Literature DB >> 33731174

Uncovering sex differences of rodent microglia.

Jinming Han1, Yueshan Fan2,3,4,5, Kai Zhou6,7, Klas Blomgren6,8, Robert A Harris9.   

Abstract

There are inherent structural and functional differences in the central nervous systems (CNS) of females and males. It has been gradually established that these sex-specific differences are due to a spectrum of genetic, epigenetic, and hormonal factors which actively contribute to the differential incidences, disease courses, and even outcomes of CNS diseases between sexes. Microglia, as principle resident macrophages in the CNS, play a crucial role in both CNS physiology and pathology. However, sex differences of microglia have been relatively unexplored until recently. Emerging data has convincingly demonstrated the existence of sex-dependent structural and functional differences of rodent microglia, consequently changing our current understanding of these versatile cells. In this review, we attempt to comprehensively outline the current advances revealing microglial sex differences in rodent and their potential implications for specific CNS diseases with a stark sex difference. A detailed understanding of molecular processes underlying microglial sex differences is of major importance in design of translational sex- and microglia-specific therapeutic approaches.

Entities:  

Keywords:  Disease; Epigenetics; Microglia; Sex differences

Year:  2021        PMID: 33731174      PMCID: PMC7972194          DOI: 10.1186/s12974-021-02124-z

Source DB:  PubMed          Journal:  J Neuroinflammation        ISSN: 1742-2094            Impact factor:   8.322


  109 in total

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Review 2.  Microglial M1/M2 polarization and metabolic states.

Authors:  Ruben Orihuela; Christopher A McPherson; Gaylia Jean Harry
Journal:  Br J Pharmacol       Date:  2015-05-11       Impact factor: 8.739

Review 3.  Microglia along sex lines: From brain colonization, maturation and function, to implication in neurodevelopmental disorders.

Authors:  Maude Bordeleau; Micaël Carrier; Giamal N Luheshi; Marie-Ève Tremblay
Journal:  Semin Cell Dev Biol       Date:  2019-06-22       Impact factor: 7.727

4.  Sall1 is a transcriptional regulator defining microglia identity and function.

Authors:  Anne Buttgereit; Iva Lelios; Xueyang Yu; Melissa Vrohlings; Natalie R Krakoski; Emmanuel L Gautier; Ryuichi Nishinakamura; Burkhard Becher; Melanie Greter
Journal:  Nat Immunol       Date:  2016-10-24       Impact factor: 25.606

Review 5.  Cien Años de Microglía: Milestones in a Century of Microglial Research.

Authors:  Amanda Sierra; Rosa C Paolicelli; Helmut Kettenmann
Journal:  Trends Neurosci       Date:  2019-10-18       Impact factor: 13.837

6.  A nationwide, population-based study of school grades, delayed graduation, and qualification for school years 10-12, in children with brain tumors in Sweden.

Authors:  Malin Lönnerblad; Ingrid Van't Hooft; Klas Blomgren; Eva Berglund
Journal:  Pediatr Blood Cancer       Date:  2019-10-08       Impact factor: 3.167

7.  Developmental Heterogeneity of Microglia and Brain Myeloid Cells Revealed by Deep Single-Cell RNA Sequencing.

Authors:  Qingyun Li; Zuolin Cheng; Lu Zhou; Spyros Darmanis; Norma F Neff; Jennifer Okamoto; Gunsagar Gulati; Mariko L Bennett; Lu O Sun; Laura E Clarke; Julia Marschallinger; Guoqiang Yu; Stephen R Quake; Tony Wyss-Coray; Ben A Barres
Journal:  Neuron       Date:  2018-12-31       Impact factor: 17.173

8.  Comprehensive clinical follow-up of late effects in childhood cancer survivors shows the need for early and well-timed intervention.

Authors:  J W Han; S Y Kwon; S C Won; Y J Shin; J H Ko; C J Lyu
Journal:  Ann Oncol       Date:  2009-03-06       Impact factor: 32.976

9.  Lipopolysaccharide sensitized male and female juvenile brains to ionizing radiation.

Authors:  M Kalm; K Roughton; K Blomgren
Journal:  Cell Death Dis       Date:  2013-12-12       Impact factor: 8.469

Review 10.  How to reprogram microglia toward beneficial functions.

Authors:  Marta Fumagalli; Marta Lombardi; Pierre Gressens; Claudia Verderio
Journal:  Glia       Date:  2018-09-08       Impact factor: 7.452

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  17 in total

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Journal:  Cell Mol Neurobiol       Date:  2022-07-08       Impact factor: 5.046

Review 2.  APOE in the bullseye of neurodegenerative diseases: impact of the APOE genotype in Alzheimer's disease pathology and brain diseases.

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Journal:  Curr Top Behav Neurosci       Date:  2022

4.  N-3 PUFA Deficiency Affects the Ultrastructural Organization and Density of White Matter Microglia in the Developing Brain of Male Mice.

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Journal:  Front Cell Neurosci       Date:  2022-02-10       Impact factor: 5.505

5.  Minimizing the Ex Vivo Confounds of Cell-Isolation Techniques on Transcriptomic and Translatomic Profiles of Purified Microglia.

Authors:  Sarah R Ocañas; Kevin D Pham; Harris E Blankenship; Adeline H Machalinski; Ana J Chucair-Elliott; Willard M Freeman
Journal:  eNeuro       Date:  2022-03-28

6.  The Modulatory Effects of DMF on Microglia in Aged Mice Are Sex-Specific.

Authors:  Virginia Mela; Aline Sayd Gaban; Eoin O'Neill; Sibylle Bechet; Aífe Walsh; Marina A Lynch
Journal:  Cells       Date:  2022-02-18       Impact factor: 6.600

Review 7.  Microglia in Aging and Alzheimer's Disease: A Comparative Species Review.

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Journal:  Cells       Date:  2021-05-08       Impact factor: 6.600

Review 8.  Neuroinflammation: Integrated Nervous Tissue Response through Intercellular Interactions at the "Whole System" Scale.

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Review 9.  Brain-derived neurotrophic factor and inflammation in depression: Pathogenic partners in crime?

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Journal:  World J Psychiatry       Date:  2022-01-19

10.  Gas6/TAM Signalling Negatively Regulates Inflammatory Induction of GM-CSF in Mouse Brain Microglia.

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