Skip to main content
Top
Published in: Journal of Robotic Surgery 2/2016

01-06-2016 | Original Article

Early impact of robot-assisted partial nephrectomy on renal function as assessed by renal scintigraphy

Authors: Lorenzo G. Luciani, Stefano Chiodini, Davide Donner, Tommaso Cai, Valentino Vattovani, Daniele Tiscione, Guido Giusti, Silvia Proietti, Franca Chierichetti, Gianni Malossini

Published in: Journal of Robotic Surgery | Issue 2/2016

Login to get access

Abstract

To measure the early impact of robot-assisted partial nephrectomy (RAPN) on renal function as assessed by renal scan (Tc 99m-DTPA), addressing the issue of risk factors for ischemic damage to the kidney. All patients undergoing RAPN for cT1 renal masses between June 2013 and May 2014 were included in this prospective study. Renal function as expressed by glomerular filtration rate (GFR) was assessed by Technetium 99m-diethylenetriaminepentaacetic acid (Tc 99m-DTPA) renal scan preoperatively and postoperatively at 1 month in every patient. A multivariable analysis was used for the determination of independent factors predictive of GFR decrease of the operated kidney. Overall, 32 patients underwent RAPN in the time interval. Median tumor size, blood loss, and ischemia time were 4 cm, 200 mL, and 24 min, respectively. Two grade III complications occurred (postoperative bleeding in the renal fossa, urinoma). The GFR of the operated kidney decreased significantly from 51.7 ± 15.1 mL/min per 1.73 m2 preoperatively to 40, 12 ± 12.4 mL/min per 1.73 m2 1 month postoperatively (p = 0.001) with a decrease of 22.4 %. On multivariable analysis, only tumor size (p = 0.05) was a predictor of GFR decrease of the operated kidney. Robotic-assisted partial nephrectomy had a detectable impact on early renal function in a series of relatively large tumors and prevailing intermediate nephrometric risk. A mean decrease of 22 % of GFR as assessed by renal scan in the operated kidney was found at 1 month postoperatively. In multivariable analysis, tumor size only was a significant predictor of renal function loss.
Literature
1.
go back to reference Campbell SC, Novick AC, Belldegrun A et al (2009) Guideline for management of the clinical stage 1 renal mass. J Urol 182:1271–1279CrossRefPubMed Campbell SC, Novick AC, Belldegrun A et al (2009) Guideline for management of the clinical stage 1 renal mass. J Urol 182:1271–1279CrossRefPubMed
2.
go back to reference MacLennan S, Imamura M, Lapitan MC, UCAN Systematic Review Reference Group; EAU Renal Cancer Guideline Panel et al (2012) Systematic review of oncological outcomes following surgical management of localised renal cancer. Eur Urol 61:972–993CrossRefPubMed MacLennan S, Imamura M, Lapitan MC, UCAN Systematic Review Reference Group; EAU Renal Cancer Guideline Panel et al (2012) Systematic review of oncological outcomes following surgical management of localised renal cancer. Eur Urol 61:972–993CrossRefPubMed
3.
go back to reference Faria EF, Caputo PA, Wood CG, Karam JA, Nogueras-Gonzalez GM, Matin FS (2014) Robotic partial nephrectomy shortens warm ischemia time, reducing suturing time kinetics even for an experienced laparoscopic surgeon: a comparative analysis. World J Urol 32:265–271CrossRefPubMedPubMedCentral Faria EF, Caputo PA, Wood CG, Karam JA, Nogueras-Gonzalez GM, Matin FS (2014) Robotic partial nephrectomy shortens warm ischemia time, reducing suturing time kinetics even for an experienced laparoscopic surgeon: a comparative analysis. World J Urol 32:265–271CrossRefPubMedPubMedCentral
4.
go back to reference Shirasaki Y, Saika T, Tsushima T, Nasu Y, Arata R, Kumon H (2005) Predicting postoperative renal insufficiency in patients undergoing nephrectomy for renal malignancy: assessment by renal scintigraphy using 99mtechnetium-mercaptoacetyltriglycine. J Urol 173:388–390CrossRefPubMed Shirasaki Y, Saika T, Tsushima T, Nasu Y, Arata R, Kumon H (2005) Predicting postoperative renal insufficiency in patients undergoing nephrectomy for renal malignancy: assessment by renal scintigraphy using 99mtechnetium-mercaptoacetyltriglycine. J Urol 173:388–390CrossRefPubMed
