The Amyloid-Beta Clearance: From Molecular Targets to Glial and Neural Cells

被引:23
作者
Cai, Wenjun [1 ]
Wu, Tong [1 ]
Chen, Ning [1 ]
机构
[1] Wuhan Sports Univ, Tianjiu Res & Dev Ctr Exercise Nutr & Foods, Hubei Key Lab Exercise Training & Monitoring, Coll Sports Med, Wuhan 430079, Peoples R China
基金
中国国家自然科学基金;
关键词
Alzheimer's disease; amyloid-beta; pluripotent stem cell; neuron; A beta clearance; CENTRAL-NERVOUS-SYSTEM; MICROGLIA-LIKE CELLS; ALZHEIMERS-DISEASE; APOLIPOPROTEIN-E; TREM2; VARIANTS; MOUSE MODELS; PATHOLOGY; TAU; ASTROCYTES; APOE;
D O I
10.3390/biom13020313
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The deposition of amyloid-beta (A beta) plaques in the brain is one of the primary pathological characteristics of Alzheimer's disease (AD). It can take place 20-30 years before the onset of clinical symptoms. The imbalance between the production and the clearance of A beta is one of the major causes of AD. Enhancing A beta clearance at an early stage is an attractive preventive and therapeutic strategy of AD. Direct inhibition of A beta production and aggregation using small molecules, peptides, and monoclonal antibody drugs has not yielded satisfactory efficacy in clinical trials for decades. Novel approaches are required to understand and combat A beta deposition. Neurological dysfunction is a complex process that integrates the functions of different types of cells in the brain. The role of non-neurons in AD has not been fully elucidated. An in-depth understanding of the interactions between neurons and non-neurons can contribute to the elucidation of A beta formation and the identification of effective drug targets. AD patient-derived pluripotent stem cells (PSCs) contain complete disease background information and have the potential to differentiate into various types of neurons and non-neurons in vitro, which may bring new insight into the treatment of AD. Here, we systematically review the latest studies on A beta clearance and clarify the roles of cell interactions among microglia, astroglia and neurons in response to A beta plaques, which will be beneficial to explore methods for reconstructing AD disease models using inducible PSCs (iPSCs) through cell differentiation techniques and validating the applications of models in understanding the formation of A beta plaques. This review may provide the most promising directions of finding the clues for preventing and delaying the development of AD.
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页数:20
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共 155 条
  • [1] iPSC-Derived Human Microglia-like Cells to Study Neurological Diseases
    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
    [J]. NEURON, 2017, 94 (02) : 278 - +
  • [2] Aβ receptors specifically recognize molecular features displayed by fibril ends and neurotoxic oligomers
    Amin, Ladan
    Harris, David A.
    [J]. NATURE COMMUNICATIONS, 2021, 12 (01)
  • [3] Diagnosis and Management of Dementia: Review
    Arvanitakis, Zoe
    Shah, Raj C.
    Bennett, David A.
    [J]. JAMA-JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 2019, 322 (16): : 1589 - 1599
  • [4] Alzheimer's Disease: A Molecular View of β-Amyloid Induced Morbific Events
    Asik, Rajmohamed Mohamed
    Suganthy, Natarajan
    Aarifa, Mohamed Asik
    Kumar, Arvind
    Szigeti, Krisztian
    Mathe, Domokos
    Gulyas, Balazs
    Archunan, Govindaraju
    Padmanabhan, Parasuraman
    [J]. BIOMEDICINES, 2021, 9 (09)
  • [5] Apolipoprotein E Is a Ligand for Triggering Receptor Expressed on Myeloid Cells 2 (TREM2)
    Atagi, Yuka
    Liu, Chia-Chen
    Painter, Meghan M.
    Chen, Xiao-Fen
    Verbeeck, Christophe
    Zheng, Honghua
    Li, Xia
    Rademakers, Rosa
    Kang, Silvia S.
    Xu, Huaxi
    Younkin, Steven
    Das, Pritam
    Fryer, John D.
    Bu, Guojun
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2015, 290 (43) : 26043 - 26050
  • [6] Negative feedback control of neuronal activity by microglia
    Badimon, Ana
    Strasburger, Hayley J.
    Ayata, Pinar
    Chen, Xinhong
    Nair, Aditya
    Ikegami, Ako
    Hwang, Philip
    Chan, Andrew T.
    Graves, Steven M.
    Uweru, Joseph O.
    Ledderose, Carola
    Kutlu, Munir Gunes
    Wheeler, Michael A.
    Kahan, Anat
    Ishikawa, Masago
    Wang, Ying-Chih
    Loh, Yong-Hwee E.
    Jiang, Jean X.
    Surmeier, D. James
    Robson, Simon C.
    Junger, Wolfgang G.
    Sebra, Robert
    Calipari, Erin S.
    Kenny, Paul J.
    Eyo, Ukpong B.
    Colonna, Marco
    Quintana, Francisco J.
    Wake, Hiroaki
    Gradinaru, Viviana
    Schaefer, Anne
    [J]. NATURE, 2020, 586 (7829) : 417 - +
  • [7] A Breakdown in Metabolic Reprogramming Causes Microglia Dysfunction in Alzheimer's Disease
    Baik, Sung Hoon
    Kang, Seokjo
    Lee, Woochan
    Choi, Hayoung
    Chung, Sunwoo
    Kim, Jong-Il
    Mook-Jung, Inhee
    [J]. CELL METABOLISM, 2019, 30 (03) : 493 - +
  • [8] Human iPSC-Derived Neural Models for Studying Alzheimer's Disease: from Neural Stem Cells to Cerebral Organoids
    Barak, Martin
    Fedorova, Veronika
    Pospisilova, Veronika
    Raska, Jan
    Vochyanova, Simona
    Sedmik, Jiri
    Hribkova, Hana
    Klimova, Hana
    Vanova, Tereza
    Bohaciakova, Dasa
    [J]. STEM CELL REVIEWS AND REPORTS, 2022, 18 (02) : 792 - 820
  • [9] Peripherally administered antibodies against amyloid β-peptide enter the central nervous system and reduce pathology in a mouse model of Alzheimer disease
    Bard, F
    Cannon, C
    Barbour, R
    Burke, RL
    Games, D
    Grajeda, H
    Guido, T
    Hu, K
    Huang, JP
    Johnson-Wood, K
    Khan, K
    Kholodenko, D
    Lee, M
    Lieberburg, I
    Motter, R
    Nguyen, M
    Soriano, F
    Vasquez, N
    Weiss, K
    Welch, B
    Seubert, P
    Schenk, D
    Yednock, T
    [J]. NATURE MEDICINE, 2000, 6 (08) : 916 - 919
  • [10] Improved modeling of human AD with an automated culturing platform for iPSC neurons, astrocytes and microglia
    Bassil, Reina
    Shields, Kenneth
    Granger, Kevin
    Zein, Ivan
    Ng, Shirley
    Chih, Ben
    [J]. NATURE COMMUNICATIONS, 2021, 12 (01)