有多种功能,可根据配体类型诱导炎症或抗炎反应。据报道,Co1 肽(SFHQLPARSRPLP)能激活树突状细胞中的 C5aR 信号。我们研究了 C5aR 信号通过 Co1 肽对巨噬细胞的影响。在腹腔巨噬细胞中,C5aR 和 Co1 肽之间的相互作用激活了 mTOR 通路,导致促炎细胞因子的产生。考虑到mTOR信号与巨噬细胞训练中的IL-6和TNF-α密切相关,我们的研究结果表明,Co1肽扩大了β-葡聚糖诱导的训练免疫。总之,这项研究强调了训练免疫中 C5aR 信号转导以前未被重视的一个方面,并认为 Co1 肽是一种潜在的有效免疫调节剂,可增强训练免疫。
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引用次数: 0
Neutrophil Migration Is Mediated by VLA-6 in the Inflamed Adipose Tissue. 炎症脂肪组织中的中性粒细胞迁移是由 VLA-6 介导的
IF 4.3 4区 医学 Q2 IMMUNOLOGY Pub Date : 2024-05-31 eCollection Date: 2024-06-01 DOI: 10.4110/in.2024.24.e23
Hyunseo Lim, Young Ho Choe, Jaeho Lee, Gi Eun Kim, Jin Won Hyun, Young-Min Hyun

Adipose tissue, well known for its endocrine function, plays an immunological role in the body. The inflamed adipose tissue under LPS-induced systemic inflammation is characterized by the dominance of pro-inflammatory immune cells, particularly neutrophils. Although migration of macrophages toward damaged or dead adipocytes to form a crown-like structure in inflamed adipose tissue has been revealed, the neutrophilic interaction with adipocytes or the extracellular matrix remains unknown. Here, we demonstrated the involvement of adhesion molecules, particularly integrin α6β1, of neutrophils in adipocytes or the extracellular matrix of inflamed adipose tissue interaction. These results suggest that disrupting the adhesion between adipose tissue components and neutrophils may govern the accumulation of excessive neutrophils in inflamed tissues, a prerequisite in developing anti-inflammatory therapeutics by inhibiting inflammatory immune cells.

众所周知,脂肪组织具有内分泌功能,但它在体内也发挥着免疫作用。在 LPS 诱导的全身炎症中,发炎的脂肪组织的特点是促炎免疫细胞,尤其是中性粒细胞占主导地位。虽然已经发现巨噬细胞向受损或死亡的脂肪细胞迁移,在发炎的脂肪组织中形成冠状结构,但中性粒细胞与脂肪细胞或细胞外基质的相互作用仍然未知。在这里,我们证明了中性粒细胞的粘附分子,尤其是整合素α6β1参与了脂肪细胞或炎症脂肪组织细胞外基质的相互作用。这些结果表明,破坏脂肪组织成分与中性粒细胞之间的粘附可能会控制中性粒细胞在炎症组织中的过度聚集,这是通过抑制炎症免疫细胞开发抗炎疗法的先决条件。
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引用次数: 0
Erratum: Inhibition of Chitinase-3-like-1 by K284-6111 Reduces Atopic Skin Inflammation via Repressing Lactoferrin. 更正:K284-6111抑制几丁质酶-3-样-1可通过抑制乳铁蛋白减轻特应性皮肤炎症。
IF 4.3 4区 医学 Q2 IMMUNOLOGY Pub Date : 2024-05-29 eCollection Date: 2024-06-01 DOI: 10.4110/in.2024.24.e22
Seong Hee Jeon, Yong Sun Lee, In Jun Yeo, Hee Pom Lee, Jaesuk Yoon, Dong Ju Son, Sang-Bae Han, Jin Tae Hong

[This corrects the article e22 in vol. 21, PMID: 34277112.].

[此处更正了第 21 卷中的文章 e22,PMID:34277112]。
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引用次数: 0
IL-1 Receptor Dynamics in Immune Cells: Orchestrating Immune Precision and Balance. 免疫细胞中的 IL-1 受体动力学:协调免疫精确性和平衡。
IF 4.3 4区 医学 Q2 IMMUNOLOGY Pub Date : 2024-05-29 eCollection Date: 2024-06-01 DOI: 10.4110/in.2024.24.e21
Dong Hyun Kim, Won-Woo Lee

