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Deficits in our understanding of natural killer cell development in mouse and human. 我们对小鼠和人类自然杀伤细胞发育的理解存在缺陷。
IF 3.1 3区 医学 Q2 HEMATOLOGY Pub Date : 2023-07-01 Epub Date: 2023-04-18 DOI: 10.1097/MOH.0000000000000765
Christopher Schorr, Maya Shraddha Krishnan, Maegan Capitano

Purpose of review: Natural killer (NK) cells are a type of immune cell that play a crucial role in the defense against cancer and viral infections. The development and maturation of NK cells is a complex process, involving the coordination of various signaling pathways, transcription factors, and epigenetic modifications. In recent years, there has been a growing interest in studying the development of NK cells. In this review, we discuss the field's current understanding of the journey a hematopoietic stem cell takes to become a fully mature NK cell and detail the sequential steps and regulation of conventional NK leukopoiesis in both mice and humans.

Recent findings: Recent studies have highlighted the significance of defining NK development stages. Several groups report differing schema to identify NK cell development and new findings demonstrate novel ways to classify NK cells. Further investigation of NK cell biology and development is needed, as multiomic analysis reveals a large diversity in NK cell development pathways.

Summary: We provide an overview of current knowledge on the development of NK cells, including the various stages of differentiation, the regulation of development, and the maturation of NK cells in both mice and humans. A deeper understanding of NK cell development has the potential to provide insights into new therapeutic strategies for the treatment of diseases such as cancer and viral infections.

综述目的:自然杀伤细胞(NK)是一种在防御癌症和病毒感染方面发挥关键作用的免疫细胞。NK细胞的发育和成熟是一个复杂的过程,涉及各种信号通路、转录因子和表观遗传学修饰的协调。近年来,人们对研究NK细胞的发育越来越感兴趣。在这篇综述中,我们讨论了该领域目前对造血干细胞成为完全成熟的NK细胞的过程的理解,并详细介绍了小鼠和人类常规NK白细胞生成的顺序步骤和调节。最近的发现:最近的研究强调了确定NK发育阶段的重要性。几个小组报告了识别NK细胞发育的不同模式,新发现证明了对NK细胞进行分类的新方法。需要进一步研究NK细胞的生物学和发育,因为多组分析揭示了NK细胞发育途径的巨大多样性。摘要:我们概述了目前关于NK细胞发育的知识,包括小鼠和人类NK细胞分化的各个阶段、发育的调节和成熟。对NK细胞发展的更深入理解有可能为治疗癌症和病毒感染等疾病的新治疗策略提供见解。
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引用次数: 0
Editorial introduction. 编辑介绍。
IF 3.2 3区 医学 Q2 HEMATOLOGY Pub Date : 2023-07-01 DOI: 10.1097/MOH.0000000000000768
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引用次数: 0
Understanding and targeting erythroid progenitor cells for effective cancer therapy. 了解和靶向红系祖细胞用于有效的癌症治疗。
IF 3.2 3区 医学 Q2 HEMATOLOGY Pub Date : 2023-07-01 DOI: 10.1097/MOH.0000000000000762
Qingfei Wang, Rylee A Poole, Mateusz Opyrchal

Purpose of review: It is well described that tumor-directed aberrant myelopoiesis contributes to the generation of various myeloid populations with tumor-promoting properties. A growing number of recent studies have revealed the importance of the previously unappreciated roles of erythroid progenitor cells (EPCs) in the context of cancer, bringing the updated concept that altered erythropoiesis also facilitates tumor growth and progression. Better characterization of EPCs may provide attractive therapeutic opportunities.

Recent findings: EPCs represent a heterogeneous population. They exhibit crucial pro-tumor activities by secreting growth factors and modulating the immune response. Cancers induce potent EPC expansion and suppress their differentiation. Recent single-cell transcriptome and lineage tracking analyses have provided novel insight that tumor-induced EPCs are able to be transdifferentiated into immunosuppressive myeloid cells to limit T-cell function and immunotherapy. Therapeutic strategies targeting key factors of EPC-driven immunosuppression, reducing the amount of EPCs, and promoting EPC differentiation and maturation have been extensively investigated.

Summary: This review summarizes the current state of knowledge as to the fascinating biology of EPCs, highlights mechanisms by which they exert the tumor promoting activities, as well as the perspectives on future directions and strategies to target these cells for potential therapeutic benefit.

