Skip to content

Erythropoietin (EPO) and Ischemia-reperfusion After Kidney Transplantation

Effect of Erythropoietin on Renal Function After Kidney Transplantation

Status
Completed
Phases
Phase 2Phase 3
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00425698
Enrollment
88
Registered
2007-01-23
Start date
2007-02-28
Completion date
2009-11-30
Last updated
2010-09-28

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Kidney Transplantation

Brief summary

The hematopoetic cytokine erythropoietin (EPO) has been shown to reduce programmed cell death and tissue destruction in experimental models of acute kidney ischemia-reperfusion injury. Thus, treatment with high dose recombinant human EPO (rHuEPO) may prevent kidney tissue damage and loss of renal function after successful kidney transplantation in humans.

Detailed description

Erythropoietin (EPO) has pleiotropic effects well beyond the maintenance of red blood cell mass. In the embryo, EPO is a major regulator of vascular formation and organ growth, and EPO receptors are found in almost every embryonic tissue. EPO receptors also exist in many adult tissues including renal tissue, and even the notion of autocrine or paracrine EPO systems has been raised. Although the peritubular fibroblasts are the major adult site for EPO production, EPO receptors have been demonstrated in many kidney cell types, e.g. proximal tubule epithelial cells, mesangial cells, and the glomerulus. Moreover, EPO has important cytoprotective effects on various cell lines and organs, and protection from ischemic injury and inhibition of apoptotic death-related pathways has been reported in brain, heart and renal tissue. The intracellular pathways involved in these favourable EPO effects may involve nuclear translocation of the transcription factor NF- B, JAK2 phosphorylation and phosphorylation of Akt (protein kinase B). A recent experimental study revealed that cobalt administration to rats caused up-regulation of EPO, and diminished the degree of renal injury caused by ischemia-reperfusion (I/R), suggesting that EPO may also play an important role in renal ischemic preconditioning. Indeed, subsequent studies from different laboratories demonstrated that preconditioning with recombinant human EPO (rHuEPO) is protective against I/R injury in rodents. In this respect data on specific protective effects of rHuEPO and its analogues on endothelial cells of glomeruli are of particular interest. Furthermore, administration of rHuEPO may not have only protective effects on the vascular level, but also potential of regeneration, since EPO also stimulates proliferation and differentiation of regenerative cells such as endothelial progenitor cells (EPCs). Renal ischemia, whether caused by shock or after surgery, is a major cause of acute renal failure (ARF) in man. In this respect kidney transplantation is a classical model of ARF due to I/R injury, since the transplanted organ is connected to the recipients blood supply usually after several hours of cold ischemia. Although reperfusion is essential for the survival of ischemic tissue, it also initiates a complex and interrelated sequence of events that results in injury and the eventual death of renal cells as a result of a combination of both apoptosis and necrosis. Apoptotic cell death has been documented in human biopsies after renal I/R, and inhibition of apoptotic signalling and cell death ameliorates the associated injury and inflammation in an experimental model of ischemic ARF. Similarly, I/R damage of transplanted kidney is thought to be a major factor limiting renal function after successful transplantation.

Interventions

DRUGRecombinant erythropoietin alpha (rHuEPO alpha)

Erythropoietin alpha 3 x 40.000 IU intraarterial or intravenous within 7 days after cadaveric kidney transplantation

DRUGPlacebo

Placebo 3x IU intraarterial or intravenous within 7 days after cadaveric kidney transplantation

Sponsors

Hannover Medical School
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
DOUBLE (Subject, Investigator)

Eligibility

Sex/Gender
ALL
Age
18 Years to 70 Years
Healthy volunteers
No

Inclusion criteria

1. Signed written informed consent 2. Male or female aged 18 to 70 years without restricted legal competence and being able to follow the trial instructions 3. Cadaveric renal transplant, cold ischemia time below 24 h, and standard immunosuppressive regimen 4. A haemoglobin level \> 8 and \< 14 g/dl 5. Treatment with standard immunosuppression (steroids, cyclosporine A, tacrolimus, MMF or azathioprine) 6. In patient with diabetes mellitus HbA1c \< 9%

