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Published in: BMC Nephrology 1/2019

Open Access 01-12-2019 | Kidney Transplantation | Research article

Effects of simultaneous pancreas-kidney transplantation and kidney transplantation alone on the outcome of peripheral vascular diseases

Authors: Robert Sucher, Sebastian Rademacher, Nora Jahn, Max Brunotte, Tristan Wagner, Athanasios Alvanos, Elisabeth Sucher, Daniel Seehofer, Uwe Scheuermann, Hans-Michael Hau

Published in: BMC Nephrology | Issue 1/2019

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Abstract

Background

The effects of Simultaneous Pancreas Kidney Transplantation (SPKT) on Peripheral Vascular Disease (PVD) warrants additional study and more target focus, since little is known about the mid- and long-term effects on the progression of PVD after transplantation.

Methods

101 SPKT and 26 Kidney Transplantation Alone (KTA) recipients with insulin-dependent diabetes mellitus (IDDM) were retrospectively evaluated with regard to graft and metabolic outcome. Special subgroup analysis was directed towards the development and progression of peripheral vascular complications (PVC) (amputation, ischemic ulceration, lower extremity angioplasty/ bypass surgery) after transplantation.

Results

The 10-year patient survival was significantly higher in the SPKT group (SPKT: 82% versus KTA 40%; P < 0.001). KTA recipients had a higher prevalence of atherosclerotic risk factors, including coronary artery disease (P < 0.001), higher serum triglyceride levels (P = 0.049), higher systolic (P = 0.03) and diastolic (P = 0.02) blood pressure levels. The incidence of PVD before transplantation was comparable between both groups (P = 0.114). Risk factor adjusted multivariate analysis revealed that patients with SPKT had a significant lower amount (32%) of PVCs (32 PVCs in 21 out of 101 SPKT; P < 0.001) when compared to the KTA patients who developed a significant increase in PVCs to 69% of cases (18 PVCs in 11 out of 26 KTA; P < 0.001). In line mean values of HbA1c (P < 0.01) and serum triglycerides (P < 0.01) were significantly lower in patients with SPKT > 8 years after transplantation.

