Department of Gynecology, Rennes University Hospital, Hôpital Sud, France; Irset - Inserm UMR_S 1085, Rennes, France.
Department of Gynecology, Rennes University Hospital, Hôpital Sud, France.
Fertil Steril. 2023 Dec;120(6):1259-1261. doi: 10.1016/j.fertnstert.2023.08.020. Epub 2023 Sep 1.
To describe the feasibility of hypothermic machine perfusion (HMP) in uterus transplantation (UT) to potentially improve the preservation of the uterus and enhance graft preservation in the donation after brainstem death (DBD) context. Uterus transplantation is a new surgical approach to treating absolute uterine infertility; it can be performed after living donation or after DBD. In the DBD context, the uterus is typically the last organ removed after other vital organs, with the exception of the Baylor team, which removes the uterus first. This key aspect imposes an unavoidable mild temperature ischemia for >1 hour on the uterus during the removal of the vital abdominal and chest organs. In renal transplantation, the perfusion machine reduces the risk of delayed graft function; thus, we hypothesized that machine perfusion could result in a reduction of uterus graft dysfunction. The uterus graft dysfunction could be expressed by a low embryo implantation rate, pregnancy loss, or vascular pregnancy diseases such as preeclampsia or fetal growth restriction." To date, static cold storage of the uterus is the only standard method for preservation before transplantation. HMP is an emerging method that could potentially improve the preservation of the uterus to enhance graft preservation in the DBD context.
This video article shows all the technical details of using the HMP for uterine transplantation.
University.
Porcine model.
Porcine uterus was retrieved from a DBD domestic animal model and flushed with KPS MP (Bridge To Life Ltd in UK) at 4 °C. After vascular preparation on the back table, the uterus was perfused using KPS MP through a cannula in the aorta using the VitaSmart device (Bridge To Life Ltd in UK) for 18 hours. Then, the uterus was transplanted to the porcine recipient.
The macroscopic appearance of the uterus at the end of HMP and the assessment of the uterus vascularization after transplantation in the recipient compared with the native uterus.
This video shows the cannulation of the iliac vessels, cooling and removal of the uterus on a porcine model, uterus preservation using HMP during 18 hours, and then UT in a new recipient pig with the reperfusion of the transplanted uterus next to the native, intact uterus of the recipient. The macroscopic appearance of the uterus at the end of HMP appeared viable and was perfectly flushed. The assessment of the uterus vascularization after transplantation in the recipient was similar to that of the native uterus. To our knowledge, we describe here for the first time the UT procedure in DBD context on an animal model and the use of HMP for uterus preservation in UT programs; this could increase the number of uterine grafts available for a greater number of female recipients.
Hypothermic machine perfusion could allow the duration of cold ischemia to be prolonged without altering the uterine graft. Nevertheless, this assertion has to be validated in a human context.
描述低温机器灌注(HMP)在子宫移植(UT)中的可行性,以潜在改善子宫的保存,并增强脑死亡供体(DBD)背景下移植物的保存。子宫移植是治疗绝对子宫不孕的新手术方法;它可以在活体供体后或 DBD 后进行。在 DBD 背景下,子宫通常是在其他重要器官之后最后切除的器官,除了贝勒团队,他们首先切除子宫。这一关键方面在切除重要的腹部和胸部器官时,对子宫造成了超过 1 小时不可避免的轻微温度缺血。在肾移植中,灌注机会降低延迟移植物功能障碍的风险;因此,我们假设机器灌注可能会导致子宫移植物功能障碍的减少。子宫移植物功能障碍可以表现为胚胎着床率低、妊娠丢失或血管妊娠疾病,如子痫前期或胎儿生长受限。“迄今为止,子宫的静态冷藏是移植前唯一的标准保存方法。HMP 是一种新兴的方法,可能会改善子宫的保存,以增强 DBD 背景下的移植物保存。
本文视频文章展示了使用 HMP 进行子宫移植的所有技术细节。
大学。
猪模型。
从 DBD 家畜模型中取出猪子宫,在 4°C 下用 KPS MP(英国 Bridge To Life Ltd)冲洗。在后台进行血管准备后,使用 VitaSmart 设备(英国 Bridge To Life Ltd)通过主动脉中的套管将 KPS MP 灌注到子宫中 18 小时。然后,将子宫移植到猪受体中。
HMP 结束时子宫的宏观外观,以及与受体中原位子宫相比,移植后子宫血管化的评估。
本视频显示了在猪模型中进行髂血管插管、冷却和切除子宫、在 18 小时内使用 HMP 保存子宫,以及在新受体猪中进行 UT 后,将移植的子宫与受体中原位、完整的子宫相邻再灌注。HMP 结束时子宫的外观看起来具有活力,并且冲洗得非常干净。受体中子宫血管化的评估与原位子宫相似。据我们所知,我们在这里首次在动物模型上描述了 DBD 背景下的 UT 程序,以及 HMP 在 UT 项目中的应用,这可以增加子宫移植物的数量,以满足更多女性受体的需求。
低温机器灌注可以在不改变子宫移植物的情况下延长冷缺血时间。然而,这一说法必须在人体环境中得到验证。