Bariatric surgery improved measured glomerular filtration rate at 6 months, significantly reducing mGFR to near normal values in patients with baseline hyperfiltration (P=0.01).
Cohort (n=16)
Does bariatric surgery improve measured glomerular filtration rate in severely obese patients?
Bariatric surgery improves renal function by reducing hyperfiltration at 6 months in severely obese patients, and mGFR via iohexol clearance is more accurate than eGFR equations in this population.
Over the last few decades, the prevalence of obesity has increased dramatically. This increase has been mirrored by a rise in the risk of a number of health conditions, including hypertension, diabetes and chronic kidney disease. Although the weight loss following bariatric surgery has been shown to relieve the severity of diabetes and reduce hypertension, the effect on renal function has been less extensively evaluated. The aims of the present study were to: (i) compare the estimated glomerular filtration rate (eGFR, using the MDRD and CKD-EPI equations) and the calculated glomerular filtration rate (using the 24-hour urine volume) with the measured glomerular filtration rate (mGFR) assessed with the plasma iohexol clearance method in severely obese patients, and (ii) evaluate the effect of weight loss on the mGFR 6 months after bariatric surgery. Before and six months after bariatric surgery (Roux-en-Y gastric bypass or sleeve gastrectomy), eligible patients for bariatric surgery were admitted as day cases to the nephrology unit, where they underwent a plasma iohexol clearance test. The GFR was also estimated using the MDRD and CKDEPI equations and the 24-hour urine method. Changes in eGFR and mGFR were compared using a Wilcoxon test for paired data. Data from 16 patients with severe obesity (mean ± standard deviation of Body Mass Index BMI: 43.9 ± 7.3 kg/m2) were analyzed. At baseline, 12 (75%) presented with hypertension and 10 (63%) presented with diabetes. The median range iohexol clearance rate was 109 57–194 mL/min. The plasma iohexol clearance test evidenced hyperfiltration (mGFR > 120 mL/min) in 7 patients. In contrast, the eGFR values generated by the MDRD equation, the CKDEPI equation and the GFR MFR calculated with the 24-hour urine method only identified hyperfiltration in 1, 0 and 5 patients, respectively. Six months after surgery, the mean BMI had fallen significantly (P < 0.0012), and the severity of diabetes (according to the HbA1c level) had decreased significantly from 6.6 6.0–9.8 % to 5.7 5.2–8.6 % (P = 0.025). The iohexol clearance rate increased slightly after bariatric surgery. Changes in BMI after surgery do not seem to be correlated with the changes in iohexol clearance. In patients displaying hyperfiltration at baseline, the mGFR fell significantly (n = 7; P = 0.01) and returned to near normal values. No significant changes in the eGFR were observed. Our results suggest that MDRD and CKD-EPI equations do not provide accurate estimates of the true GFR in severely obese patients (particularly in those with hyperfiltration). Iohexol clearance or other methods for determining mGFR should constitute the gold standard for the accurate evaluation of renal function in this context. Renal function (as evaluated by the mGFR) improved 6 months after bariatric surgery in severely obese individuals particularly in patients displaying hyperfiltration at baseline. However, these observations must be confirmed in a larger study with a longer follow-up period.
Clerté et al. (2017) conducted a cohort in Severe obesity (n=16). Bariatric surgery vs. Baseline (pre-surgery) was evaluated on Change in measured glomerular filtration rate (mGFR) assessed with plasma iohexol clearance. Bariatric surgery improved measured glomerular filtration rate at 6 months, significantly reducing mGFR to near normal values in patients with baseline hyperfiltration (P=0.01).