More than 80% of individuals with chronic kidney disease have concomitant hypertension and the majority fail to achieve blood pressure control \<130/80 mmHg, leading to high risk of cardiovascular diseases and end-stage kidney disease. A stepwise combination of lifestyle modifications and drug therapy is recommended to lower blood pressure; however, adherence to time-intensive lifestyle interventions such as aerobic exercise in patients with chronic kidney disease is poor. This clinical trial seeks to establish the efficacy of high-resistance inspiratory muscle strength training, a novel time-efficient lifestyle intervention, for lowering systolic blood pressure and improving endothelial function in midlife and older adults with moderate-to-severe chronic kidney disease and inadequately controlled hypertension, and to use innovate translational assessments to understand the mechanisms involved.
Chronic kidney disease (CKD) is a major public health concern that has reached epidemic proportions. Hypertension is a leading modifiable risk factor for cardiovascular disease (CVD) and end-stage kidney disease, yet 50-70% of adults with CKD fail to achieve blood pressure (BP) control to \<130/80 mmHg. A key process linking high systolic BP (SBP) to CVD is vascular endothelial dysfunction, which is due in part to increased reactive oxygen species and decreased nitric oxide. Nitric oxide is also critical in the regulation of renal blood flow, which is intimately related to blood pressure and vascular function. High-resistance inspiratory muscle strength training (IMST) is a novel lifestyle intervention involving repeated inhalations against a resistive load using a hand-held device. This study will test whether high-resistance IMST (75% of maximal inspiratory pressure \[75% PImax\]; 30 breaths \[5 min\]/day, 6 days \[30 min\]/week) vs. Sham training (15% PImax) reduces resting systolic blood pressure in midlife and older adults (\>50 years) with moderate-to-severe CKD and inadequately controlled hypertension. Changes in 24-hr systolic blood pressure and endothelial function (brachial artery flow-mediated dilation) are secondary outcomes. Innovative translational techniques will be used to provide mechanistic insight, including serum incubation in endothelial cell culture, metabolomics analysis, endothelial cell collections, and assessment of renal blood flow by magnetic resonance imaging. Changes and cerebrovascular and cognitive function will be assessed as part of a sub-study.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
QUADRUPLE
Enrollment
108
Inspiratory muscle strength training (IMST) is a form of physical training that utilizes the diaphragm and accessory respiratory muscles to repeatedly inhale against resistance using a handheld device.
Repeated inhalations against a low resistance will be performed using a handheld device.
University of Colorado - Anschutz Medical Campus
Aurora, Colorado, United States
RECRUITINGChange in Casual Systolic Blood Pressure
Casual (resting) measures of systolic blood pressure (mmHg) will be measured in triplicate over the brachial artery of the non-dominant arm after 5 minutes of quiet rest, with 1 minute of recovery between each measure, using an automated oscillometric sphygmomanometer.
Time frame: Baseline, 3 months
Change in 24-Hour Ambulatory Systolic Blood Pressure
Brachial artery systolic blood pressure (mmHg) will be measured automatically every 20 minutes for a 24-hour period by an ambulatory blood pressure monitor and will be averaged over the entire 24-hour period.
Time frame: Baseline, 3 months
Change in Brachial Artery Flow-Mediated Dilation
Flow-mediated dilation of the brachial artery will be performed using ultrasonography and analyzed with a commercially available software package as percent change in diameter from baseline following reactive hyperemia.
Time frame: Baseline, 3 months
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