Human pluripotent stem cell (hPSC)-derived microglia for the study of brain disorders. A comprehensive review of existing protocols

被引:3
作者
Teo, Fionicca [1 ]
Kok, Catherine Yen Li [1 ]
Tan, Mao-Jia [1 ]
Je, H. Shawn [1 ,2 ]
机构
[1] Duke NUS Med Sch, Program Neurosci & Behav Disorders, 8 Coll Rd, Singapore 169857, Singapore
[2] Acad, SingHealth, Adv Bioimaging Ctr, 20 Coll Rd, Singapore 169856, Singapore
来源
IBRO NEUROSCIENCE REPORTS | 2024年 / 16卷
基金
新加坡国家研究基金会; 英国医学研究理事会;
关键词
Human pluripotent stem cells; Microglia; Classical differentiation; Organoid; Directed differentiation; Neurodegenerative diseases; DIFFERENTIATION; MACROPHAGES; IMMORTALIZATION; EXPRESSION; INDUCTION; PLATFORM; MODEL; LINES; NEUROINFLAMMATION; DYSFUNCTION;
D O I
10.1016/j.ibneur.2024.03.005
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Microglia, resident immune cells of the brain that originate from the yolk sac, play a critical role in maintaining brain homeostasis by monitoring and phagocytosing pathogens and cellular debris in the central nervous system (CNS). While they share characteristics with myeloid cells, they are distinct from macrophages. In response to injury, microglia release pro -inflammatory factors and contribute to brain homeostasis through activities such as synapse pruning and neurogenesis. To better understand their role in neurological disorders, the generation of in vitro models of human microglia has become essential. These models, derived from patient -specific induced pluripotent stem cells (iPSCs), provide a controlled environment to study the molecular and cellular mechanisms underlying microglia-mediated neuroinflammation and neurodegeneration. The incorporation or generation of microglia into three-dimensional (3D) organoid cultures provides a more physiologically relevant environment that offers further opportunities to study microglial dynamics and disease modeling. This review describes several protocols that have been recently developed for the generation of human -induced microglia. Importantly, it highlights the promise of these in vitro models in advancing our understanding of brain disorders and facilitating personalized drug screening.
引用
收藏
页码:497 / 508
页数:12
相关论文
共 109 条
[1]   Microglia Increase Inflammatory Responses in iPSC-Derived Human BrainSpheres [J].
Abreu, Celina Monteiro ;
Gama, Lucio ;
Krasemann, Susanne ;
Chesnut, Megan ;
Odwin-Dacosta, Shelly ;
Hogberg, Helena T. ;
Hartung, Thomas ;
Pamies, David .
FRONTIERS IN MICROBIOLOGY, 2018, 9
[2]   iPSC-Derived Human Microglia-like Cells to Study Neurological Diseases [J].
Abud, Edsel M. ;
Ramirez, Ricardo N. ;
Martinez, Eric S. ;
Healy, Luke M. ;
Nguyen, Cecilia H. H. ;
Newman, Sean A. ;
Yeromin, Andriy V. ;
Scarfone, Vanessa M. ;
Marsh, Samuel E. ;
Fimbres, Cristhian ;
Caraway, Chad A. ;
Fote, Gianna M. ;
Madany, Abdullah M. ;
Agrawal, Anshu ;
Kayed, Rakez ;
Gylys, Karen H. ;
Cahalan, Michael D. ;
Cummings, Brian J. ;
Antel, Jack P. ;
Mortazavi, Ali ;
Carson, Monica J. ;
Poon, Wayne W. ;
Blurton-Jones, Mathew .
NEURON, 2017, 94 (02) :278-+
[3]   The fibrin-derived γ377-395 peptide inhibits microglia activation and suppresses relapsing paralysis in central nervous system autoimmune disease [J].