综述目的:肿瘤导向的异常骨髓生成有助于产生各种具有促肿瘤特性的骨髓群。最近越来越多的研究揭示了红细胞祖细胞(EPCs)在癌症背景下的重要性,带来了红细胞生成改变也促进肿瘤生长和进展的最新概念。更好地表征内皮祖细胞可能提供有吸引力的治疗机会。最近的研究发现:EPCs代表一个异质人群。它们通过分泌生长因子和调节免疫反应表现出重要的促肿瘤活性。癌症诱导有效的EPC扩增并抑制其分化。最近的单细胞转录组和谱系跟踪分析提供了新的见解,即肿瘤诱导的EPCs能够转分化为免疫抑制性骨髓细胞,以限制t细胞功能和免疫治疗。针对EPCs驱动的免疫抑制关键因子、减少EPCs数量、促进EPCs分化和成熟的治疗策略已被广泛研究。摘要:本文综述了EPCs的生物学研究现状,重点介绍了EPCs发挥促肿瘤作用的机制,并对未来的研究方向和策略进行了展望。
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引用次数: 1
Chediak-Higashi syndrome. 切迪克-希加希综合征
IF 3.1 3区 医学 Q2 HEMATOLOGY Pub Date : 2023-07-01 Epub Date: 2023-04-25 DOI: 10.1097/MOH.0000000000000766
Mackenzie L Talbert, May Christine V Malicdan, Wendy J Introne

Purpose of review: Chediak-Higashi syndrome is a rare autosomal recessive disorder characterized by congenital immunodeficiency, bleeding diathesis, pyogenic infection, partial oculocutaneous albinism, and progressive neurodegeneration. Treatment is hematopoietic stem cell transplantation or bone marrow transplantation; however, this does not treat the neurologic aspect of the disease. Mutations in the lysosomal trafficking regulator (LYST) gene were identified to be causative of Chediak-Higashi, but despite many analyses, there is little functional information about the LYST protein. This review serves to provide an update on the clinical manifestations and cellular defects of Chediak-Higashi syndrome.

Recent findings: More recent papers expand the neurological spectrum of disease in CHS, to include hereditary spastic paraplegia and parkinsonism. Granule size and distribution in NK cells have been investigated in relation to the location of mutations in LYST. Patients with mutations in the ARM/HEAT domain had markedly enlarged granules, but fewer in number. By contrast, patients with mutations in the BEACH domain had more numerous granules that were normal in size to slightly enlarged, but demonstrated markedly impaired polarization. The role of LYST in autophagosome formation has been highlighted in recent studies; LYST was defined to have a prominent role in autophagosome lysosome reformation for the maintenance of lysosomal homeostasis in neurons, while in retinal pigment epithelium cells, LYST deficiency was shown to lead to phagosome accumulation.

Summary: Despite CHS being a rare disease, investigation into LYST provides an understanding of basic vesicular fusion and fission. Understanding of these mechanisms may provide further insight into the function of LYST.

综述目的:切迪克-希加希综合征(Chediak-Higashi Syndrome)是一种罕见的常染色体隐性遗传疾病,以先天性免疫缺陷、出血、化脓性感染、部分眼睑白化和进行性神经变性为特征。治疗方法是造血干细胞移植或骨髓移植;但这并不能治疗该病的神经系统方面。溶酶体转运调节器(LYST)基因的突变已被确定为切迪克-希加希的致病基因,但尽管进行了许多分析,有关 LYST 蛋白的功能信息却很少。本综述旨在介绍切迪克-希加希综合征的最新临床表现和细胞缺陷:最近的论文扩展了切迪克-希格希综合征的神经系统疾病谱,包括遗传性痉挛性截瘫和帕金森病。对 NK 细胞中颗粒的大小和分布与 LYST 突变位置的关系进行了研究。ARM/HEAT 结构域发生突变的患者的颗粒明显增大,但数量较少。相比之下,BEACH 结构域发生突变的患者的颗粒数量更多,大小正常或略有增大,但极化功能明显受损。最近的研究强调了 LYST 在自噬体形成中的作用;LYST 被定义为在自噬体溶酶体重组中发挥着重要作用,以维持神经元中溶酶体的平衡,而在视网膜色素上皮细胞中,LYST 的缺乏被证明会导致吞噬体的积累。对这些机制的了解可能有助于进一步了解 LYST 的功能。
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引用次数: 0
The impact of prenatal inflammation on hematopoietic development. 产前炎症对造血发育的影响。
IF 3.2 3区 医学 Q2 HEMATOLOGY Pub Date : 2023-07-01 DOI: 10.1097/MOH.0000000000000770
Nicole A Tseng, Anna E Beaudin

Purpose of review: Inflammation is now recognized as a major regulator of hematopoietic stem cell (HSC) function. Adult hematopoietic stem cells can adaptively modulate hematopoietic output in direct response to acute infection and inflammation. Conversely, prolonged exposure to inflammation can drive impaired HSC function, clonal expansion, and malignant transformation. As compared with adult hematopoiesis, the effects of prenatal inflammation on developing hematopoietic stem cells are understudied.

