Tau and neuroinflammation in Alzheimer's disease: interplay mechanisms and clinical translation

被引:107
作者
Chen, Yijun [1 ]
Yu, Yang [1 ]
机构
[1] Shanghai Jiao Tong Univ, Shanghai Frontiers Sci Ctr Drug Target Identificat, Engn Res Ctr Cell & Therapeut Antibody, Sch Pharm,Minist Educ, Shanghai 200240, Peoples R China
基金
上海市自然科学基金; 中国国家自然科学基金;
关键词
Alzheimer's disease; Tauopathies; Tau phosphorylation; Tau propagation; Neuroinflammation; Glia; Microglia; Astrocytes; NONSTEROIDAL ANTIINFLAMMATORY DRUGS; MOUSE MODEL; NEURONAL LOSS; CEREBROSPINAL-FLUID; POSTTRANSLATIONAL MODIFICATION; MEDIATED NEURODEGENERATION; NEUROFIBRILLARY TANGLES; INFLAMMATORY RESPONSES; INTERNATIONAL UNION; AMYLOID DEPOSITION;
D O I
10.1186/s12974-023-02853-3
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Alzheimer's Disease (AD) contributes to most cases of dementia. Its prominent neuropathological features are the extracellular neuritic plaques and intercellular neurofibrillary tangles composed of aggregated & beta;-amyloid (A & beta;) and hyperphosphorylated tau protein, respectively. In the past few decades, disease-modifying therapy targeting A & beta; has been the focus of AD drug development. Even though it is encouraging that two of these drugs have recently received accelerated US Food and Drug Administration approval for AD treatment, their efficacy or long-term safety is controversial. Tau has received increasing attention as a potential therapeutic target, since evidence indicates that tau pathology is more associated with cognitive dysfunction. Moreover, inflammation, especially neuroinflammation, accompanies AD pathological processes and is also linked to cognitive deficits. Accumulating evidence indicates that inflammation has a complex and tight interplay with tau pathology. Here, we review recent evidence on the interaction between tau pathology, focusing on tau post-translational modification and dissemination, and neuroinflammatory responses, including glial cell activation and inflammatory signaling pathways. Then, we summarize the latest clinical trials targeting tau and neuroinflammation. Sustained and increased inflammatory responses in glial cells and neurons are pivotal cellular drivers and regulators of the exacerbation of tau pathology, which further contributes to its worsening by aggravating inflammatory responses. Unraveling the precise mechanisms underlying the relationship between tau pathology and neuroinflammation will provide new insights into the discovery and clinical translation of therapeutic targets for AD and other tau-related diseases (tauopathies). Targeting multiple pathologies and precision therapy strategies will be the crucial direction for developing drugs for AD and other tauopathies.
引用
收藏
页数:21
相关论文
共 262 条
[1]   Myeloid Microvesicles in Cerebrospinal Fluid Are Associated with Myelin Damage and Neuronal Loss in Mild Cognitive Impairment and Alzheimer Disease [J].
Agosta, Federica ;
Dalla Libera, Dacia ;
Spinelli, Edoardo Gioele ;
Finardi, Annamaria ;
Canu, Elisa ;
Bergami, Alessandra ;
Chiavetto, Luisella Bocchio ;
Baronio, Manuela ;
Comi, Giancarlo ;
Martino, Gianvito ;
Matteoli, Michela ;
Magnani, Giuseppe ;
Verderio, Claudia ;
Furlan, Roberto .
ANNALS OF NEUROLOGY, 2014, 76 (06) :813-825
[2]   Prevention of tau seeding and propagation by immunotherapy with a central tau epitope antibody [J].
Albert, Marie ;
Mairet-Coello, Georges ;
Danis, Clement ;
Lieger, Sarah ;
Caillierez, Raphaelle ;
Carrier, Sebastien ;
Skrobala, Emilie ;
Landrieu, Isabelle ;
Michel, Anne ;
Schmitt, Mathieu ;
Citron, Martin ;
Downey, Patrick ;
Courade, Jean-Philippe ;
Buee, Luc ;
Colin, Morvane .
BRAIN, 2019, 142 :1736-1750
[3]   Astrocyte-neuron metabolic relationships: for better and for worse [J].
Allaman, Igor ;
Belanger, Mireille ;
Magistretti, Pierre J. .
TRENDS IN NEUROSCIENCES, 2011, 34 (02) :76-87
[4]   Promotion of hyperphosphorylation by frontotemporal dementia tau mutations [J].
Alonso, AD ;
Mederlyova, A ;
Novak, M ;
Grundke-Iqbal, I ;
Iqbal, K .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (33) :34873-34881
[5]   Molecular mechanism of prion-like tau-induced neurodegeneration [J].
Alonso, Alejandra D. ;
Beharry, Cindy ;
Corbo, Christopher P. ;
Cohen, Leah S. .
ALZHEIMERS & DEMENTIA, 2016, 12 (10) :1090-1097
[6]   The potential role of glial cells in driving the prion-like transcellular propagation of tau in tauopathies [J].
Amro, Zein ;
Yool, Andrea J. ;
Collins-Praino, Lyndsey E. .
BRAIN BEHAVIOR & IMMUNITY-HEALTH, 2021, 14
[7]   Antibody-mediated clearance of tau in primary mouse microglial cultures requires Fcγ-receptor binding and functional lysosomes [J].
Andersson, Christian Rungsted ;
Falsig, Jeppe ;
Stavenhagen, Jeffrey B. ;
Christensen, Soren ;
Kartberg, Fred Rik ;
Rosenqvist, Nina ;
Finsen, Bente ;
Pedersen, Jan Torleif .
SCIENTIFIC REPORTS, 2019, 9 (1)
[8]   Long-Term, Low-Dose Lithium Treatment Does Not Impair Renal Function in the Elderly: A 2-Year Randomized, Placebo-Controlled Trial Followed by Single-Blind Extension [J].
Aprahamian, Ivan ;
Santos, Franklin S. ;
dos Santos, Bernardo ;
Talib, Leda ;
Diniz, Breno S. ;
Radanovic, Marcia ;
Gattaz, Wagner F. ;
Forlenza, Orestes V. .
JOURNAL OF CLINICAL PSYCHIATRY, 2014, 75 (07) :E672-E678
[9]   NEUROFIBRILLARY TANGLES BUT NOT SENILE PLAQUES PARALLEL DURATION AND SEVERITY OF ALZHEIMERS-DISEASE [J].
ARRIAGADA, PV ;
GROWDON, JH ;
HEDLEYWHYTE, ET ;
HYMAN, BT .
NEUROLOGY, 1992, 42 (03) :631-639
[10]   Depletion of microglia and inhibition of exosome synthesis halt tau propagation [J].
Asai, Hirohide ;
Ikezu, Seiko ;
Tsunoda, Satoshi ;
Medalla, Maria ;
Luebke, Jennifer ;
Haydar, Tank ;
Wolozin, Benjamin ;
Butovsky, Oleg ;
Kuegler, Sebastian ;
Ikezu, Tsuneya .
NATURE NEUROSCIENCE, 2015, 18 (11) :1584-1593