PubMed Health⌕ Search

PubMed · 16205477

Screening techniques for detecting chronic kidney disease.

Abstract

PURPOSE OF REVIEW: As patients with impaired kidney function are at increased risk not only for progressive renal function loss, but also for cardiovascular disease, it is of importance to have accurate techniques to screen patients for the presence of an impaired kidney function. RECENT FINDINGS: Glomerular filtration rate can in mass screenings best be evaluated using a formula based upon a serum creatinine measurement and anthropometric parameters. The Cockcroft-Gault and Modification of Diet in Renal Disease (MDRD) formulas are mostly used. Both are easy to use, but have their limitations. Interpreting the results of such glomerular filtration rate estimates requires a good knowledge of these limitations. Urinary albumin excretion can best be measured from 24 h urine collections. As these collections are difficult to perform, however, an early morning spot urine sample for the measurement of urinary albumin concentration can be applied as preselection for screening purposes. SUMMARY: Mass screening for early kidney function impairment, expressed by an impaired glomerular filtration rate or elevated urinary albumin excretion, may help to detect patients at increased cardiac and renal risk. This can best be done using formulas to estimate glomerular filtration rate and by measuring urinary albumin loss.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Paul E de Jong, Ron T Gansevoort. 2005. Screening techniques for detecting chronic kidney disease.. https://doi.org/10.1097/01.mnh.0000183948.13739.ee

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Urinary albumin excretion is associated with impaired flow- and nitroglycerin-mediated brachial artery dilatation in hypertensive adults.

We investigated whether the urinary albumin/creatinine ratio (UACR), a measure of albuminuria, is associated with non-invasive measures of arterial function in hypertensive adults without known coronary heart disease (CHD) or stroke. UACR was measured in the first voided morning urine sample in 469 non-Hispanic white hypertensive individuals (mean age 62.2+/-9.8 years, 41% men) belonging to hypertensive sibships. High-resolution ultrasonography of the brachial artery was used to assess flow-mediated dilatation (FMD)--an endothelium-dependent response--and nitroglycerin-mediated dilatation (NMD)--an endothelium-independent response. Because of skewed distribution, UACR was log transformed after addition of 0.1. The association of log (UACR+0.1) with FMD and NMD, before and after adjustment for CHD risk factors, serum creatinine, and hypertension medication and statin use was assessed using linear regression analyses. In univariable analyses, variables associated with lower FMD were greater age, male sex, history of smoking, lower high-density lipoprotein (HDL) cholesterol, higher serum creatinine and higher log (UACR+0.1); variables associated with lower NMD were greater age, male sex, higher systolic blood pressure, lower HDL cholesterol, higher serum creatinine and higher log (UACR+0.1). In separate stepwise multivariable regression analyses that adjusted for conventional CHD risk factors, serum creatinine and hypertension medication and statin use, higher log (UACR+0.1) was associated with lower brachial artery FMD (P=0.035) and NMD (P=0.0002). These findings highlight the association of increased urinary albumin excretion with impaired vascular reactivity in hypertensive individuals.

Albuminuria↗

What predicts progression and regression of urinary albumin excretion in the nondiabetic population?

An increase or decrease in urinary albumin excretion (UAE) is associated with, respectively, a higher or lower risk for renal and cardiovascular disease, independent of widely known cardiovascular risk factors. This study aimed to identify factors that are associated with changes in UAE in the nondiabetic population using data of the Prevention of Renal and Vascular End stage Disease (PREVEND) Study, a community-based prospective cohort study. Data of the 6647 nondiabetic participants who completed the first (1997 through 2001) and second (2001 through 2003) screening were used. Change in UAE was categorized as regression (n = 650), stable (n = 5240), or progression (n = 757) on the basis of change in class during follow-up, with classes being a UAE <15, 15 to 30, 30 to 300, and >300 mg/24 h. With the use of stepwise forward multinomial regression analysis changes in BP, fasting glucose concentration, and start of antihypertensive drugs were found to be the most important modifiable variables associated with the risk for progression and regression (P < 0.01 for likelihood ratio test). The odds ratios to develop regression or progression of UAE during follow-up were 0.64 (95% confidence interval [CI] 0.57 to 0.73) and 1.91 (95% CI 1.72 to 2.12), respectively, per 10-mmHg increase in BP during follow-up, 0.89 (95% CI 0.80 to 0.98) and 1.09 (95% CI 1.01 to 1.17), respectively, per 1-mmol/L increase of fasting glucose levels during follow-up, and 1.57 (95% CI 1.21 to 2.06) and 0.70 (95% CI 0.51 to 0.95), respectively, for start of antihypertensive drugs during follow-up. These associations were independent of baseline BP, glucose, body mass index, estimated GFR, and UAE and changes in high-sensitivity C-reactive protein during follow-up. In conclusion, changes in glucose concentration and BP and start of antihypertensive drugs (angiotensin-converting enzyme inhibitors/angiotensin receptor blockers in >50% of cases) are associated with progression and regression of UAE in the nondiabetic population. Although associations do not necessarily suggest causality, it is hypothesized that in the general population, the most important ways to reduce UAE are by lowering glucose concentration and BP (including start of antihypertensive medication), even in normotensive, nondiabetic individuals.

Albuminuria↗