Conclusion

SPKT favorably slows down development and progression of PVD by maintaining a superior metabolic vascular risk profile in patients with IDDM1.
Literature
1.
go back to reference White SA, Shaw JA, Sutherland D. Pancreas transplantation. Lancet (London, England). 2009;373:1808–17.CrossRef White SA, Shaw JA, Sutherland D. Pancreas transplantation. Lancet (London, England). 2009;373:1808–17.CrossRef
2.
go back to reference Nordén G, Carlström J, Wramner L, Nyberg G. Macrovascular disease after simultaneous pancreas and kidney transplantation. Clin Transpl. 2004;18:372–6.CrossRef Nordén G, Carlström J, Wramner L, Nyberg G. Macrovascular disease after simultaneous pancreas and kidney transplantation. Clin Transpl. 2004;18:372–6.CrossRef
3.
go back to reference Jenssen T, Hartmann A, Birkeland KI. Long-term diabetes complications after pancreas transplantation. Curr Opin Organ Transplant. 2017;22:382–8.CrossRef Jenssen T, Hartmann A, Birkeland KI. Long-term diabetes complications after pancreas transplantation. Curr Opin Organ Transplant. 2017;22:382–8.CrossRef
4.
go back to reference Bilous RW, Mauer SM, Sutherland DE, Najarian JS, Goetz FC, Steffes MW. The effects of pancreas transplantation on the glomerular structure of renal allografts in patients with insulin-dependent diabetes. N Engl J Med. 1989;321:80–5.CrossRef Bilous RW, Mauer SM, Sutherland DE, Najarian JS, Goetz FC, Steffes MW. The effects of pancreas transplantation on the glomerular structure of renal allografts in patients with insulin-dependent diabetes. N Engl J Med. 1989;321:80–5.CrossRef
5.
go back to reference Chow VC, Pai RP, Chapman JR, O’Connell PJ, Allen RD, Mitchell P, et al. Diabetic retinopathy after combined kidney-pancreas transplantation. Clin Transpl. 1999;13:356–62.CrossRef Chow VC, Pai RP, Chapman JR, O’Connell PJ, Allen RD, Mitchell P, et al. Diabetic retinopathy after combined kidney-pancreas transplantation. Clin Transpl. 1999;13:356–62.CrossRef
6.
go back to reference Groot Koerkamp B, Wiggers JK, Allen PJ, Busch ORC, D’Angelica MI, DeMatteo RP, et al. American joint committee on Cancer staging for resected perihilar cholangiocarcinoma: a comparison of the 6th and 7th editions. HPB (Oxford). 2014;16:1074–82.CrossRef Groot Koerkamp B, Wiggers JK, Allen PJ, Busch ORC, D’Angelica MI, DeMatteo RP, et al. American joint committee on Cancer staging for resected perihilar cholangiocarcinoma: a comparison of the 6th and 7th editions. HPB (Oxford). 2014;16:1074–82.CrossRef
7.
go back to reference Königsrainer A, Miller K, Steurer W, Kieselbach G, Aichberger C, Ofner D, et al. Does pancreas transplantation influence the course of diabetic retinopathy? Diabetologia. 1991;34:S86–8.CrossRef Königsrainer A, Miller K, Steurer W, Kieselbach G, Aichberger C, Ofner D, et al. Does pancreas transplantation influence the course of diabetic retinopathy? Diabetologia. 1991;34:S86–8.CrossRef
8.
go back to reference Fioretto P, Mauer M. Reversal of diabetic nephropathy: lessons from pancreas transplantation. J Nephrol. 2012;25:13–8.CrossRef Fioretto P, Mauer M. Reversal of diabetic nephropathy: lessons from pancreas transplantation. J Nephrol. 2012;25:13–8.CrossRef
9.
go back to reference Morrissey PE, Shaffer D, Monaco AP, Conway P, Madras PN. Peripheral vascular disease after kidney-pancreas transplantation in diabetic patients with end-stage renal disease. Arch Surg. 1997;132:358–61 –2.CrossRef Morrissey PE, Shaffer D, Monaco AP, Conway P, Madras PN. Peripheral vascular disease after kidney-pancreas transplantation in diabetic patients with end-stage renal disease. Arch Surg. 1997;132:358–61 –2.CrossRef
10.
go back to reference MacCraith E, Davis NF, Browne C, Mohan P, Hickey D. Simultaneous pancreas and kidney transplantation: incidence and risk factors for amputation after 10-year follow-up. Clin Transpl. 2017;31:1–7.CrossRef MacCraith E, Davis NF, Browne C, Mohan P, Hickey D. Simultaneous pancreas and kidney transplantation: incidence and risk factors for amputation after 10-year follow-up. Clin Transpl. 2017;31:1–7.CrossRef
11.
go back to reference Biesenbach G, Königsrainer A, Gross C, Margreiter R. Progression of macrovascular diseases is reduced in type 1 diabetic patients after more than 5 years successful combined pancreas-kidney transplantation in comparison to kidney transplantation alone. Transpl Int. 2005;18:1054–60.CrossRef Biesenbach G, Königsrainer A, Gross C, Margreiter R. Progression of macrovascular diseases is reduced in type 1 diabetic patients after more than 5 years successful combined pancreas-kidney transplantation in comparison to kidney transplantation alone. Transpl Int. 2005;18:1054–60.CrossRef
