Assaying Microglia Functions In Vitro

Microglia, the main immune modulators of the central nervous system, have key roles in both the developing and adult brain. These functions include shaping healthy neuronal networks, carrying out immune surveillance, mediating inflammatory responses, and disposing of unwanted material. A wide variet...

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Published in:Cells
Main Authors: Emily Maguire, Natalie Connor-Robson, Bethany Shaw, Rachel O’Donoghue, Nina Stöberl, Hazel Hall-Roberts
Format: Article
Language:English
Published: MDPI AG 2022-10-01
Subjects:
Online Access:https://www.mdpi.com/2073-4409/11/21/3414
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author Emily Maguire
Natalie Connor-Robson
Bethany Shaw
Rachel O’Donoghue
Nina Stöberl
Hazel Hall-Roberts
author_facet Emily Maguire
Natalie Connor-Robson
Bethany Shaw
Rachel O’Donoghue
Nina Stöberl
Hazel Hall-Roberts
author_sort Emily Maguire
collection DOAJ
container_title Cells
description Microglia, the main immune modulators of the central nervous system, have key roles in both the developing and adult brain. These functions include shaping healthy neuronal networks, carrying out immune surveillance, mediating inflammatory responses, and disposing of unwanted material. A wide variety of pathological conditions present with microglia dysregulation, highlighting the importance of these cells in both normal brain function and disease. Studies into microglial function in the context of both health and disease thus have the potential to provide tremendous insight across a broad range of research areas. In vitro culture of microglia, using primary cells, cell lines, or induced pluripotent stem cell derived microglia, allows researchers to generate reproducible, robust, and quantifiable data regarding microglia function. A broad range of assays have been successfully developed and optimised for characterizing microglial morphology, mediation of inflammation, endocytosis, phagocytosis, chemotaxis and random motility, and mediation of immunometabolism. This review describes the main functions of microglia, compares existing protocols for measuring these functions in vitro, and highlights common pitfalls and future areas for development. We aim to provide a comprehensive methodological guide for researchers planning to characterise microglial functions within a range of contexts and in vitro models.
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spelling doaj-art-4aff601bf8564a6c8f977446ca2a7b082025-08-19T22:26:40ZengMDPI AGCells2073-44092022-10-011121341410.3390/cells11213414Assaying Microglia Functions In VitroEmily Maguire0Natalie Connor-Robson1Bethany Shaw2Rachel O’Donoghue3Nina Stöberl4Hazel Hall-Roberts5UK Dementia Research Institute (UK DRI), School of Medicine, Cardiff University, Cardiff CF10 3AT, UKUK Dementia Research Institute (UK DRI), School of Medicine, Cardiff University, Cardiff CF10 3AT, UKUK Dementia Research Institute (UK DRI), School of Medicine, Cardiff University, Cardiff CF10 3AT, UKUK Dementia Research Institute (UK DRI), School of Medicine, Cardiff University, Cardiff CF10 3AT, UKUK Dementia Research Institute (UK DRI), School of Medicine, Cardiff University, Cardiff CF10 3AT, UKUK Dementia Research Institute (UK DRI), School of Medicine, Cardiff University, Cardiff CF10 3AT, UKMicroglia, the main immune modulators of the central nervous system, have key roles in both the developing and adult brain. These functions include shaping healthy neuronal networks, carrying out immune surveillance, mediating inflammatory responses, and disposing of unwanted material. A wide variety of pathological conditions present with microglia dysregulation, highlighting the importance of these cells in both normal brain function and disease. Studies into microglial function in the context of both health and disease thus have the potential to provide tremendous insight across a broad range of research areas. In vitro culture of microglia, using primary cells, cell lines, or induced pluripotent stem cell derived microglia, allows researchers to generate reproducible, robust, and quantifiable data regarding microglia function. A broad range of assays have been successfully developed and optimised for characterizing microglial morphology, mediation of inflammation, endocytosis, phagocytosis, chemotaxis and random motility, and mediation of immunometabolism. This review describes the main functions of microglia, compares existing protocols for measuring these functions in vitro, and highlights common pitfalls and future areas for development. We aim to provide a comprehensive methodological guide for researchers planning to characterise microglial functions within a range of contexts and in vitro models.https://www.mdpi.com/2073-4409/11/21/3414microgliain vitrofunctional assaysinflammationendocytosisphagocytosis
spellingShingle Emily Maguire
Natalie Connor-Robson
Bethany Shaw
Rachel O’Donoghue
Nina Stöberl
Hazel Hall-Roberts
Assaying Microglia Functions In Vitro
microglia
in vitro
functional assays
inflammation
endocytosis
phagocytosis
title Assaying Microglia Functions In Vitro
title_full Assaying Microglia Functions In Vitro
title_fullStr Assaying Microglia Functions In Vitro
title_full_unstemmed Assaying Microglia Functions In Vitro
title_short Assaying Microglia Functions In Vitro
title_sort assaying microglia functions in vitro
topic microglia
in vitro
functional assays
inflammation
endocytosis
phagocytosis
url https://www.mdpi.com/2073-4409/11/21/3414
work_keys_str_mv AT emilymaguire assayingmicrogliafunctionsinvitro
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AT bethanyshaw assayingmicrogliafunctionsinvitro
AT rachelodonoghue assayingmicrogliafunctionsinvitro
AT ninastoberl assayingmicrogliafunctionsinvitro
AT hazelhallroberts assayingmicrogliafunctionsinvitro