Cervical heterotopic kidney transplantation in rats using non-suturing and preserving-bag techniques.

Journal: Nephrology, Dialysis, Transplantation : Official Publication Of The European Dialysis And Transplant Association - European Renal Association
Published:
Abstract

Background: This study describes a simple and stable cervical heterotopic kidney transplantation method in rats that uses artery sleeve anastomosis, vein cuff anastomosis and preserving-bag techniques.

Methods: The donor graft, consisting of kidney, renal vein (RV), renal artery (RA) and a ureterocystic flap, was removed en bloc and perfused in situ. The donor RA was end-to-end anastomosed to the recipient left common carotid artery (CCA) using a sleeve anastomosis, and the donor RV was connected to the recipient right external jugular vein (EJV) using a cuff technique. During the vascular anastomosis, the kidney graft was placed in a lactated Ringer's solution ice-water preserving bag. The donor bladder patch was exteriorized to form cervical cutaneous stoma.

Results: A total of 104 heterotopic renal transplantations were performed, which included pre-experimental (62 operations) and experimental stages (42 operations). The success rates of the two stages were 80.6% and 95.2%, respectively. The time for surgery was 40 +/- 6 min, the average time for donor surgery was 20 +/- 5 min, the preparation time for the graft was 8 +/- 2 min, the operative time for the recipient was 18 +/- 3 min that included the time for the arterial anastomosis (5 +/- 2 min) and venous anastomosis (2 +/- 1 min), the cold ischaemic time of the graft was 15 +/- 3 min and the warm ischaemic time of the graft was 2 +/- 1 min.

Conclusions: We developed an easy and reliable model of cervical heterotopic kidney transplantation that may provide a useful tool for investigating kidney transplantation rejection and retransplantation pathology.

Authors
Liang Zhu, Dezheng Gong, Yuan Zou, Yousheng Li, Yunhong Wu, Lili Guan, Qiong Wu, Bo Yuan, Liming Wang, Fuwen Luo
Relevant Conditions

Kidney Transplant