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Cardiac Mechanics and Kidney Function Decline in the Cardiovascular Health Study.

TitleCardiac Mechanics and Kidney Function Decline in the Cardiovascular Health Study.
Publication TypeJournal Article
Year of Publication2023
AuthorsMehta, R, Bůzková, P, Patel, H, Cheng, J, Kizer, JR, Gottdiener, JS, Psaty, B, Khan, SS, Ix, JH, Isakova, T, Shlipak, MG, Bansal, N, Shah, SJ
JournalKidney360
Date Published2023 Mar 08
ISSN2641-7650
Abstract<p><b>BACKGROUND: </b>Clinical heart failure frequently coexists with chronic kidney disease (CKD) and may precipitate kidney function decline. However, whether earlier-stage myocardial dysfunction assessable by speckle tracking echocardiography is a contributor to kidney function decline remains unknown.</p><p><b>METHODS: </b>We studied 2135 Cardiovascular Health Study (CHS) participants who were free of clinical heart failure and had Year 2-baseline 2D speckle tracking echocardiography and two measurements of estimated glomerular filtration rate (eGFR) (Year 2 and Year 9). "Archival" speckle tracking of digitized echocardiogram videotapes was utilized to measure left ventricular longitudinal strain (LVLS), LV early diastolic strain rate (EDSR), left atrial reservoir strain (LARS), right ventricular free wall strain (RVFWS), and mitral annular velocity (e'). Multivariable Poisson regression models that adjusted for demographics and cardiovascular risk factors were used to investigate the independent associations of cardiac mechanics indices and decline in kidney function defined as a 30% decline in eGFR over 7 years.</p><p><b>RESULTS: </b>In risk factor (RF) models LVLS, EDSR, RVFWS, and e' were all significantly associated with the prevalence of kidney disease. After multivariable adjustment, left atrial dysfunction (RR 1.18 [95% CI 1.01, 1.38] per SD lower LARS] and left ventricular diastolic dysfunction (RR 1.21 [95% CI 1.04, 1.41] per SD lower EDSR) were each significantly associated with 30% decline in eGFR.</p><p><b>CONCLUSIONS: </b>Subclinical myocardial dysfunction suggesting abnormal diastolic function detected by 2D speckle-tracking echocardiography was independently associated with decline in kidney function over time. Further studies are needed to understand the mechanisms of these associations and to test whether interventions that may improve subclinical myocardial dysfunction can prevent decline of kidney function.</p>
DOI10.34067/KID.0000000000000100
Alternate JournalKidney360
PubMed ID36888990
ePub date: 
23/03