Literature DB >> 29769699

A stocked toolbox for understanding the role of astrocytes in disease.

Akshata Almad1, Nicholas J Maragakis2.   

Abstract

Our understanding of astrocytes and their role in neurological diseases has increased considerably over the past two decades as the diverse roles of these cells have become recognized. Our evolving understanding of these cells suggests that they are more than support cells for neurons and that they play important roles in CNS homeostasis under normal conditions, in neuroprotection and in disease exacerbation. These multiple functions make them excellent candidates for targeted therapies to treat neurological disorders. New technological advances, including in vivo imaging, optogenetics and chemogenetics, have allowed us to examine astrocytic functions in ways that have uncovered new insights into the dynamic roles of these cells. Furthermore, the use of induced pluripotent stem cell-derived astrocytes from patients with a host of neurological disorders can help to tease out the contributions of astrocytes to human disease. In this Review, we explore some of the technological advances developed over the past decade that have aided our understanding of astrocyte function. We also highlight neurological disorders in which astrocyte function or dysfunction is believed to have a role in disease pathogenesis or propagation and discuss how the technological advances have been and could be used to study each of these diseases.

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Year:  2018        PMID: 29769699     DOI: 10.1038/s41582-018-0010-2

Source DB:  PubMed          Journal:  Nat Rev Neurol        ISSN: 1759-4758            Impact factor:   42.937


  21 in total

1.  Astrocytes as an HIV CNS reservoir: highlights and reflections of an NIMH-sponsored symposium.

Authors:  Lena Al-Harti; Jeymohan Joseph; Avindra Nath
Journal:  J Neurovirol       Date:  2018-11-05       Impact factor: 2.643

2.  Spinal astrocytic FGFR3 activation leads to mechanical hypersensitivity by increased TNF-α in spared nerve injury.

Authors:  Ke-Yu Xie; Qiang Wang; De-Jun Cao; Jia Liu; Xian-Feng Xie
Journal:  Int J Clin Exp Pathol       Date:  2019-08-01

3.  Microglial Calcium: An Exquisite Sensor for Neuronal Activity.

Authors:  Jiyun Peng; Bing-Xing Pan
Journal:  Neurosci Bull       Date:  2021-03-18       Impact factor: 5.203

Review 4.  Cancer microenvironment and genomics: evolution in process.

Authors:  Stanley P Leong; Isaac P Witz; Orit Sagi-Assif; Sivan Izraely; Jonathan Sleeman; Brian Piening; Bernard A Fox; Carlo B Bifulco; Rachel Martini; Lisa Newman; Melissa Davis; Lauren M Sanders; David Haussler; Olena M Vaske; Marlys Witte
Journal:  Clin Exp Metastasis       Date:  2021-05-10       Impact factor: 5.150

Review 5.  Reactive astrocyte nomenclature, definitions, and future directions.

Authors:  András Lakatos; James P O'Callaghan; Gabor C Petzold; Alberto Serrano-Pozo; Christian Steinhäuser; Andrea Volterra; Giorgio Carmignoto; Carole Escartin; Elena Galea; Amit Agarwal; Nicola J Allen; Alfonso Araque; Luis Barbeito; Ari Barzilai; Dwight E Bergles; Gilles Bonvento; Arthur M Butt; Wei-Ting Chen; Martine Cohen-Salmon; Colm Cunningham; Benjamin Deneen; Bart De Strooper; Blanca Díaz-Castro; Cinthia Farina; Marc Freeman; Vittorio Gallo; James E Goldman; Steven A Goldman; Magdalena Götz; Antonia Gutiérrez; Philip G Haydon; Dieter H Heiland; Elly M Hol; Matthew G Holt; Masamitsu Iino; Ksenia V Kastanenka; Helmut Kettenmann; Baljit S Khakh; Schuichi Koizumi; C Justin Lee; Shane A Liddelow; Brian A MacVicar; Pierre Magistretti; Albee Messing; Anusha Mishra; Anna V Molofsky; Keith K Murai; Christopher M Norris; Seiji Okada; Stéphane H R Oliet; João F Oliveira; Aude Panatier; Vladimir Parpura; Marcela Pekna; Milos Pekny; Luc Pellerin; Gertrudis Perea; Beatriz G Pérez-Nievas; Frank W Pfrieger; Kira E Poskanzer; Francisco J Quintana; Richard M Ransohoff; Miriam Riquelme-Perez; Stefanie Robel; Christine R Rose; Jeffrey D Rothstein; Nathalie Rouach; David H Rowitch; Alexey Semyanov; Swetlana Sirko; Harald Sontheimer; Raymond A Swanson; Javier Vitorica; Ina-Beate Wanner; Levi B Wood; Jiaqian Wu; Binhai Zheng; Eduardo R Zimmer; Robert Zorec; Michael V Sofroniew; Alexei Verkhratsky
Journal:  Nat Neurosci       Date:  2021-02-15       Impact factor: 24.884

Review 6.  Inhibitors of Src Family Kinases, Inducible Nitric Oxide Synthase, and NADPH Oxidase as Potential CNS Drug Targets for Neurological Diseases.

Authors:  Meghan C Gage; Thimmasettappa Thippeswamy
Journal:  CNS Drugs       Date:  2021-01-30       Impact factor: 5.749

7.  Edaravone protects rat astrocytes from oxidative or neurotoxic inflammatory insults by restoring Akt/Bcl-2/Caspase-3 signaling axis.

Authors:  Zhe Guo; Huan-Tong Wu; Xi-Xi Li; Yun Yu; Run-Ze Gu; Rongfeng Lan; Xiao-Yan Qin
Journal:  IBRO Rep       Date:  2020-04-23

Review 8.  Astrocyte-Neuron Networks: A Multilane Highway of Signaling for Homeostatic Brain Function.

Authors:  Sara Mederos; Candela González-Arias; Gertrudis Perea
Journal:  Front Synaptic Neurosci       Date:  2018-11-27

9.  Up to Date on Astrocytes.

Authors:  Jin Wook Kim
Journal:  Int Neurourol J       Date:  2018-10-31       Impact factor: 2.835

Review 10.  Reactive astrocytes as treatment targets in Alzheimer's disease-Systematic review of studies using the APPswePS1dE9 mouse model.

Authors:  Tamar Smit; Natasja A C Deshayes; David R Borchelt; Willem Kamphuis; Jinte Middeldorp; Elly M Hol
Journal:  Glia       Date:  2021-02-25       Impact factor: 7.452

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