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Phenotypic impacts of CSF1R deficiencies in humans and model organisms.

CSF1R缺陷在人类和模式生物中的表型影响。

  • 影响因子:
  • DOI:10.1002/JLB.MR0519-143R
  • 作者列表:"Hume DA","Caruso M","Ferrari-Cestari M","Summers KM","Pridans C","Irvine KM
  • 发表时间:2020-02-01
Abstract

:Mϕ proliferation, differentiation, and survival are controlled by signals from the Mϕ CSF receptor (CSF1R). Mono-allelic gain-of-function mutations in CSF1R in humans are associated with an autosomal-dominant leukodystrophy and bi-allelic loss-of-function mutations with recessive skeletal dysplasia, brain disorders, and developmental anomalies. Most of the phenotypes observed in these human disease states are also observed in mice and rats with loss-of-function mutations in Csf1r or in Csf1 encoding one of its two ligands. Studies in rodent models also highlight the importance of genetic background and likely epistatic interactions between Csf1r and other loci. The impacts of Csf1r mutations on the brain are usually attributed solely to direct impacts on microglial number and function. However, analysis of hypomorphic Csf1r mutants in mice and several other lines of evidence suggest that primary hydrocephalus and loss of the physiological functions of Mϕs in the periphery contribute to the development of brain pathology. In this review, we outline the evidence that CSF1R is expressed exclusively in mononuclear phagocytes and explore the mechanisms linking CSF1R mutations to pleiotropic impacts on postnatal growth and development.

摘要

: M ϕ 增殖、分化和存活受来自m ϕ CSF受体 (CSF1R) 的信号控制。人类CSF1R的单等位基因功能获得突变与常染色体显性脑白质营养不良和双等位基因功能丧失突变与隐性骨骼发育不良、脑疾病、和发育异常。在这些人类疾病状态中观察到的大多数表型也在Csf1r或编码其两种配体之一的Csf1 中具有功能缺失突变的小鼠和大鼠中观察到。在啮齿动物模型中的研究也强调了遗传背景和Csf1r和其他基因座之间可能的上位性相互作用的重要性。Csf1r突变对大脑的影响通常仅归因于对小胶质细胞数量和功能的直接影响。然而,对小鼠中低形性Csf1r突变体的分析和其他几条证据表明,原发性脑积水和外周mlose生理功能的丧失有助于脑部病理的发展。在这篇综述中,我们概述了CSF1R仅在单核吞噬细胞中表达的证据,并探讨了CSF1R突变与对出生后生长和发育的多效性影响的机制。

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影响因子:1.12
发表时间:2020-01-01
来源期刊:Acta haematologica
DOI:10.1159/000500315
作者列表:["Li Y","You MJ","Yang Y","Hu D","Tian C"]

METHODS::In addition to intrinsic factors, leukemia cell growth is influenced by the surrounding nonhematopoietic cells in the leukemic microenvironment, including fibroblasts, mesenchymal stem cells, vascular cells, and various immune cells. Despite the fact that macrophages are an important component of human innate immunity, tumor-associated macrophages (TAMs) have long been considered as an accomplice promoting tumor growth and metastasis. TAMs are activated by an abnormal malignant microenvironment, polarizing into a specific phenotype and participating in tumor progression. TAMs that exist in the microenvironment of different types of leukemia are called leukemia-associated macrophages (LAMs), which are reported to be associated with the progression of leukemia. This review describes the role of LAMs in different leukemia subtypes.

影响因子:
发表时间:2020-02-01
DOI:10.1002/JLB.MR0519-143R
作者列表:["Hume DA","Caruso M","Ferrari-Cestari M","Summers KM","Pridans C","Irvine KM"]

METHODS::Mϕ proliferation, differentiation, and survival are controlled by signals from the Mϕ CSF receptor (CSF1R). Mono-allelic gain-of-function mutations in CSF1R in humans are associated with an autosomal-dominant leukodystrophy and bi-allelic loss-of-function mutations with recessive skeletal dysplasia, brain disorders, and developmental anomalies. Most of the phenotypes observed in these human disease states are also observed in mice and rats with loss-of-function mutations in Csf1r or in Csf1 encoding one of its two ligands. Studies in rodent models also highlight the importance of genetic background and likely epistatic interactions between Csf1r and other loci. The impacts of Csf1r mutations on the brain are usually attributed solely to direct impacts on microglial number and function. However, analysis of hypomorphic Csf1r mutants in mice and several other lines of evidence suggest that primary hydrocephalus and loss of the physiological functions of Mϕs in the periphery contribute to the development of brain pathology. In this review, we outline the evidence that CSF1R is expressed exclusively in mononuclear phagocytes and explore the mechanisms linking CSF1R mutations to pleiotropic impacts on postnatal growth and development.

翻译标题与摘要 下载文献
影响因子:6.50
发表时间:2020-01-01
DOI:10.1007/s00018-019-03257-4
作者列表:["Riuzzi F","Chiappalupi S","Arcuri C","Giambanco I","Sorci G","Donato R"]

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