IL-1, a pleiotropic cytokine with profound effects on various cell types, particularly immune cells, plays a pivotal role in immune responses. The proinflammatory nature of IL-1 necessitates stringent control mechanisms of IL-1-mediated signaling at multiple levels, encompassing transcriptional and translational regulation, precursor processing, as well as the involvement of a receptor accessory protein, a decoy receptor, and a receptor antagonist. In T-cell immunity, IL-1 signaling is crucial during both the priming and effector phases of immune reactions. The fine-tuning of IL-1 signaling hinges upon two distinct receptor types; the functional IL-1 receptor (IL-1R) 1 and the decoy IL-1R2, accompanied by ancillary molecules such as the IL-1R accessory protein (IL-1R3) and IL-1R antagonist. IL-1R1 signaling by IL-1β is critical for the differentiation, expansion, and survival of Th17 cells, essential for defense against extracellular bacteria or fungi, yet implicated in autoimmune disease pathogenesis. Recent investigations emphasize the physiological importance of IL-1R2 expression, particularly in its capacity to modulate IL-1-dependent responses within Tregs. The precise regulation of IL-1R signaling is indispensable for orchestrating appropriate immune responses, as unchecked IL-1 signaling has been implicated in inflammatory disorders, including Th17-mediated autoimmunity. This review provides a thorough exploration of the IL-1R signaling complex and its pivotal roles in immune regulation. Additionally, it highlights recent advancements elucidating the mechanisms governing the expression of IL-1R1 and IL-1R2, underscoring their contributions to fine-tuning IL-1 signaling. Finally, the review briefly touches upon therapeutic strategies targeting IL-1R signaling, with potential clinical applications.

IL-1 是一种对各类细胞,尤其是免疫细胞有深远影响的多效性细胞因子,在免疫反应中发挥着关键作用。IL-1 的促炎特性要求对 IL-1 介导的信号传导进行多层次的严格控制,包括转录和翻译调控、前体处理以及受体附属蛋白、诱饵受体和受体拮抗剂的参与。在 T 细胞免疫中,IL-1 信号在免疫反应的启动和效应阶段都至关重要。IL-1信号的微调取决于两种不同的受体类型:功能性IL-1受体(IL-1R)1和诱饵IL-1R2,以及辅助分子,如IL-1R附属蛋白(IL-1R3)和IL-1R拮抗剂。由 IL-1β 发出的 IL-1R1 信号对 Th17 细胞的分化、扩增和存活至关重要,是抵御细胞外细菌或真菌的关键,但也与自身免疫性疾病的发病机制有关。最近的研究强调了 IL-1R2 表达的生理重要性,尤其是其调节 Tregs 内 IL-1 依赖性反应的能力。IL-1R信号的精确调控对于协调适当的免疫反应是不可或缺的,因为不受控制的IL-1信号与炎症性疾病(包括Th17介导的自身免疫)有关。本综述深入探讨了 IL-1R 信号复合体及其在免疫调节中的关键作用。此外,它还重点介绍了最近在阐明 IL-1R1 和 IL-1R2 的表达机制方面取得的进展,强调了它们对 IL-1 信号微调的贡献。最后,综述简要介绍了针对 IL-1R 信号转导的治疗策略,以及潜在的临床应用。
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引用次数: 0
The Impact of Pulmonary Disorders on Neurological Health (Lung-Brain Axis). 肺部疾病对神经系统健康的影响(肺-脑轴)。
IF 4.3 4区 医学 Q2 IMMUNOLOGY Pub Date : 2024-05-29 eCollection Date: 2024-06-01 DOI: 10.4110/in.2024.24.e20
Hongryeol Park, Chan Hee Lee

The brain and lungs, vital organs in the body, play essential roles in maintaining overall well-being and survival. These organs interact through complex and sophisticated bi-directional pathways known as the 'lung-brain axis', facilitated by their close proximity and neural connections. Numerous studies have underscored the mediation of the lung-brain axis by inflammatory responses and hypoxia-induced damage, which are pivotal to the progression of both pulmonary and neurological diseases. This review aims to delve into how pulmonary diseases, including acute/chronic airway diseases and pulmonary conditions, can instigate neurological disorders such as stroke, Alzheimer's disease, and Parkinson's disease. Additionally, we highlight the emerging research on the lung microbiome which, drawing parallels between the gut and lungs in terms of microbiome contents, may play a significant role in modulating brain health. Ultimately, this review paves the way for exciting avenues of future research and therapeutics in addressing respiratory and neurological diseases.

大脑和肺是人体的重要器官,在维持整体健康和生存方面发挥着至关重要的作用。这些器官通过被称为 "肺-脑轴 "的复杂而精密的双向途径进行互动,它们之间的紧密联系和神经连接促进了这种互动。大量研究强调,肺-脑轴受到炎症反应和缺氧引起的损伤的调控,这对肺部和神经系统疾病的发展至关重要。本综述旨在深入探讨肺部疾病(包括急性/慢性气道疾病和肺部疾病)如何诱发中风、阿尔茨海默病和帕金森病等神经系统疾病。此外,我们还重点介绍了有关肺部微生物组的新兴研究,根据肠道和肺部微生物组内容的相似性,肺部微生物组可能在调节大脑健康方面发挥重要作用。最终,这篇综述为未来研究和治疗呼吸系统和神经系统疾病铺平了道路。
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引用次数: 0
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Immune Network
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