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Citations to this article

Peripheral monocyte–derived cells counter amyloid plaque pathogenesis in a mouse model of Alzheimer’s disease
Ping Yan, … , Jin-Moo Lee, Abhinav Diwan
Ping Yan, … , Jin-Moo Lee, Abhinav Diwan
Published May 5, 2022
Citation Information: J Clin Invest. 2022;132(11):e152565. https://doi.org/10.1172/JCI152565.
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Research Article Neuroscience Article has an altmetric score of 32

Peripheral monocyte–derived cells counter amyloid plaque pathogenesis in a mouse model of Alzheimer’s disease

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Abstract

Microglia, the parenchymal tissue macrophages in the brain, surround amyloid plaques in brains of individuals with Alzheimer’s disease (AD) but are ineffective at clearing amyloid to mitigate disease progression. Recent studies in mice indicate that microglia are derived exclusively from primitive yolk sac hematopoiesis and self-renew without contribution from ontogenically distinct monocytes/macrophages of definitive adult hematopoietic origin. Using a genetic fate-mapping approach to label cells of definitive hematopoietic origin throughout life span, we discovered that circulating monocytes contribute 6% of plaque-associated macrophages in aged AD mice. Moreover, peripheral monocytes contributed to a higher fraction of macrophages in the choroid plexus, meninges, and perivascular spaces of aged AD mice versus WT control mice, indicating enrichment at potential sites for entry into the brain parenchyma. Splenectomy, which markedly reduced circulating Ly6Chi monocytes, also reduced abundance of plaque-associated macrophages of definitive hematopoietic origin, resulting in increased amyloid plaque load. Together, these results indicate that peripherally derived monocytes invade the brain parenchyma, targeting amyloid plaques to reduce plaque load.

Authors

Ping Yan, Ki-Wook Kim, Qingli Xiao, Xiucui Ma, Leah R. Czerniewski, Haiyan Liu, David R. Rawnsley, Yan Yan, Gwendalyn J. Randolph, Slava Epelman, Jin-Moo Lee, Abhinav Diwan

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Total citations by year

Year: 2025 2024 2023 2022 Total
Citations: 10 11 14 1 36
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article in year 2023 (14)

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Young serum protects against memory impairment in APP/PS1 transgenic mice through blocking neutrophil infiltration
Fangfang Qi, Zejie Zuo, Kaishun Hu, Rui Wang, Tong Wu, Hao Liu, Jiaoling Tang, Qingbo Wang, Yufeng Xie, Liren Tan, Yunjie Yang, Xiaoran Zhang, Jie Xu, Zhibin Yao, Shengwen Wang, Long-Jun Wu, Kaihua Guo
Molecular Psychiatry 2023
Mechanisms of myeloid cell entry to the healthy and diseased central nervous system.
Amann L, Masuda T, Prinz M
Nature Immunology 2023
Monocyte-derived cells invade brain parenchyma and amyloid plaques in human Alzheimer's disease hippocampus.
Muñoz-Castro C, Mejias-Ortega M, Sanchez-Mejias E, Navarro V, Trujillo-Estrada L, Jimenez S, Garcia-Leon JA, Fernandez-Valenzuela JJ, Sanchez-Mico MV, Romero-Molina C, Moreno-Gonzalez I, Baglietto-Vargas D, Vizuete M, Gutierrez A, Vitorica J
Acta Neuropathologica Communications 2023
Bone marrow-derived GCA+ immune cells drive Alzheimer's disease progression
Rui Zhou, Liwen Wang, Linyun chen, Xu Feng, Peng Xiang, Yan Huang, Haiyan Zhou
Advanced Science 2023
Chimeric Antigen Receptor Macrophages Target and Resorb Amyloid Plaques in a Mouse Model of Alzheimer’s Disease
Pan Q, Yan P, Kim AB, Xiao Q, Pandey G, Haecker H, Epelman S, Diwan A, Lee JM, DeSelm CJ
2023
The effects of enhancing angiotensin converting enzyme in myelomonocytes on ameliorating Alzheimer’s-related disease and preserving cognition
Danziger R, Fuchs DT, Koronyo Y, Rentsendorj A, Sheyn J, Hayden EY, Teplow DB, Black KL, Fuchs S, Bernstein KE, Koronyo-Hamaoui M
Frontiers in physiology 2023
Complex Neuroimmune Involvement in Neurodevelopment: A Mini-Review
Monet MC, Quan N
Journal of inflammation research 2023
Improving Blood Monocyte Energy Metabolism Enhances Its Ability to Phagocytose Amyloid-β and Prevents Alzheimer's Disease-Type Pathology and Cognitive Deficits.
Liu ZH, Bai YD, Yu ZY, Li HY, Liu J, Tan CR, Zeng GH, Tu YF, Sun PY, Jia YJ, He JC, Wang YJ, Bu XL
Neuroscience Bulletin 2023
Neutrophil-Mediated Progression of Mild Cognitive Impairment to Dementia
Cho K
International journal of molecular sciences 2023
Effects of autologous serum on TREM2 and APOE in a personalized monocyte-derived macrophage assay of late-onset Alzheimer’s patients
Eren N, Gerike S, Üsekes B, Peters O, Cosma NC, Hellmann-Regen J
Immunity & ageing : I & A 2023
单细胞转录组鉴定阿尔茨海默病外周血生物标志物GZMK+ CD8+ T细胞
2023
Novel diagnostic biomarkers of oxidative stress, immunological characterization and experimental validation in Alzheimer’s disease
Hu D, Mo X, Jihang L, Huang C, Xie H, Jin L
Aging 2023
Brain perivascular macrophages: current understanding and future prospects
Wen W, Cheng J, Tang Y
Brain : a journal of neurology 2023
Behind the monocyte’s mystique: uncovering their developmental trajectories and fates
Teh YC, Chooi MY, Chong SZ
2023

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