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Preventive Fenestration With and Without Clipping in Kidney Transplantation

PREventive Effect of FENestration With and Without Clipping on Post-Kidney Transplantation Lymphatic Complications: PREFEN Trial

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03682627
Acronym
PREFEN
Enrollment
78
Registered
2018-09-24
Start date
2018-10-31
Completion date
2020-12-31
Last updated
2018-09-24

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

Conditions

Kidney Transplantation

Keywords

kidney transplantation, Lymphatic complications, preventive fenestration, clipping

Brief summary

Post-Kidney Transplantation Lymphatic complications include lymphorrhea and lymphocele, and are some of the most challenging issues after kidney transplantation. The most frequent post-Kidney transplantation complication is accumulation of perirenal fluids, such as urinomas, hematomas, and lymphoceles. Lymphoceles are associated with morbidities such as abdominal discomfort, impaired wound healing, and thrombosis. Lymphoceles may also affect graft function by putting direct pressure on the kidney, or by compressing the ureter or transplant vasculature. The frequency and consequences of post-transplantation lymphoceles make preventive measures highly desirable. Peritoneal fenestration during kidney Transplantation is a simple method for preventing lymphocele formation. Recent studies have evaluated the effectiveness of clipping with metallic clips following fenestration on lymphocele formation and lymph leakage after prostate cancer surgery and laparoscopic retroperitoneal lymph node dissection. However, whether clipping prevents lymphocele formation after kidney transplantation has not been investigated. The aim of the proposed study is to compare the effect of fenestration with and without clipping on incidence of post-kidney transplantation lymphocele and lymphorrhea.

Detailed description

Recent improvements in transplantation techniques, organ matching systems, and modern immunosuppressive regiments have made kidney transplantation a routine operation with acceptable mortality and morbidity rates. Post-kidney transplantation morbidities include vascular and urological complications, and postoperative fluid collections. Perirenal fluid collections, such as urinomas, hematomas, and lymphoceles, are some of most frequent complications following Kidney transplantation, among which post-Kidney transplantation lymphatic collections, are most challenging complications. The incidence of post-kidney transplantation lymphatic complications is up to 50% and the peak incidence of lymphocele is during the 6th postoperative week (range: 2 weeks to 6 months). Lymphoceles are usually asymptomatic and identified incidentally by routine ultrasound examination. However lymphoceles may result in morbidities such as abdominal discomfort, impaired wound healing, and thrombosis. Post-kidney transplantation lymphatic complications may also affect graft function by putting pressure on the kidney, or by compressing the ureter or transplant vasculature. The frequency and consequences of post-transplantation lymphoceles make preventive measures highly desirable. Various preventive methods have been proposed in the literature. Lymphoceles usually originate from unligated lymphatic vessels, therefore precise ligation of donor and recipient lymphatic vessels can reduce lymphocele formation. Compression therapy of the lower limb after kidney transplantation and appropriate immunosuppressive therapy may also reduce lymphocele formation. Some authors have used polymeric sealants/hemostatic biomaterials or povidone-iodine to prevent lymphocele formation. However, the effectiveness and cost-efficiency of these methods has not been conclusively proven. Use of drains in lymphocele prevention has also been previously suggested, but this method remains controversial. Peritoneal fenestration at the time of kidney transplantation is a simple method to prevent lymphocele formation. This method has been widely studied in treatment and prevention of lymphoceles following kidney transplantation. However, to the best of our knowledge, only one randomized controlled trial has been performed to investigate the impact of preventive fenestration in prevention of post kidney transplantation lymphatic complications. This study showed that the prevalence of fluid collections in the fifth postoperative week was significantly higher in the standard group compared to fenestration group. Also, 15.5% of patients in the standard group developed symptomatic lymphoceles requiring treatment during the first postoperative year, versus 3.0% in the fenestration group. Recent studies have evaluated the effectiveness of extensive clipping using metallic clips following fenestration on lymphocele formation and lymph leakage after prostate cancer surgery and laparoscopic retroperitoneal lymph node dissection. Some surgeons have declared concerns that larger fenestrations increase the risk of hernia. However, risk of closure of the peritoneal fenestration is higher for smaller Windows in the peritoneal cavity. Recently clipping of the edges of peritoneal fenestration was performed in the surgical clinic of the Heidelberg University Hospital to reduce risk of closure of the fenestration after kidney transplantation. However, whether fenestration and clipping prevents lymphocele formation after kidney transplantation has not been investigated. This clinical Trial is designed to investige the rate of post-kidney transplantation lymphocele and lymphorrhea in two groups of kidney transplantation patients: one with only fenestration and one with fenestration and clipping of the edges. Additionally, graft function and incidence rate of other morbidities will be investigated and analyzed after transplantation.

