Literature DB >> 29238011

Plaque Calcification During Atherosclerosis Progression and Regression.

Atsushi Shioi1,2, Yuji Ikari3.   

Abstract

Plaque calcification develops by the inflammation-dependent mechanisms involved in progression and regression of atherosclerosis. Macrophages can undergo two distinct polarization states, that is, pro-inflammatory M1 phenotype in progression and anti-inflammatory M2 phenotype in regression. In plaque progression, predominant M1 macrophages promote the initial calcium deposition within the necrotic core of the lesions, called as microcalcification, through not only vesicle-mediated mineralization as the result of apoptosis of macrophages and vascular smooth muscle cells (VSMCs), but also VSMC differentiation into early phase osteoblasts. On the other hand, in plaque regression M2 macrophages are engaged in the healing response to plaque inflammation. In association with the resolution of chronic inflammation, M2 macrophages may facilitate macroscopic calcium deposition, called as macrocalcification, through induction of osteoblastic differentiation and maturation of VSMCs. Oncostatin M, which has been shown to promote osteoblast differentiation in bone, may play a pivotal role in the development of plaque calcification. Clinically, two types of plaque calcification have distinct implications. Macrocalcification leads to plaque stability, while microcalcification is more likely to be associated with plaque rupture. Statin therapy, which reduces cardiovascular mortality, has been shown to exert its dual actions on plaque morphology, that is, regression of atheroma and increment of macroscopic calcium deposits. Statins may facilitate the healing process against plaque inflammation by enhancing M2 polarization of macrophages. Vascular calcification has pleiotropic properties as pro-inflammatory "microcalcification" and anti-inflammatory "macrocalcification". The molecular mechanisms of this process in relation with plaque progression as well as plaque regression should be intensively elucidated.

Entities:  

Keywords:  Inflammation; Macrocalcification; Macrophage polarization; Microcalcification

Mesh:

Substances:

Year:  2017        PMID: 29238011      PMCID: PMC5906181          DOI: 10.5551/jat.RV17020

Source DB:  PubMed          Journal:  J Atheroscler Thromb        ISSN: 1340-3478            Impact factor:   4.928


  68 in total

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3.  A hypothesis for vulnerable plaque rupture due to stress-induced debonding around cellular microcalcifications in thin fibrous caps.

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4.  Distribution of macrophage polarization markers in human atherosclerosis.

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Journal:  Atherosclerosis       Date:  2012-09-26       Impact factor: 5.162

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6.  Coronary Artery Calcification and Risk of Cardiovascular Disease and Death Among Patients With Chronic Kidney Disease.

Authors:  Jing Chen; Matthew J Budoff; Muredach P Reilly; Wei Yang; Sylvia E Rosas; Mahboob Rahman; Xiaoming Zhang; Jason A Roy; Eva Lustigova; Lisa Nessel; Virginia Ford; Dominic Raj; Anna C Porter; Elsayed Z Soliman; Jackson T Wright; Myles Wolf; Jiang He
Journal:  JAMA Cardiol       Date:  2017-06-01       Impact factor: 14.676

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8.  Volumetric characterization of human coronary calcification by frequency-domain optical coherence tomography.

Authors:  Emile Mehanna; Hiram G Bezerra; David Prabhu; Eric Brandt; Daniel Chamié; Hirosada Yamamoto; Guilherme F Attizzani; Satoko Tahara; Nienke Van Ditzhuijzen; Yusuke Fujino; Tomoaki Kanaya; Gregory Stefano; Wei Wang; Madhusudhana Gargesha; David Wilson; Marco A Costa
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Authors:  Agnese Irkle; Alex T Vesey; David Y Lewis; Jeremy N Skepper; Joseph L E Bird; Marc R Dweck; Francis R Joshi; Ferdia A Gallagher; Elizabeth A Warburton; Martin R Bennett; Kevin M Brindle; David E Newby; James H Rudd; Anthony P Davenport
Journal:  Nat Commun       Date:  2015-07-07       Impact factor: 14.919

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  56 in total

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2.  Microarchitectural Changes of Cardiovascular Calcification in Response to In Vivo Interventions Using Deep-Learning Segmentation and Computed Tomography Radiomics.

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Journal:  Arterioscler Thromb Vasc Biol       Date:  2022-06-16       Impact factor: 10.514

Review 3.  Exosomes in atherosclerosis: Convergence on macrophages.

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Review 4.  A Narrative Review of the Classical and Modern Diagnostic Methods of the No-Reflow Phenomenon.

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5.  TL1A inhibits atherosclerosis in apoE-deficient mice by regulating the phenotype of vascular smooth muscle cells.

Authors:  Dan Zhao; Jiaqi Li; Chao Xue; Ke Feng; Lipei Liu; Peng Zeng; Xiaolin Wang; Yuanli Chen; Luyuan Li; Zhisong Zhang; Yajun Duan; Jihong Han; Xiaoxiao Yang
Journal:  J Biol Chem       Date:  2020-09-22       Impact factor: 5.157

6.  Effects of Myo-inositol Hexaphosphate (SNF472) on Bone Mineral Density in Patients Receiving Hemodialysis: An Analysis of the Randomized, Placebo-Controlled CaLIPSO Study.

Authors:  David A Bushinsky; Paolo Raggi; Jordi Bover; Markus Ketteler; Antonio Bellasi; Mariano Rodriguez; Smeeta Sinha; Rekha Garg; Joan Perelló; Alex Gold; Glenn M Chertow
Journal:  Clin J Am Soc Nephrol       Date:  2021-04-07       Impact factor: 8.237

Review 7.  Randall's plaque and calcium oxalate stone formation: role for immunity and inflammation.

Authors:  Saeed R Khan; Benjamin K Canales; Paul R Dominguez-Gutierrez
Journal:  Nat Rev Nephrol       Date:  2021-01-29       Impact factor: 28.314

8.  Factors affecting in-stent restenosis after angioplasty with the Enterprise stent for intracranial atherosclerotic diseases.

Authors:  Kun Zhang; Tian-Xiao Li; Zi-Liang Wang; Bu-Lang Gao; Jian-Jun Gu; Hui-Li Gao; Yong-Feng Wang; Jin-Chao Xia
Journal:  Sci Rep       Date:  2021-05-18       Impact factor: 4.379

9.  Calcification patterns in femoral and carotid atheromatous plaques: A comparative morphometric study.

Authors:  Mircea Catalin Cosarca; Emőke Horváth; Calin Molnar; Gyopár-Beáta Molnár; Eliza Russu; Vasile Adrian Mureșan
Journal:  Exp Ther Med       Date:  2021-06-11       Impact factor: 2.447

10.  Anti-apoptotic effects of autophagy via ROS regulation in microtubule-targeted and PDGF-stimulated vascular smooth muscle cells.

Authors:  Hyun-Soo Park; Joo-Hui Han; Sang-Hyuk Jung; Do-Hyung Lee; Kyung-Sun Heo; Chang-Seon Myung
Journal:  Korean J Physiol Pharmacol       Date:  2018-04-25       Impact factor: 2.016

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