Adams, Ryan A. ;
Bauer, Jan ;
Flick, Matthew J. ;
Sikorski, Shoana L. ;
Nuriel, Tal ;
Lassmann, Hans ;
Degen, Jay L. ;
Akassoglou, Katerina .
JOURNAL OF EXPERIMENTAL MEDICINE, 2007, 204 (03) :571-582
[4]   Microglia in a Dish-Which Techniques Are on the Menu for Functional Studies? [J].
Aktories, Philipp ;
Petry, Philippe ;
Kierdorf, Katrin .
FRONTIERS IN CELLULAR NEUROSCIENCE, 2022, 16
[5]   Modulation of Hematopoietic Lineage Specification Impacts TREM2 Expression in Microglia-Like Cells Derived From Human Stem Cells [J].
Amos, Peter J. ;
Fung, Susan ;
Case, Amanda ;
Kifelew, Jerusalem ;
Osnis, Leah ;
Smith, Carole L. ;
Green, Kevin ;
Naydenov, Alipi ;
Aloi, Macarena ;
Hubbard, Jesse J. ;
Ramakrishnan, Aravind ;
Garden, Gwenn A. ;
Jayadev, Suman .
ASN NEURO, 2017, 9 (04)
[6]   Midbrain microglia mediate a specific immunosuppressive response under inflammatory conditions [J].
Angel Abellanas, Miguel ;
Zamarbide, Marta ;
Basurco, Leyre ;
Luquin, Esther ;
Garcia-Granero, Marta ;
Clavero, Pedro ;
San Martin-Uriz, Patxi ;
Vilas, Amaia ;
Mengual, Elisa ;
Hervas-Stubbs, Sandra ;
Aymerich, Maria S. .
JOURNAL OF NEUROINFLAMMATION, 2019, 16 (01)
[7]   iPSC-Derived Microglia as a Model to Study Inflammation in Idiopathic Parkinson's Disease [J].
Badanjak, Katja ;
Mulica, Patrycja ;
Smajic, Semra ;
Delcambre, Sylvie ;
Tranchevent, Leon-Charles ;
Diederich, Nico ;
Rauen, Thomas ;
Schwamborn, Jens C. ;
Glaab, Enrico ;
Cowley, Sally A. ;
Antony, Paul M. A. ;
Pereira, Sandro L. ;
Venegas, Carmen ;
Gruenewald, Anne .
FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY, 2021, 9
[8]   Generation of pure monocultures of human microglia-like cells from induced pluripotent stem cells [J].
Banerjee, Poulomi ;
Paza, Evdokia ;
Perkins, Emma M. ;
James, Owen G. ;
Kenkhuis, Boyd ;
Lloyd, Amy F. ;
Burr, Karen ;
Story, David ;
Yusuf, Dilmurat ;
He, Xin ;
Backofen, Rolf ;
Dando, Owen ;
Chandran, Siddharthan ;
Priller, Josef .
STEM CELL RESEARCH, 2020, 49
[9]   Genomics Analysis of Metabolic Pathways of Human Stem Cell-Derived Microglia-Like Cells and the Integrated Cortical Spheroids [J].
Bejoy, Julie ;
Yuan, Xuegang ;
Song, Liqing ;
Hua, Thien ;
Jeske, Richard ;
Sart, Sebastien ;
Sang, Qing-Xiang Amy ;
Li, Yan .
STEM CELLS INTERNATIONAL, 2019, 2019
[10]   TREM2 deficiency exacerbates tau pathology through dysregulated kinase signaling in a mouse model of tauopathy [J].
Bemiller, Shane M. ;
McCray, Tyler J. ;
Allan, Kevin ;
Formica, Shane V. ;
Xu, Guixiang ;
Wilson, Gina ;
Kokiko-Cochran, Olga N. ;
Crish, Samuel D. ;
Lasagna-Reeves, Cristian A. ;
Ransohoff, Richard M. ;
Landreth, Gary E. ;
Lamb, Bruce T. .
MOLECULAR NEURODEGENERATION, 2017, 12