Recent findings: Inflammatory cues directly activate adult HSCs in the bone marrow, but the response of fetal HSCs to maternal inflammation is underexplored. Recent evidence demonstrates that maternal inflammation can be detected by fetal hematopoietic stem and progenitor cells (HSPCs) within the fetal liver and that the same inflammatory cues evoke fundamentally distinct responses during development. The responses of developing stem and progenitor cells and the specialized immune cells they produce have important implications for postnatal hematopoietic output and immune function.

Summary: We discuss recent insights into the response of fetal hematopoiesis to prenatal inflammation and examine how recent discoveries regarding the contribution of fetal hematopoiesis to the adult hematopoietic system will influence future studies.

综述目的:炎症现在被认为是造血干细胞(HSC)功能的主要调节因子。成人造血干细胞可以自适应调节造血输出,直接响应急性感染和炎症。相反,长期暴露于炎症会导致HSC功能受损、克隆扩增和恶性转化。与成人造血相比,产前炎症对造血干细胞发育的影响尚未得到充分研究。最近发现:炎症信号直接激活骨髓中的成人造血干细胞,但胎儿造血干细胞对母体炎症的反应尚不清楚。最近的证据表明,母体炎症可以通过胎儿肝脏内的造血干细胞和祖细胞(HSPCs)检测到,并且相同的炎症信号在发育过程中引起根本不同的反应。发育中的干细胞和祖细胞及其产生的特化免疫细胞的反应对出生后的造血输出和免疫功能具有重要意义。摘要:我们讨论了胎儿造血对产前炎症反应的最新见解,并研究了胎儿造血对成人造血系统的贡献的最新发现将如何影响未来的研究。
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引用次数: 0
Regulation of granulocyte colony-stimulating factor-induced hematopoietic stem cell mobilization by the sympathetic nervous system. 交感神经系统对粒细胞集落刺激因子诱导的造血干细胞动员的调控。
IF 3.2 3区 医学 Q2 HEMATOLOGY Pub Date : 2023-07-01 DOI: 10.1097/MOH.0000000000000764
Tomohide Suzuki, Shinichi Ishii, Yoshio Katayama

Purpose of review: Granulocyte colony-stimulating factor (G-CSF) is now a standard agent to mobilize hematopoietic stem cells (HSCs) from the bone marrow to circulation. This review introduced mechanistic insights from the aspect of the sympathetic nervous system (SNS).

Recent findings: Mobilization efficiency is determined by the balance between promotion and suppression pathways critically regulated by the SNS. G-CSF-induced high catecholaminergic tone promotes mobilization by (1) the strong suppression of osteolineage cells as a hematopoietic microenvironment and (2) fibroblast growth factor 23 production from erythroblasts, which inhibits CXCR4 function in HSCs. Simultaneously, SNS signals inhibit mobilization by (1) prostaglandin E2 production from mature neutrophils to induce osteopontin in osteoblasts to anchor HSCs and (2) angiopoietin-like protein 4 production from immature neutrophils via peroxisome proliferator-activated receptor δ to inhibit BM vascular permeability.

Summary: We now know not only the regulatory mechanisms of G-CSF-induced mobilization but also the leads about unfavorable clinical phenomena, such as low-grade fever, bone pain, and poor mobilizers. Recent understanding of the mechanism will assist clinicians in the treatment for mobilization and researchers in the studies of the hidden potential of BM.

回顾目的:粒细胞集落刺激因子(G-CSF)现在是动员造血干细胞(hsc)从骨髓到循环的标准药物。本文从交感神经系统(SNS)的角度介绍了其机理。最近的研究发现:动员效率是由SNS关键调控的促进和抑制途径之间的平衡决定的。g - csf诱导的高儿茶酚胺能张力通过(1)强烈抑制骨脂细胞作为造血微环境和(2)红母细胞产生成纤维细胞生长因子23,从而抑制造血干细胞中CXCR4的功能来促进动员。同时,SNS信号通过(1)成熟中性粒细胞产生前列腺素E2,诱导成骨细胞中的骨桥蛋白锚定hsc;(2)未成熟中性粒细胞通过过氧化物酶体增殖激活受体δ产生血管生成素样蛋白4,抑制BM血管通透性。总结:我们现在不仅知道了g - csf诱导的活动的调节机制,也知道了一些不利的临床现象,如低烧、骨痛和活动不良。最近对其机制的了解将有助于临床医生对动员的治疗和研究人员对BM隐藏潜力的研究。
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引用次数: 0
Crosstalk between terminal erythropoiesis and granulopoiesis within their common niche: the erythromyeloblastic island. 红细胞生成末期和粒细胞生成末期在其共同的生态位(红细胞母细胞岛)中相互交织。
IF 3.1 3区 医学 Q2 HEMATOLOGY Pub Date : 2023-07-01 Epub Date: 2023-04-25 DOI: 10.1097/MOH.0000000000000767
Laurel Romano, Katie G Seu, Lionel Blanc, Theodosia A Kalfa

