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Measured GFR in Donor Selection, to Do or Not to Do? That is the Question
Shiva Samavat1, Homa Masrour, Azadeh Ahmadikoomleh
1Chronic Kidney Disease Research Center (CKDRC), Shahid Labbafinejad Medical Center, Shahid Beheshti University of Medical Sciences (SBMU), Tehran, Iran. shsamavat@gmail.com.
Introduction:
The accurate assessment of the pre-donation glomerular filtration rate (GFR) is a crucial step in donor selection. We conducted a prospective cross-sectional study to identify the best equation to estimate GFR and the necessity of a radio-nuclear scan in GFR evaluation.
Methods:
In this study, 154 potential donors were enrolled, and GFR equations (the MDRD study, the CKD-EPI study, and the full age spectrum [FAS]), and creatinine clearance were compared with measured GFR (mGFR) by the radio-nuclear method.
Results:
The study results indicate that Potential donors had an mGFR of 95.56 ± 15.57 mL/min per 1.73 m2. Though body surface area (BSA) adjusted full age spectrum (FAS) and CKD-EPI equations were most correlated with mGFR, the correlation coefficients were weak (ICC: 0.3 and 0.32, respectively). Misclassification at the cut-off of 80 cc/min/ 1.73 m2 was about 42% for both equations. Besides, 16.8% of donors with eGFR more than 80 cc/min/ 1.73 m2 had a difference in split renal function, and 57.1% of participants had a > 2% probability of having an mGFR < 90 mL/min per 1.73 m2.
Conclusion:
If the nuclear scan is easily available, we suggest measuring GFR by 99mTc -DTPA scan as the preferred method. Otherwise, our data suggest utilizing mGFR in patients with high body mass index, size asymmetry in CT-scan, eGFR less than 90 mL/min per 1.73 m2 with FAS and/or CKD-EPI equation as these factors deviated the estimated GFR, and also in those with inaccurate creatinine clearance measurements or with posttest probability of having mGFR less than 90 mL/min per 1.73 m2 more than 2%. DOI: 10.52547/ijkd.7271.
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