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Citations to this article

Oxidation-specific epitopes are dominant targets of innate natural antibodies in mice and humans
Meng-Yun Chou, … , Joseph L. Witztum, Christoph J. Binder
Meng-Yun Chou, … , Joseph L. Witztum, Christoph J. Binder
Published April 13, 2009
Citation Information: J Clin Invest. 2009;119(5):1335-1349. https://doi.org/10.1172/JCI36800.
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Research Article Cardiology Article has an altmetric score of 8

Oxidation-specific epitopes are dominant targets of innate natural antibodies in mice and humans

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Abstract

Atherosclerosis is a chronic inflammatory disease characterized by the accumulation of oxidized lipoproteins and apoptotic cells. Adaptive immune responses to various oxidation-specific epitopes play an important role in atherogenesis. However, accumulating evidence suggests that these epitopes are also recognized by innate receptors, such as scavenger receptors on macrophages, and plasma proteins, such as C-reactive protein (CRP). Here, we provide multiple lines of evidence that oxidation-specific epitopes constitute a dominant, previously unrecognized target of natural Abs (NAbs) in both mice and humans. Using reconstituted mice expressing solely IgM NAbs, we have shown that approximately 30% of all NAbs bound to model oxidation-specific epitopes, as well as to atherosclerotic lesions and apoptotic cells. Because oxidative processes are ubiquitous, we hypothesized that these epitopes exert selective pressure to expand NAbs, which in turn play an important role in mediating homeostatic functions consequent to inflammation and cell death, as demonstrated by their ability to facilitate apoptotic cell clearance. These findings provide novel insights into the functions of NAbs in mediating host homeostasis and into their roles in health and diseases, such as chronic inflammatory diseases and atherosclerosis.

Authors

Meng-Yun Chou, Linda Fogelstrand, Karsten Hartvigsen, Lotte F. Hansen, Douglas Woelkers, Peter X. Shaw, Jeomil Choi, Thomas Perkmann, Fredrik Bäckhed, Yury I. Miller, Sohvi Hörkkö, Maripat Corr, Joseph L. Witztum, Christoph J. Binder

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012 2011 2010 2009 Total
Citations: 4 16 15 20 22 20 9 18 19 26 14 22 18 25 9 10 4 271
Citation information
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Citations to this article in year 2020 (20)

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