Exclusion criteria

1. Previous or current myelodysplastic or -proliferative disorders 2. History of cancer within the last 5 years. 3. Systemic chemotherapy or radiotherapy 4. Higher degree renal anemia or persistent Hb \> 14 g/dl 5. Treatment with other stem cell growth factors cells like GM-CSF, VEGF 6. Bleeding episodes within 3 month prior transplantation 7. Sitting diastolic BP \> 110 mmHg or sitting systolic BP \> 170 mmHg 8. Known intolerance of rHuEpo or analogs 9. Cardiovascular event within 6 months prior transplantation 10. Thromboembolic event within 6 months prior transplantation 11. Relevant stenosis of extra- and intracranial, and peripheral arteries 12. Systemic diseases (SLE or vasculitis) 13. Acute or chronic infection and/or CRP \> 10 mg/l prior transplantation 14. Hemolysis or disorders of blood formation (e.g., thalassemia) 15. Further organ transplants or combined organ transplantation 16. Pregnancy or inadequate contraception 17. Psychiatric or emotional problems, or chronic seizures 18. Unwillingness to participate satisfactorily for the entire trial period 19. Participation in a clinical trial within 30 days prior to study inclusion

Design outcomes

Primary

MeasureTime frameDescription
Kidney Graft Function by Estimated Glomerular Filtration Rate (eGFR)42 days after transplantationEstimated glomerular filtration rate (eGFR) was assessed using the CKD-EPI (Chronic Kidney Disease Epidemiology Collaboration)equation

Secondary

MeasureTime frameDescription
Kidney Graft Function by Estimated Glomerular Filtration Rate (eGFR)6 month after transplantationEstimated glomerular filtration rate (eGFR) was assessed using the CKD-EPI (Chronic Kidney Disease Epidemiology Collaboration)equation

Countries

Germany

Participant flow

Recruitment details

February 2007 until May 2009. Single recruitment site was the Hannover Medical School in Hannover, Germany

Pre-assignment details

420 patients screened, 88 patients finally enrolled, other patients not enrolled because of age\<18 years, living-related kidney transplantation, high pre-immunisation, multiple transplantation, participation in other studies, no interest for participation or withdraw of consent

Participants by arm

ArmCount
Erythropoietin44
Placebo44
Total88

Withdrawals & dropouts

PeriodReasonFG000FG001
Overall StudyAdverse Event31
Overall StudyWithdrawal by Subject01

Baseline characteristics

CharacteristicPlaceboErythropoietinTotal
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
0 Participants0 Participants0 Participants
Age, Categorical
Between 18 and 65 years
44 Participants44 Participants88 Participants
Age Continuous50 years
STANDARD_DEVIATION 2
54 years
STANDARD_DEVIATION 2
52 years
STANDARD_DEVIATION 2
Region of Enrollment
Germany
44 participants44 participants88 participants
Sex: Female, Male
Female
18 Participants19 Participants37 Participants
Sex: Female, Male
Male
26 Participants25 Participants51 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
— / —— / —
other
Total, other adverse events
0 / 440 / 44
serious
Total, serious adverse events
3 / 441 / 44

Outcome results

Primary

Kidney Graft Function by Estimated Glomerular Filtration Rate (eGFR)

Estimated glomerular filtration rate (eGFR) was assessed using the CKD-EPI (Chronic Kidney Disease Epidemiology Collaboration)equation

Time frame: 42 days after transplantation

ArmMeasureValue (MEAN)Dispersion
ErythropoietinKidney Graft Function by Estimated Glomerular Filtration Rate (eGFR)47 ml/minStandard Deviation 28
PlaceboKidney Graft Function by Estimated Glomerular Filtration Rate (eGFR)46 ml/minStandard Deviation 22
Comparison: Null hypothesis: Erythopoietin significantly improves kidney graft function. Power calculation: with a difference of at least 4 mL/min in mean eGFR between groups the number of patients enrolled per group (at least 41) would allowed the detection of a significant difference between groups at a 5% level (p\<0.05)p-value: <0.05t-test, 2 sided
Secondary

Kidney Graft Function by Estimated Glomerular Filtration Rate (eGFR)

Estimated glomerular filtration rate (eGFR) was assessed using the CKD-EPI (Chronic Kidney Disease Epidemiology Collaboration)equation

Time frame: 6 month after transplantation

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026