Purpose of review: The identity of the erythroblastic island (EBI) macrophage (Mϕ) has been under investigation for decades since it was recognized as the first hematopoietic niche 'nursing' terminal erythropoiesis. This review will focus on the current insights to the characteristics and the role of the EBI Mϕ balancing terminal erythropoiesis and granulopoiesis.

Recent findings: While the EBI has long been known as the niche for erythroid precursors, significant advancements in biology research technologies, including optimization of EBI enrichment protocols, single-cell ribonucleic acid sequencing, and imaging flow cytometry, have recently revealed that granulocytic precursors co-exist in this niche, termed erythromyeloblastic island (EMBI). More importantly, the balance noted at baseline between terminal granulopoiesis and erythropoiesis within EBIs/EMBIs is altered with diseases affecting hematopoiesis, such as stress erythropoiesis and inflammatory conditions causing anemia of inflammation. The role of the EMBI niche has yet to be fully investigated mechanistically, however, a notable degree of transcriptional and cell surface marker heterogeneity has been identified for the EMBI Mϕ, implicating its plasticity and diverse function.

Summary: Terminal erythropoiesis and granulopoiesis are regulated within the EMBI. Investigations of their balance within this niche in health and disease may reveal new targets for treatment of diseases of terminal hematopoiesis.

综述的目的:自从红细胞生成岛(EBI)巨噬细胞(Mϕ)被认为是 "哺育 "末端红细胞生成的第一个造血生态位以来,人们对它的身份进行了数十年的研究。本综述将重点介绍目前对 EBI 巨噬细胞平衡末端红细胞生成和粒细胞生成的特征和作用的认识:尽管 EBI 长期以来一直被认为是红细胞前体的龛位,但生物学研究技术的重大进步,包括 EBI 富集方案的优化、单细胞核糖核酸测序和成像流式细胞术,最近揭示了粒细胞前体也共存于这一龛位,即红细胞母细胞岛(EMBI)。更重要的是,在影响造血的疾病(如应激性红细胞生成和导致炎症性贫血的炎症性疾病)中,EBI/EMBI 内的末端粒细胞生成和红细胞生成之间的基线平衡会发生改变。然而,EMBI Mϕ 的转录和细胞表面标志物异质性程度显著,这表明它具有可塑性和多种功能。摘要:末端红细胞生成和粒细胞生成受 EMBI 调节。对它们在健康和疾病中的平衡进行研究,可能会发现治疗末端造血疾病的新靶点。
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引用次数: 0
Interferon regulatory factor-8-dependent innate immune alarm senses GATA2 deficiency to alter hematopoietic differentiation and function. 干扰素调节因子-8 依赖性先天免疫警报感知 GATA2 缺乏,从而改变造血分化和功能。
IF 3.1 3区 医学 Q2 HEMATOLOGY Pub Date : 2023-07-01 Epub Date: 2023-04-27 DOI: 10.1097/MOH.0000000000000763
Kirby D Johnson, Mabel M Jung, Vu L Tran, Emery H Bresnick

Purpose of review: Recent discoveries have provided evidence for mechanistic links between the master regulator of hematopoiesis GATA2 and the key component of interferon and innate immunity signaling pathways, interferon-regulatory factor-8 (IRF8). These links have important implications for the control of myeloid differentiation in physiological and pathological states.

Recent findings: GATA2 deficiency resulting from loss of the Gata2 -77 enhancer in progenitors triggers an alarm that instigates the transcriptional induction of innate immune signaling and distorts a myeloid differentiation program. This pathological alteration renders progenitors hyperresponsive to interferon γ, toll-like receptor and interleukin-6 signaling and impaired in granulocyte-macrophage colony-stimulating factor signaling. IRF8 upregulation in -77-/- progenitors promotes monocyte and dendritic cell differentiation while suppressing granulocytic differentiation. As PU.1 promotes transcription of Irf8 and other myeloid and B-lineage genes, GATA2-mediated repression of these genes opposes the PU.1-dependent activating mechanism.