Interventions

PROCEDUREFenestration

A standardized fenestration of the peritoneum will be performed. A 2 cm incision will be made in the peritoneum that is parallel to the skin incision after the transplant procedure. The peritoneal will not be sutured at the edges to keep the fenestration open. No interpositioning of the omentum will be performed.

PROCEDUREFenestration and clipping

A standardized fenestration of the peritoneum will be performed. A 2 cm incision will be made in the peritoneum that is parallel to the skin incision after the transplant procedure. The window edges will be clipped after fenestration using 8 metal clips.

Sponsors

University Hospital Heidelberg
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
TRIPLE (Subject, Investigator, Outcomes Assessor)

Intervention model description

single intuition, double blinded, randomized clinical trial.

Eligibility

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

Inclusion criteria

* Age \> 18 years * Provide written informed consent * Recipients of KTx from deceased donors

Exclusion criteria

* Inability to comply with study and/or follow-up procedures * Recipients of KTx from living donors * Combined transplantation (e.g. pancreas-kidney transplantation)

Design outcomes

Primary

MeasureTime frameDescription
Post kidney transplantation lymphocele6 monthsFluid collection of variable size located near to the transplanted kidney in a non-epithelialized cavity. The possibility that the accumulation of fluid is a hematoma, abscess, and urinoma will be ruled out after aspiration of the fluid.

Secondary

MeasureTime frameDescription
Estimated blood loss1 dayBlood loss during operation from skin incision to skin closure (mL)
Length of hospital stay6 monthsFrom the time of the operation to time of discharge
Postoperative complications6 monthsPostoperative complications will be reported and classified according to the Clavien-Dindo classification.
Mortality90 daysDeath due to any cause.
Post Kidney transplantation fluid collection6 monthsFluid accumulation near to the transplanted kidney will be diagnosed by ultrasound as routine of the Heidelberg
Post Kidney transplantation lymphorrhea6 monthsDefined as an outflow of more than 50 (milileter) of fluid per day after the 7th post-KTx day. Fluid that flows from the drain, or the site of the removed drain, or surgical wound, which is not blood, pus, or urine will be monitored
Lymphocele size6 monthsLymphocele diameter and volume will be recorded by ultrasound examination in mL.
Lymphocele symptomes6 months
Operation time1 dayFrom skin incision to skin closure
Blood Urea Nitrogen Level6 monthsBlood Urea Nitrogen Level (mg/dL)
Plasma uric acid Level6 monthsPlasma uric acid Level (mg/dL)
Serum creatinine level6 monthsSerum creatinine level (mg/dL)
Rate of delayed graft function30 daysIs defined as the need for one or more hemodialysis treatments following transplantation prior to the onset of graft function.
Glomerular filtration rate6 monthsGFR (mL/min/1.73 m2) calculated with 175 × (Scr)-1.154 × (Age)-0.203 × (0.742 if female) Formula
Rate of primary non-function grafts30 daysnumber of recipients whose grafts never functions after transplantation
Retransplantion rate6 monthsRate of retransplantation
Lymphocele/lymphorrhea severity grade6 monthsSeverity of lymphocele/lymphorrhea will be graded based on the applied management strategy (Grade A: Observation, Grade B: Non-surgical intervention, Grade C: Surgery).

Countries

Germany

Contacts

Primary ContactArianeb Mehrabi, MD
arianeb.mehrabi@med.uni-heidelberg.de0049 - 6221 - 5636223

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 17, 2026