5.
go back to reference Funahashi Y, Hattori R, Yamamoto T, Sassa N, Fujita T, Gotoh M (2012) Effect of warm ischemia on renal function during partial nephrectomy: assessment with new 99mTc-mercaptoacetyltriglycine scintigraphy parameter. Urology 79:160–164CrossRefPubMed Funahashi Y, Hattori R, Yamamoto T, Sassa N, Fujita T, Gotoh M (2012) Effect of warm ischemia on renal function during partial nephrectomy: assessment with new 99mTc-mercaptoacetyltriglycine scintigraphy parameter. Urology 79:160–164CrossRefPubMed
6.
go back to reference Groshar D, Moskovitz B, Issaq E, Nativ O (1997) Quantitative SPECT of DMSA uptake by the kidneys: assessment of reproducibility. Kidney Int 52:817–820CrossRefPubMed Groshar D, Moskovitz B, Issaq E, Nativ O (1997) Quantitative SPECT of DMSA uptake by the kidneys: assessment of reproducibility. Kidney Int 52:817–820CrossRefPubMed
7.
go back to reference Kondo T, Nakazawa H, Ito F et al (2002) Impact of arterial occlusion during partial nephrectomy on residual renal function: an evaluation with 99mtechnetium-dimercaptosuccinic acid scintigraphy. Int J Urol 9:435–440CrossRefPubMed Kondo T, Nakazawa H, Ito F et al (2002) Impact of arterial occlusion during partial nephrectomy on residual renal function: an evaluation with 99mtechnetium-dimercaptosuccinic acid scintigraphy. Int J Urol 9:435–440CrossRefPubMed
8.
go back to reference Kobayashi Y, Usui Y, Shima M et al (2006) Evaluation of renal function after laparoscopic partial nephrectomy with renal scintigraphy using 99mtechnetium-mercaptoacetyltriglycine. Int J Urol 13:1371–1374CrossRefPubMed Kobayashi Y, Usui Y, Shima M et al (2006) Evaluation of renal function after laparoscopic partial nephrectomy with renal scintigraphy using 99mtechnetium-mercaptoacetyltriglycine. Int J Urol 13:1371–1374CrossRefPubMed
9.
go back to reference Porpiglia F, Fiori C, Bertolo R et al (2012) Long-term functional evaluation of the treated kidney in a prospective series of patients who underwent laparoscopic partial nephrectomy for small renal tumors. Eur Urol 62:130–135CrossRefPubMed Porpiglia F, Fiori C, Bertolo R et al (2012) Long-term functional evaluation of the treated kidney in a prospective series of patients who underwent laparoscopic partial nephrectomy for small renal tumors. Eur Urol 62:130–135CrossRefPubMed
10.
go back to reference Tachikake T, Shigeta M, Mita K, Marukawa K, Usui T, Ito K (2009) Decrease of renal function due to warm ischemia after laparoscopic partial nephrectomy: evaluation using 99mTc-DMSA renal scintigraphy. Urol Int 82:162–165CrossRefPubMed Tachikake T, Shigeta M, Mita K, Marukawa K, Usui T, Ito K (2009) Decrease of renal function due to warm ischemia after laparoscopic partial nephrectomy: evaluation using 99mTc-DMSA renal scintigraphy. Urol Int 82:162–165CrossRefPubMed
11.
go back to reference Choi JD, Park JW, Choi JY et al (2010) Renal damage caused by warm ischaemia during laparoscopic and robot-assisted partial nephrectomy: an assessment using Tc 99m-DTPA glomerular filtration rate. Eur Urol 58:900–905CrossRefPubMed Choi JD, Park JW, Choi JY et al (2010) Renal damage caused by warm ischaemia during laparoscopic and robot-assisted partial nephrectomy: an assessment using Tc 99m-DTPA glomerular filtration rate. Eur Urol 58:900–905CrossRefPubMed
12.
go back to reference Sankin A, Sfakianos JP, Schiff J, Sjoberg D, Coleman JA (2012) Assessing renal function after partial nephrectomy using renal nuclear scintigraphy and estimated glomerular filtration rate. Urology 80:343–346CrossRefPubMedPubMedCentral Sankin A, Sfakianos JP, Schiff J, Sjoberg D, Coleman JA (2012) Assessing renal function after partial nephrectomy using renal nuclear scintigraphy and estimated glomerular filtration rate. Urology 80:343–346CrossRefPubMedPubMedCentral
13.
