Interplay Between Microglia and Alzheimer's Disease-Focus on the Most Relevant Risks: APOE Genotype, Sex and Age

被引:27
作者
Chen, Yanting [1 ]
Hong, Tingting [1 ]
Chen, Feng [1 ]
Sun, Yuanhong [2 ]
Wang, Yan [1 ]
Cui, Lili [1 ]
机构
[1] Guangdong Med Univ, Affiliated Hosp, Guangdong Key Lab Age Related Cardiac & Cerebral, Dept Neurol, Zhanjiang, Peoples R China
[2] Univ North Texas, Hlth Sci Ctr, Dept Pharmacol & Neurosci, Ft Worth, TX USA
来源
FRONTIERS IN AGING NEUROSCIENCE | 2021年 / 13卷
基金
中国国家自然科学基金;
关键词
microglia; Alzheimer’ s disease; sex; aging; tau; amyloid β apolipoprotein E;
D O I
10.3389/fnagi.2021.631827
中图分类号
R592 [老年病学]; C [社会科学总论];
学科分类号
03 ; 0303 ; 100203 ;
摘要
As the main immune cells of the central nervous system (CNS), microglia regulates normal development, homeostasis and general brain physiology. These functions put microglia at the forefront of CNS repair and recovery. Uncontrolled activation of microglia is related to the course of neurodegenerative diseases such as Alzheimer's disease. It is clear that the classic pathologies of amyloid beta (A beta) and Tau are usually accompanied by the activation of microglia, and the activation of microglia also serves as an early event in the pathogenesis of AD. Therefore, during the occurrence and development of AD, the key susceptibility factors for AD-apolipoprotein E (APOE) genotype, sex and age-may further interact with microglia to exacerbate neurodegeneration. In this review, we discuss the role of microglia in the progression of AD related to the three risk factors for AD: APOE genotype, sex and aging. APOE-expressing microglia accumulates around A beta plaques, and the presence of APOE4 may disrupt the phagocytosis of A beta aggregates and aggravate neurodegeneration in Tau disease models. In addition, females have a high incidence of AD, and normal female microglia and estrogen have protective effects under normal conditions. However, under the influence of AD, female microglia seem to lose their protective effect and instead accelerate the course of AD. Aging, another major risk factor, may increase the sensitivity of microglia, leading to the exacerbation of microglial dysfunction in elderly AD. Obviously, in the role of microglia in AD, the three main risk factors of APOE, sex, and aging are not independent and have synergistic effects that contribute to the risk of AD. Moreover, new microglia can replace dysfunctional microglia after microglial depletion, which is a new promising strategy for AD treatment.
引用
收藏
页数:14
相关论文
共 151 条
[81]   Ex vivo cultures of microglia from young and aged rodent brain reveal age-related changes in microglial function [J].
Njie, Emalick G. ;
Boelen, Ellen ;
Stassen, Frank R. ;
Steinbusch, Harry W. M. ;
Borchelt, David R. ;
Streit, Wolfgang J. .
NEUROBIOLOGY OF AGING, 2012, 33 (01) :195.e1-195.e12
[82]   Microglial priming and enhanced reactivity to secondary insult in aging, and traumatic CNS injury, and neurodegenerative disease [J].
Norden, Diana M. ;
Muccigrosso, Megan M. ;
Godbout, Jonathan P. .
NEUROPHARMACOLOGY, 2015, 96 :29-41
[83]   TREM2 Regulates Microglial Cholesterol Metabolism upon Chronic Phagocytic Challenge [J].
Nugent, Alicia A. ;
Lin, Karin ;
van Lengerich, Bettina ;
Lianoglou, Steve ;
Przybyla, Laralynne ;
Davis, Sonnet S. ;
Llapashtica, Ceyda ;
Wang, Junhua ;
Kim, Do Jin ;
Xia, Dan ;
Lucas, Anthony ;
Baskaran, Sulochanadevi ;
Haddick, Patrick C. G. ;
Lenser, Melina ;
Earr, Timothy K. ;
Shi, Ju ;
Dugas, Jason C. ;
Andreone, Benjamin J. ;
Logan, Todd ;
Solanoy, Hilda O. ;
Chen, Hang ;
Srivastava, Ankita ;
Poda, Suresh B. ;
Sanchez, Pascal E. ;
Watts, Ryan J. ;
Sandmann, Thomas ;
Astarita, Giuseppe ;
Lewcock, Joseph W. ;
Monroe, Kathryn M. ;
Di Paolo, Gilbert .
