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Renal Allograft Rejection: Noninvasive Ultrasound- and MRI-Based Diagnostics

机译:肾移植排斥反应:基于超声和MRI的无创诊断

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摘要

To date, allogeneic kidney transplantation remains the best available therapeutic option for patients with end-stage renal disease regarding overall survival and quality of life. Despite the advancements in immunosuppressive drugs and protocols, episodes of acute allograft rejection, a sterile inflammatory process, continue to endanger allograft survival. Since effective treatment for acute rejection episodes is available, instant diagnosis of this potentially reversible graft injury is imperative. Although histological examination by invasive core needle biopsy of the graft remains the gold standard for the diagnosis of ongoing rejection, it is always associated with the risk of causing substantial graft injury as a result of the biopsy procedure itself. At the same time, biopsies are not immediately feasible for a considerable number of patients taking anticoagulants due to the high risk of complications such as bleeding and uneven distribution of pathological changes within the graft. This can result in the wrong diagnosis due to the small size of the tissue sample taken. Therefore, there is a need for a tool that overcomes these problems by being noninvasive and capable of assessing the whole organ at the same time for specific and fast detection of acute allograft rejection. In this article, we review current state-of-the-art approaches for noninvasive diagnostics of acute renal transplant inflammation, i.e., rejection. We especially focus on nonradiation-based methods using magnetic resonance imaging (MRI) and ultrasound.
机译:迄今为止,就整体生存率和生活质量而言,同种异体肾移植仍是终末期肾脏疾病患者的最佳可用治疗选择。尽管免疫抑制药物和方案有所进步,急性同种异体移植排斥反应(一种无菌的炎症过程)继续危及同种异体移植物的存活。由于可获得有效的急性排斥反应治疗方法,因此必须立即诊断这种潜在可逆的移植物损伤。尽管通过侵入性芯针活检对移植物进行组织学检查仍是诊断持续排斥的金标准,但由于活检过程本身,它总是与造成实质性移植物损伤的风险相关。同时,由于大量并发症(如出血和移植物中病理变化的不均匀分布)的风险很高,因此活检对于大量服用抗凝剂的患者而言并非立即可行。由于所取组织样本的尺寸小,可能导致错误的诊断。因此,需要一种通过无创且能够同时评估整个器官以特异性和快速检测急性同种异体移植排斥力来克服这些问题的工具。在本文中,我们回顾了用于急性肾移植炎症即排斥反应的非侵入性诊断的最新技术。我们特别关注使用磁共振成像(MRI)和超声的基于非辐射的方法。

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