go back to reference Ficarra V, Novara G, Secco S et al (2009) Preoperative aspects and dimensions used for an anatomical (PADUA) classification of renal tumours in patients who are candidates for nephron-sparing surgery. Eur Urol 56:786–793CrossRefPubMed Ficarra V, Novara G, Secco S et al (2009) Preoperative aspects and dimensions used for an anatomical (PADUA) classification of renal tumours in patients who are candidates for nephron-sparing surgery. Eur Urol 56:786–793CrossRefPubMed
14.
go back to reference Kutikov A, Uzzo RG (2009) The R.E.N.A.L. nephrometry score: a comprehensive standardized system for quantitating renal tumor size, location and depth. J Urol 182:844–853CrossRefPubMed Kutikov A, Uzzo RG (2009) The R.E.N.A.L. nephrometry score: a comprehensive standardized system for quantitating renal tumor size, location and depth. J Urol 182:844–853CrossRefPubMed
15.
go back to reference Dindo D, Demartines N, Clavien PA (2004) Classification of surgical complications: a new proposal with evaluation in a cohort of 6336 and result of a survey. Ann Surg 240:205–213CrossRefPubMedPubMedCentral Dindo D, Demartines N, Clavien PA (2004) Classification of surgical complications: a new proposal with evaluation in a cohort of 6336 and result of a survey. Ann Surg 240:205–213CrossRefPubMedPubMedCentral
16.
go back to reference Benway BM, Wang AJ, Cabello JM, Bhayani SB (2009) Robotic partial nephrectomy with sliding-clip renorrhaphy: technique and outcomes. Eur Urol 55:592–599CrossRefPubMed Benway BM, Wang AJ, Cabello JM, Bhayani SB (2009) Robotic partial nephrectomy with sliding-clip renorrhaphy: technique and outcomes. Eur Urol 55:592–599CrossRefPubMed
17.
go back to reference Desai MM, Gill IS, Ramani AP, Spaliviero M, Rybicki L, Kaouk JH (2005) The impact of warm ischaemia on renal function after laparoscopic partial nephrectomy. BJU Int 95:377–383CrossRefPubMed Desai MM, Gill IS, Ramani AP, Spaliviero M, Rybicki L, Kaouk JH (2005) The impact of warm ischaemia on renal function after laparoscopic partial nephrectomy. BJU Int 95:377–383CrossRefPubMed
18.
go back to reference Thompson RH, Lane BR, Lohse CM et al (2010) Every minute counts when the renal hilum is clamped during partial nephrectomy. Eur Urol 58:340–345CrossRefPubMed Thompson RH, Lane BR, Lohse CM et al (2010) Every minute counts when the renal hilum is clamped during partial nephrectomy. Eur Urol 58:340–345CrossRefPubMed
19.
go back to reference Novick AC (1983) Renal hypothermia: in vivo and ex vivo. Urol Clin North Am 10:637–644PubMed Novick AC (1983) Renal hypothermia: in vivo and ex vivo. Urol Clin North Am 10:637–644PubMed
20.
go back to reference Ward JP (1975) Determination of the optimum temperature for regional renal hypothermia during temporary renal ischaemia. Br J Urol 47:17–24CrossRefPubMed Ward JP (1975) Determination of the optimum temperature for regional renal hypothermia during temporary renal ischaemia. Br J Urol 47:17–24CrossRefPubMed
21.
go back to reference Porpiglia F, Renard J, Billia M et al (2007) Is renal warm ischemia over 30 minutes during laparoscopic partial nephrectomy possible? One-year results of a prospective study. Eur Urol 52:1170–1178CrossRefPubMed Porpiglia F, Renard J, Billia M et al (2007) Is renal warm ischemia over 30 minutes during laparoscopic partial nephrectomy possible? One-year results of a prospective study. Eur Urol 52:1170–1178CrossRefPubMed
Metadata
Title
Early impact of robot-assisted partial nephrectomy on renal function as assessed by renal scintigraphy
Authors
Lorenzo G. Luciani
Stefano Chiodini
Davide Donner
Tommaso Cai
Valentino Vattovani
Daniele Tiscione
Guido Giusti
Silvia Proietti
Franca Chierichetti
Gianni Malossini
Publication date
01-06-2016
Publisher
Springer London
Published in
Journal of Robotic Surgery / Issue 2/2016
Print ISSN: 1863-2483
Electronic ISSN: 1863-2491
DOI
https://doi.org/10.1007/s11701-016-0576-x

Other articles of this Issue 2/2016

Journal of Robotic Surgery 2/2016 Go to the issue