NEURON, 2020, 105 (05) :837-+
[84]   INVESTIGATION OF TAU-2 POSITIVE MICROGLIA-LIKE CELLS IN THE SUBCORTICAL NUCLEI OF HUMAN NEURODEGENERATIVE DISORDERS [J].
ODAWARA, T ;
ISEKI, E ;
KOSAKA, K ;
AKIYAMA, H ;
IKEDA, K ;
YAMAMOTO, T .
NEUROSCIENCE LETTERS, 1995, 192 (03) :145-148
[85]   A transcriptomic atlas of aged human microglia [J].
Olah, Marta ;
Patrick, Ellis ;
Villani, Alexandra-Chloe ;
Xu, Jishu ;
White, Charles C. ;
Ryan, Katie J. ;
Piehowski, Paul ;
Kapasi, Alifiya ;
Nejad, Parham ;
Cimpean, Maria ;
Connor, Sarah ;
Yung, Christina J. ;
Frangieh, Michael ;
McHenry, Allison ;
Elyaman, Wassim ;
Petyuk, Vlad ;
Schneider, Julie A. ;
Bennett, David A. ;
De Jager, Philip L. ;
Bradshaw, Elizabeth M. .
NATURE COMMUNICATIONS, 2018, 9
[86]   Isolation of glia from Alzheimer's mice reveals inflammation and dysfunction [J].
Orre, Marie ;
Kamphuis, Willem ;
Osborn, Lana M. ;
Jansen, Anne H. P. ;
Kooijman, Lieneke ;
Bossers, Koen ;
Hol, Elly M. .
NEUROBIOLOGY OF AGING, 2014, 35 (12) :2746-2760
[87]   Reactive microglia in aging and dementia: an immunohistochemical study of postmortem human brain tissue [J].
Overmyer, M ;
Helisalmi, S ;
Soininen, H ;
Laakso, M ;
Riekkinen, SP ;
Alafuzoff, I .
ACTA NEUROPATHOLOGICA, 1999, 97 (04) :383-392
[88]   Synaptic Pruning by Microglia Is Necessary for Normal Brain Development [J].
Paolicelli, Rosa C. ;
Bolasco, Giulia ;
Pagani, Francesca ;
Maggi, Laura ;
Scianni, Maria ;
Panzanelli, Patrizia ;
Giustetto, Maurizio ;
Ferreira, Tiago Alves ;
Guiducci, Eva ;
Dumas, Laura ;
Ragozzino, Davide ;
Gross, Cornelius T. .
SCIENCE, 2011, 333 (6048) :1456-1458
[89]   Loss of TREM2 function increases amyloid seeding but reduces plaque-associated ApoE [J].
Parhizkar, Samira ;
Arzberger, Thomas ;
Brendel, Matthias ;
Kleinberger, Gernot ;
Deussing, Maximilian ;
Focke, Carola ;
Nuscher, Brigitte ;
Xiong, Monica ;
Ghasemigharagoz, Alireza ;
Katzmarski, Natalie ;
Krasemann, Susanne ;
Lichtenthaler, Stefan F. ;
Mueller, Stephan A. ;
Colombo, Alessio ;
Monasor, Laura Sebastian ;
Tahirovic, Sabina ;
Herms, Jochen ;
Willem, Michael ;
Pettkus, Nadine ;
Butovsky, Oleg ;
Bartenstein, Peter ;
Edbauer, Dieter ;
Rominger, Axel ;
Ertuerk, Ali ;
Grathwohl, Stefan A. ;
Neher, Jonas J. ;
Holtzman, David M. ;
Meyer-Luehmann, Melanie ;
Haass, Christian .
NATURE NEUROSCIENCE, 2019, 22 (02) :191-+
[90]   Tissue-resident macrophages originate from yolk-sac-derived erythro-myeloid progenitors [J].
Perdiguero, Elisa Gomez ;
Klapproth, Kay ;
Schulz, Christian ;
Busch, Katrin ;
Azzoni, Emanuele ;
Crozet, Lucile ;
Garner, Hannah ;
Trouillet, Celine ;
de Bruijn, Marella F. ;
Geissmann, Frederic ;
Rodewald, Hans-Reimer .
NATURE, 2015, 518 (7540) :547-551