Summary: As GATA2 deficiency syndrome is an immunodeficiency disorder often involving myelodysplastic syndromes and acute myeloid leukemia, elucidating how GATA2 commissions and decommissions genome activity and developmental regulatory programs will unveil mechanisms that go awry when GATA2 levels and/or activities are disrupted.

综述的目的:最近的发现为造血主调节因子 GATA2 与干扰素和先天性免疫信号通路的关键成分干扰素调节因子-8(IRF8)之间的机理联系提供了证据。这些联系对于在生理和病理状态下控制髓系分化具有重要意义:祖细胞中 Gata2 -77 增强子缺失导致的 GATA2 缺乏会触发警报,诱发先天性免疫信号的转录诱导,并扭曲髓系分化程序。这种病理改变使祖细胞对干扰素γ、toll样受体和白细胞介素-6信号反应过度,并损害粒细胞-巨噬细胞集落刺激因子信号。IRF8 在-77-/-祖细胞中的上调促进了单核细胞和树突状细胞的分化,同时抑制了粒细胞的分化。小结:GATA2缺乏综合征是一种免疫缺陷疾病,常涉及骨髓增生异常综合征和急性髓系白血病,阐明GATA2如何委托和解除委托基因组活性和发育调控程序,将揭示GATA2水平和/或活性被破坏时出现问题的机制。
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引用次数: 0
Erythrocyte pyruvate kinase activation in red cell disorders. 红细胞丙酮酸激酶在红细胞紊乱中的激活。
IF 3.2 3区 医学 Q2 HEMATOLOGY Pub Date : 2023-05-01 DOI: 10.1097/MOH.0000000000000758
Alessandro Matte, Enrica Federti, Lucia De Franceschi

Purpose of review: In red cells, pyruvate kinase is a key enzyme in the final step of glycolytic degradative process, which generates a constant energy supply via ATP production. This commentary discusses recent findings on pyruvate kinase activators as new therapeutic option in hereditary red cell disorders such as thalassemic syndromes or sickle cell disease (SCD).

Recent findings: Mitapivat and etavopivat are two oral pyruvate kinase activators. Studies in a mouse model for β thalassemia have shown beneficial effects of mitapivat on both red cell survival and ineffective erythropoiesis, with an amelioration of iron homeostasis. This was confirmed in a proof-of-concept study in patients with nontransfusion-dependent thalassemias. Both mitapivat and etavopivat have been evaluated in mouse models for SCD, showing an increased 2-3DPG/ATP ratio and a reduction in haemolysis as well as in sickling. These data were confirmed in proof-of-concept clinical studies with both molecules carried in patients with SCD.

Summary: Preclinical and clinical evidence indicate that pyruvate kinase activators represent new therapeutic option in hemoglobinopathies or SCD. Other red cell disorders such as hereditary spherocytosis or hereditary anaemias characterized by defective erythropoiesis might represent additional areas to investigate the therapeutic impact of pyruvate kinase activators.

综述目的:在红细胞中,丙酮酸激酶是糖酵解降解过程最后一步的关键酶,通过产生ATP产生持续的能量供应。这篇评论讨论了丙酮酸激酶激活剂作为遗传性红细胞疾病如地中海贫血综合征或镰状细胞病(SCD)的新治疗选择的最新发现。最近发现:米他伐特和依他伐特是两种口服丙酮酸激酶激活剂。β地中海贫血小鼠模型的研究表明,米他伐特对红细胞存活和无效的红细胞生成都有有益的影响,并改善铁稳态。这在一项针对非输血依赖型地中海贫血患者的概念验证研究中得到了证实。在SCD小鼠模型中对米他伐特和依他伐特进行了评估,显示2-3DPG/ATP比率增加,溶血和镰状细胞减少。这些数据在SCD患者携带这两种分子的概念验证临床研究中得到证实。临床前和临床证据表明,丙酮酸激酶激活剂是治疗血红蛋白病或SCD的新选择。其他红细胞疾病,如遗传性球形红细胞增多症或以红细胞生成缺陷为特征的遗传性贫血,可能是研究丙酮酸激酶激活剂治疗效果的额外领域。
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引用次数: 2
Editorial introduction. 编辑介绍。
IF 3.2 3区 医学 Q2 HEMATOLOGY Pub Date : 2023-05-01 DOI: 10.1097/MOH.0000000000000759
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引用次数: 0
期刊
Current Opinion in Hematology
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