12.
go back to reference Biesenbach G, Margreiter R, Königsrainer A, Bösmüller C, Janko O, Brücke P, Gross C, Zazgornik J. Comparison of progression of macrovascular diseases after kidney or pancreas and kidney transplantation in diabetic patients with end-stage renal disease. Diabetologia. 2000;43:231–4.CrossRef Biesenbach G, Margreiter R, Königsrainer A, Bösmüller C, Janko O, Brücke P, Gross C, Zazgornik J. Comparison of progression of macrovascular diseases after kidney or pancreas and kidney transplantation in diabetic patients with end-stage renal disease. Diabetologia. 2000;43:231–4.CrossRef
14.
go back to reference Ladurner R, Steurer W. Technik der Multiorganentnahme. Viszeralchirurgie. 2004;39:439–42.CrossRef Ladurner R, Steurer W. Technik der Multiorganentnahme. Viszeralchirurgie. 2004;39:439–42.CrossRef
15.
go back to reference Sollinger HW, Odorico JS, Knechtle SJ, D’Alessandro AM, Kalayoglu M, Pirsch JD. Experience with 500 simultaneous pancreas-kidney transplants. Ann Surg. 1998;228:284–96.CrossRef Sollinger HW, Odorico JS, Knechtle SJ, D’Alessandro AM, Kalayoglu M, Pirsch JD. Experience with 500 simultaneous pancreas-kidney transplants. Ann Surg. 1998;228:284–96.CrossRef
16.
go back to reference Dholakia S, Mittal S, Quiroga I, Gilbert J, Sharples EJ, Ploeg RJ, et al. Pancreas transplantation: past, present, future. Am J Med. 2016;129:667–73.CrossRef Dholakia S, Mittal S, Quiroga I, Gilbert J, Sharples EJ, Ploeg RJ, et al. Pancreas transplantation: past, present, future. Am J Med. 2016;129:667–73.CrossRef
17.
go back to reference Sollinger HW, Odorico JS, Becker YT, D’Alessandro AM, Pirsch JD. One thousand simultaneous pancreas-kidney transplants at a single center with 22-year follow-up. Ann Surg. 2009;250:618–30.PubMed Sollinger HW, Odorico JS, Becker YT, D’Alessandro AM, Pirsch JD. One thousand simultaneous pancreas-kidney transplants at a single center with 22-year follow-up. Ann Surg. 2009;250:618–30.PubMed
18.
go back to reference Jukema JW, Smets YFC, van der Pijl JW, Zwinderman AH, Vliegen HW, Ringers J, et al. Impact of simultaneous pancreas and kidney transplantation on progression of coronary atherosclerosis in patients with end-stage renal failure due to type 1 diabetes. Diabetes Care. 2002;25:906–11.CrossRef Jukema JW, Smets YFC, van der Pijl JW, Zwinderman AH, Vliegen HW, Ringers J, et al. Impact of simultaneous pancreas and kidney transplantation on progression of coronary atherosclerosis in patients with end-stage renal failure due to type 1 diabetes. Diabetes Care. 2002;25:906–11.CrossRef
19.
go back to reference Sung RS, Zhang M, Schaubel DE, Shu X, Magee JC. A reassessment of the survival advantage of simultaneous kidney-pancreas versus kidney-alone transplantation. Transplantation. 2015;99:1900–6.CrossRef Sung RS, Zhang M, Schaubel DE, Shu X, Magee JC. A reassessment of the survival advantage of simultaneous kidney-pancreas versus kidney-alone transplantation. Transplantation. 2015;99:1900–6.CrossRef
20.
go back to reference Foley RN, Parfrey PS, Sarnak MJ. Clinical epidemiology of cardiovascular disease in chronic renal disease. Am J Kidney Dis. 1998;32(5 Suppl 3):S112–9.CrossRef Foley RN, Parfrey PS, Sarnak MJ. Clinical epidemiology of cardiovascular disease in chronic renal disease. Am J Kidney Dis. 1998;32(5 Suppl 3):S112–9.CrossRef
21.
go back to reference Sarnak MJ, Levey AS, Schoolwerth AC, Coresh J, Culleton B, Hamm LL, et al. American Heart Association councils on kidney in cardiovascular disease, high blood pressure research, clinical cardiology and E and P: kidney disease as a risk factor for development of cardiovascular disease: a statement from the American Heart Association councils on kidney in cardiovascular disease, high blood pressure research, clinical cardiology, and epidemiology and prevention. Hypertens. 2003;42:1050–65.CrossRef Sarnak MJ, Levey AS, Schoolwerth AC, Coresh J, Culleton B, Hamm LL, et al. American Heart Association councils on kidney in cardiovascular disease, high blood pressure research, clinical cardiology and E and P: kidney disease as a risk factor for development of cardiovascular disease: a statement from the American Heart Association councils on kidney in cardiovascular disease, high blood pressure research, clinical cardiology, and epidemiology and prevention. Hypertens. 2003;42:1050–65.CrossRef
