The eye, the kidney, and cardiovascular disease: old concepts, better tools, and new horizons
Chronic kidney disease (CKD) is common, with hypertension and diabetes mellitus acting as major risk factors for its development. Cardiovascular disease is the leading cause of death worldwide and the most frequent end point of CKD. There is an urgent need for more precise methods to identify patien...
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Published in | Kidney international Vol. 98; no. 2; pp. 323 - 342 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
United States
Elsevier Inc
01.08.2020
Elsevier |
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Abstract | Chronic kidney disease (CKD) is common, with hypertension and diabetes mellitus acting as major risk factors for its development. Cardiovascular disease is the leading cause of death worldwide and the most frequent end point of CKD. There is an urgent need for more precise methods to identify patients at risk of CKD and cardiovascular disease. Alterations in microvascular structure and function contribute to the development of hypertension, diabetes, CKD, and their associated cardiovascular disease. Homology between the eye and the kidney suggests that noninvasive imaging of the retinal vessels can detect these microvascular alterations to improve targeting of at-risk patients. Retinal vessel–derived metrics predict incident hypertension, diabetes, CKD, and cardiovascular disease and add to the current renal and cardiovascular risk stratification tools. The advent of optical coherence tomography (OCT) has transformed retinal imaging by capturing the chorioretinal microcirculation and its dependent tissue with near-histological resolution. In hypertension, diabetes, and CKD, OCT has revealed vessel remodeling and chorioretinal thinning. Clinical and preclinical OCT has linked retinal microvascular pathology to circulating and histological markers of injury in the kidney. The advent of OCT angiography allows contrast-free visualization of intraretinal capillary networks to potentially detect early incipient microvascular disease. Combining OCT’s deep imaging with the analytical power of deep learning represents the next frontier in defining what the eye can reveal about the kidney and broader cardiovascular health. |
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AbstractList | Chronic kidney disease (CKD) is common, with hypertension and diabetes mellitus acting as major risk factors for its development. Cardiovascular disease is the leading cause of death worldwide and the most frequent end point of CKD. There is an urgent need for more precise methods to identify patients at risk of CKD and cardiovascular disease. Alterations in microvascular structure and function contribute to the development of hypertension, diabetes, CKD, and their associated cardiovascular disease. Homology between the eye and the kidney suggests that noninvasive imaging of the retinal vessels can detect these microvascular alterations to improve targeting of at-risk patients. Retinal vessel-derived metrics predict incident hypertension, diabetes, CKD, and cardiovascular disease and add to the current renal and cardiovascular risk stratification tools. The advent of optical coherence tomography (OCT) has transformed retinal imaging by capturing the chorioretinal microcirculation and its dependent tissue with near-histological resolution. In hypertension, diabetes, and CKD, OCT has revealed vessel remodeling and chorioretinal thinning. Clinical and preclinical OCT has linked retinal microvascular pathology to circulating and histological markers of injury in the kidney. The advent of OCT angiography allows contrast-free visualization of intraretinal capillary networks to potentially detect early incipient microvascular disease. Combining OCT's deep imaging with the analytical power of deep learning represents the next frontier in defining what the eye can reveal about the kidney and broader cardiovascular health. Chronic kidney disease (CKD) is common, with hypertension and diabetes mellitus acting as major risk factors for its development. Cardiovascular disease is the leading cause of death worldwide and the most frequent end point of CKD. There is an urgent need for more precise methods to identify patients at risk of CKD and cardiovascular disease. Alterations in microvascular structure and function contribute to the development of hypertension, diabetes, CKD, and their associated cardiovascular disease. Homology between the eye and the kidney suggests that noninvasive imaging of the retinal vessels can detect these microvascular alterations to improve targeting of at-risk patients. Retinal vessel–derived metrics predict incident hypertension, diabetes, CKD, and cardiovascular disease and add to the current renal and cardiovascular risk stratification tools. The advent of optical coherence tomography (OCT) has transformed retinal imaging by capturing the chorioretinal microcirculation and its dependent tissue with near-histological resolution. In hypertension, diabetes, and CKD, OCT has revealed vessel remodeling and chorioretinal thinning. Clinical and preclinical OCT has linked retinal microvascular pathology to circulating and histological markers of injury in the kidney. The advent of OCT angiography allows contrast-free visualization of intraretinal capillary networks to potentially detect early incipient microvascular disease. Combining OCT’s deep imaging with the analytical power of deep learning represents the next frontier in defining what the eye can reveal about the kidney and broader cardiovascular health. |
Author | Farrah, Tariq E. Dhaun, Neeraj Webb, David J. Keane, Pearse A. Dhillon, Baljean |
Author_xml | – sequence: 1 givenname: Tariq E. surname: Farrah fullname: Farrah, Tariq E. organization: University/BHF Centre for Cardiovascular Science, The Queen’s Medical Research Institute, University of Edinburgh, Edinburgh, UK – sequence: 2 givenname: Baljean surname: Dhillon fullname: Dhillon, Baljean organization: Centre for Clinical Brain Sciences, University of Edinburgh, Edinburgh, UK – sequence: 3 givenname: Pearse A. surname: Keane fullname: Keane, Pearse A. organization: NIHR Biomedical Research Centre for Ophthalmology, Moorfields Eye Hospital, London, UK – sequence: 4 givenname: David J. surname: Webb fullname: Webb, David J. organization: University/BHF Centre for Cardiovascular Science, The Queen’s Medical Research Institute, University of Edinburgh, Edinburgh, UK – sequence: 5 givenname: Neeraj surname: Dhaun fullname: Dhaun, Neeraj email: bean.dhaun@ed.ac.uk organization: University/BHF Centre for Cardiovascular Science, The Queen’s Medical Research Institute, University of Edinburgh, Edinburgh, UK |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/32471642$$D View this record in MEDLINE/PubMed |
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Copyright | 2020 International Society of Nephrology Copyright © 2020 International Society of Nephrology. Published by Elsevier Inc. All rights reserved. 2020 International Society of Nephrology. Published by Elsevier Inc. 2020 International Society of Nephrology |
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Keywords | chronic kidney disease hypertension imaging microcirculation proteinuria ocular |
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SubjectTerms | Cardiovascular Diseases - diagnosis Cardiovascular Diseases - epidemiology chronic kidney disease Humans hypertension imaging Kidney - diagnostic imaging microcirculation ocular proteinuria Renal Insufficiency, Chronic - diagnosis Renal Insufficiency, Chronic - epidemiology Retinal Vessels Tomography, Optical Coherence |
Title | The eye, the kidney, and cardiovascular disease: old concepts, better tools, and new horizons |
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