z-logo
open-access-imgOpen Access
From People to Lab Rats to People—Study of Exercise in CKD
Author(s) -
Kirsten L. Johansen
Publication year - 2019
Publication title -
journal of the american society of nephrology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.451
H-Index - 279
eISSN - 1533-3450
pISSN - 1046-6673
DOI - 10.1681/asn.2019080822
Subject(s) - medicine , physical therapy , aerobic exercise , population , deconditioning , dialysis , wasting , psychological intervention , rehabilitation , physical medicine and rehabilitation , intensive care medicine , environmental health , psychiatry
Physical dysfunction and muscle atrophy are common among patients with CKD; consequently, frailty and disability are also far more prevalent in this population than in unselected older individuals.1 Patients with ESKD report that maintaining independence and functional status is among their most important priorities.2 Although data are generally cross-sectional, these problems seem to develop and worsen as CKD progresses, with patients becoming less active and losing muscle mass and function.3 Exercise improves functional status and cardiovascular outcomes among community-dwelling elders, and the extremely sedentary behavior observed in the dialysis population has been recognized as a potential contributor to functional limitations. Specifically, aerobic exercise increases aerobic capacity, leading to increased endurance, and it can also improve endothelial function, reduce resting BP and heart rate, and reduce cardiovascular mortality. Resistance exercise training increases muscle size and strength. Given the poor physical function of patients with CKD, even small increases in exercise capacity or strength have the potential to result in meaningful differences in functional status. Furthermore, it is conceivable that exercise could improve mortality or even slow the progression of CKD. Hundreds of studies have examined exercise interventions in the CKD and ESKD populations, including aerobic exercise training delivered in a supervised rehabilitation center, at home, or during dialysis treatment.4 Interventions have varied in the form (e.g., stationary cycle or treadmill), intensity, and duration of training. Resistance exercise has been included in some of these studies, and it has also been examined as a primary form of therapy, including during dialysis. Most studies have reported beneficial effects of exercise in terms of improved exercise capacity, self-reported physical function, or physical performance as well as other effects, such as improved BP control or endothelial function.4 On the basis of this extensive literature, it would be reasonable to suggest that exercise is more beneficial thanmany other treatments that we offer patients with CKD, at least for outcomes that they care about.However, it would also be fair to say that the evidence that exercise improves functional status among patients with CKD is weak. How is it possible for both of these views to be justified? The answer lies in heterogeneity among exercise interventions, patient populations, and outcomes along with small sample sizes and often, poor study quality. These issues have prevented investigators and clinicians from coming to a consensus about the value of exercise, the most beneficial form or forms of exercise, and the degree to which patients can be convinced to participate. To be fair, these problems stem from the great challenges and barriers to studying patients with CKD and ESKD. Their extremely low baseline functional status and thrice weekly dialysis schedule may make a traditional moderate to vigorous exercise training intervention delivered in an exercise facility out of the question for most patients on dialysis. Even when intervention is tailored to patients’ initial exercise capacity and delivered in a dialysis facility, there are challenges related to safety and resources (equipment and ability of staff to deliver and supervise exercise). In addition, patients’ varying degree of volume overload and frequent hospitalizations also interfere with progression of exercise. Functional status and response to exercise are likely to be affected by non-CKD–related factors and comorbid conditions. Among patients with nondialysisdependent CKD, there is further heterogeneity on the basis of level of eGFR and manifestations and treatment of complications of CKD. These issues have hindered the conduct and interpretation of exercise interventions. Animal studies have a major advantage in that effects of kidney disease and exercise on muscle function and other outcomes can be isolated and that heterogeneity on the basis of age, cause of CKD, control of the complications of CKD, and comorbid conditions can be eliminated. In this issue of JASN, Avin et al.5 report on the effects of 10 weeks of voluntary wheel running among rats with and without progressive cystic CKD. The intervention consisted of housing rats in cages with a freely accessible voluntary activity wheel and was begun at 25 weeks of age, corresponding to stages 2–3 CKD. The results seem to be highly relevant to human CKD. Key findings were that rats with CKD ran less than normal litter mate rats without CKD and that the distance that they ran decreased with progression of disease. This is an important confirmation that CKD itself is associated with a progressive decline in volitional physical Published online ahead of print. Publication date available at www.jasn.org.

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here
Accelerating Research

Address

John Eccles House
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom