[Machine perfusion in transplantation surgery].

Chirurgie (Heidelberg, Germany) Pub Date : 2024-08-01 Epub Date: 2024-07-25 DOI:10.1007/s00104-024-02122-w
Felicia Kneifel, Florian Vondran, Thomas Vogel
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Abstract

The use of machine perfusion in solid organ transplantation has developed tremendously worldwide in recent years. Although the number of randomized controlled trials in the field of organ preservation is still limited, machine perfusion has been shown to be superior to static cold storage of donor organs. Various devices for clinical use with hypothermia or normothermia are already available for most organs. Whether and which perfusion strategy is superior to the others is the subject of current clinical research. This also applies to the further evaluation of possible synergistic effects in the sequential use of the various protocols. The common goal of all dynamic perfusion technologies is to optimize organ preservation between removal and transplantation. By testing the quality of marginal donor organs prior to transplantation, it should also be possible to use these organs without exposing the patient to increased risk. This can lead to a significant expansion of the donor pool. This is particularly important in Germany, where there is an ongoing shortage of organs and restrictive legislation regarding the expansion of the donor pool. Furthermore, the perfusion technology offers the possibility to serve as a platform for other ex situ and in situ therapies on isolated organs. In addition to the conditioning of pre-damaged organs for transplantation, this could lead to further applications in the context of targeted organ therapies and also to improved transplant logistics in the future.

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[移植手术中的机器灌注]。
近年来,机器灌注在实体器官移植中的应用在全球范围内得到了极大发展。虽然器官保存领域的随机对照试验数量仍然有限,但机器灌注已被证明优于捐赠器官的静态冷藏。目前,临床上已经可以使用各种低温或常温设备来保存大多数器官。灌注策略是否优于其他策略以及哪种策略优于其他策略是目前临床研究的主题。这也适用于进一步评估在连续使用各种方案时可能产生的协同效应。所有动态灌注技术的共同目标是优化器官摘除和移植之间的保存。通过在移植前检测边缘捐献器官的质量,还可以在不增加患者风险的情况下使用这些器官。这将大大扩充供体库。这一点在德国尤为重要,因为德国一直存在器官短缺的问题,而且在扩大供体库方面存在限制性立法。此外,灌注技术还可以作为对离体器官进行其他原位和就地治疗的平台。除了为移植手术调节受损前的器官外,这还能进一步应用于器官靶向治疗,并在未来改善移植物流。
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