Moinzadeh Alireza, Flacke Sebastian, Libertino John A, Merhige John, Vogel Jean-Marie, Lyall Katy, Bakal Curtis W, Madras Peter N
Lahey Clinic, Burlington and Pluromed, Inc., Woburn, Massachusetts 01805, USA.
J Urol. 2009 Oct;182(4):1582-7. doi: 10.1016/j.juro.2009.06.009. Epub 2009 Aug 15.
Renal vascular clamping with ensuing warm ischemia is typically needed during robotic or laparoscopic partial nephrectomy. We developed a technique for angiographic delivery of the novel intra-arterial reverse thermoplastic polymer LeGoo-XL that allows temporary selective vascular occlusion with normal perfusion of the remaining kidney.
Eight pigs underwent a total of 16 selective angiographic occlusions of the lower pole segmental artery using gel polymer. The technical feasibility of 2 hemostatic techniques, perfusion hemostasis and local plug formation, was assessed in 4 pigs each. Selective ischemia time was recorded and the vascular occlusion site was noted radiographically and laparoscopically. The feasibility of reversing the polymer from solid back to liquid state to allow reperfusion was determined. Pathological analysis of the kidney was completed in these acute model pigs. In the last 2 cases lower pole robotic partial nephrectomy was done using the da Vinci surgical system.
Selective lower pole ischemia was achieved in all 8 cases. Perfusion hemostasis yielded an inconsistent duration of occlusion (zero to greater than 60 minutes). Vascular occlusion time using local plug formation was more reliable (17 to 30 minutes) with consistent ability to reverse the plug to liquid state by cold saline flush. Two lower pole robotic partial nephrectomies were completed with minimal blood loss.
We developed a reliable technique of angiographic delivery of gel polymer for temporary vascular occlusion of selective renal artery branches using local plug formation. Ongoing studies are under way to assess technique consistency and the long-term effects of the polymer.
在机器人辅助或腹腔镜下部分肾切除术期间,通常需要进行肾血管夹闭并随之出现热缺血。我们开发了一种用于新型动脉内反向热塑性聚合物LeGoo-XL血管造影递送的技术,该技术可实现临时选择性血管闭塞,同时剩余肾脏保持正常灌注。
8头猪共接受了16次使用凝胶聚合物对下极节段动脉的选择性血管造影闭塞。在4头猪中分别评估了两种止血技术(灌注止血和局部栓塞形成)的技术可行性。记录选择性缺血时间,并通过影像学和腹腔镜检查记录血管闭塞部位。确定了将聚合物从固态恢复到液态以实现再灌注的可行性。对这些急性模型猪的肾脏进行了病理分析。在最后2例中,使用达芬奇手术系统进行了下极机器人辅助部分肾切除术。
所有8例均实现了选择性下极缺血。灌注止血产生的闭塞持续时间不一致(从零到超过60分钟)。使用局部栓塞形成的血管闭塞时间更可靠(17至30分钟),并且通过冷盐水冲洗能够一致地将栓塞恢复到液态。完成了2例下极机器人辅助部分肾切除术,失血极少。
我们开发了一种可靠的凝胶聚合物血管造影递送技术,用于通过局部栓塞形成对选择性肾动脉分支进行临时血管闭塞。正在进行研究以评估技术的一致性以及该聚合物的长期影响。