22.
go back to reference Lewis JR, Wong G, Taverniti A, Vucak-Dzumhur M, Elder GJ. Association between aortic calcification, cardiovascular events, and mortality in kidney and pancreas-kidney transplant recipients. Am J Nephrol. 2019;50:1–10.CrossRef Lewis JR, Wong G, Taverniti A, Vucak-Dzumhur M, Elder GJ. Association between aortic calcification, cardiovascular events, and mortality in kidney and pancreas-kidney transplant recipients. Am J Nephrol. 2019;50:1–10.CrossRef
23.
go back to reference Fowkes FGR, Rudan D, Rudan I, Aboyans V, Denenberg JO, McDermott MM, et al. Comparison of global estimates of prevalence and risk factors for peripheral artery disease in 2000 and 2010: a systematic review and analysis. Lancet (London, England). 2013;382:1329–40.CrossRef Fowkes FGR, Rudan D, Rudan I, Aboyans V, Denenberg JO, McDermott MM, et al. Comparison of global estimates of prevalence and risk factors for peripheral artery disease in 2000 and 2010: a systematic review and analysis. Lancet (London, England). 2013;382:1329–40.CrossRef
24.
go back to reference Norgren L, Hiatt WR, Dormandy JA, Nehler MR, Harris KA, Fowkes FGR, et al. Inter-Society Consensus for the Management of Peripheral Arterial Disease (TASC II). J Vasc Surg. 2007;45(Suppl S):S5–67.CrossRef Norgren L, Hiatt WR, Dormandy JA, Nehler MR, Harris KA, Fowkes FGR, et al. Inter-Society Consensus for the Management of Peripheral Arterial Disease (TASC II). J Vasc Surg. 2007;45(Suppl S):S5–67.CrossRef
25.
go back to reference Woeste G, Wullstein C, Pridöhl O, Lübke P, Schwarz R, Kohlhaw K, et al. Incidence of minor and major amputations after pancreas/kidney transplantation. Transpl Int. 2003;16:128–32.CrossRef Woeste G, Wullstein C, Pridöhl O, Lübke P, Schwarz R, Kohlhaw K, et al. Incidence of minor and major amputations after pancreas/kidney transplantation. Transpl Int. 2003;16:128–32.CrossRef
26.
go back to reference Stout RW. Insulin and atheroma. 20-yr perspective. Diabetes Care. 1990;13:631–54.CrossRef Stout RW. Insulin and atheroma. 20-yr perspective. Diabetes Care. 1990;13:631–54.CrossRef
27.
go back to reference Gaber AO, Shokouh-Amiri MH, Hathaway DK, Hammontree L, Kitabchi AE, Gaber LW, et al. Results of pancreas transplantation with portal venous and enteric drainage. Ann Surg. 1995;221:613–22 –4.CrossRef Gaber AO, Shokouh-Amiri MH, Hathaway DK, Hammontree L, Kitabchi AE, Gaber LW, et al. Results of pancreas transplantation with portal venous and enteric drainage. Ann Surg. 1995;221:613–22 –4.CrossRef
28.
go back to reference American Diabetes Association. Peripheral arterial disease in people with diabetes. Diabetes Care. 2003;26:3333–41.CrossRef American Diabetes Association. Peripheral arterial disease in people with diabetes. Diabetes Care. 2003;26:3333–41.CrossRef
29.
go back to reference Sucher R, Hautz T, Mohr E, Mackowitz M, Mellitzer V, Steger C, et al. Sodium sulfite exacerbates allograft vasculopathy and affects tryptophan breakdown in murine heterotopic aortic transplantation. Oxidative Med Cell Longev. 2019;2019:8461048.CrossRef Sucher R, Hautz T, Mohr E, Mackowitz M, Mellitzer V, Steger C, et al. Sodium sulfite exacerbates allograft vasculopathy and affects tryptophan breakdown in murine heterotopic aortic transplantation. Oxidative Med Cell Longev. 2019;2019:8461048.CrossRef
30.
go back to reference Waller JR, Brook NR, Bicknell GR, Nicholson ML. Differential effects of modern immunosuppressive agents on the development of intimal hyperplasia. Transpl Int. 2004;17:9–14.CrossRef Waller JR, Brook NR, Bicknell GR, Nicholson ML. Differential effects of modern immunosuppressive agents on the development of intimal hyperplasia. Transpl Int. 2004;17:9–14.CrossRef
Metadata
Title
Effects of simultaneous pancreas-kidney transplantation and kidney transplantation alone on the outcome of peripheral vascular diseases
Authors
Robert Sucher
Sebastian Rademacher
Nora Jahn
Max Brunotte
Tristan Wagner
Athanasios Alvanos
Elisabeth Sucher
Daniel Seehofer
Uwe Scheuermann
Hans-Michael Hau
Publication date
01-12-2019

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