Russu Eliza, Arbanasi Emil-Marian, Chirila Traian V, Muresan Adrian V
Clinic of Vascular Surgery, Mures County Emergency Hospital, Targu Mures, Romania.
Department of Vascular Surgery, George Emil Palade University of Medicine, Pharmacy, Sciences and Technology of Targu Mures, Targu Mures, Romania.
Front Cardiovasc Med. 2024 Feb 5;11:1356671. doi: 10.3389/fcvm.2024.1356671. eCollection 2024.
We have reviewed the development and current status of therapies based on exposure to non-ionizing radiation (with a photon energy less than 10 eV) aimed at suppressing the venous neointimal hyperplasia, and consequentially at avoiding stenosis in arteriovenous grafts. Due to the drawbacks associated with the medical use of ionizing radiation, prominently the radiation-induced cardiovascular disease, the availability of procedures using non-ionizing radiation is becoming a noteworthy objective for the current research. Further, the focus of the review was the use of such procedures for improving the vascular access function and assuring the clinical success of arteriovenous fistulae in hemodialysis patients. Following a brief discussion of the physical principles underlying radiotherapy, the current methods based on non-ionizing radiation, either in use or under development, were described in detail. There are currently five such techniques, including photodynamic therapy (PDT), far-infrared therapy, photochemical tissue passivation (PTP), Alucent vascular scaffolding, and adventitial photocrosslinking. The last three are contingent on the mechanical stiffening achievable by the exogenous photochemical crosslinking of tissular collagen, a process that leads to the decrease of venous compliance. As there are conflicting opinions on the role of compliance mismatch between arterial and venous conduits in a graft, this aspect was also considered in our review.
我们回顾了基于非电离辐射(光子能量小于10 eV)的疗法的发展及现状,这些疗法旨在抑制静脉内膜增生,从而避免动静脉移植物出现狭窄。由于电离辐射在医学应用中存在诸多弊端,尤其是辐射诱发的心血管疾病,采用非电离辐射的治疗方法正成为当前研究的一个重要目标。此外,本综述的重点是利用此类方法改善血管通路功能,并确保血液透析患者动静脉内瘘的临床成功。在简要讨论放射治疗的物理原理之后,详细介绍了目前正在使用或研发的基于非电离辐射的方法。目前有五种此类技术,包括光动力疗法(PDT)、远红外疗法、光化学组织钝化(PTP)、Alucent血管支架和外膜光交联。后三种技术依赖于通过组织胶原蛋白的外源性光化学交联实现的机械硬化,这一过程会导致静脉顺应性降低。由于对于移植物中动静脉导管之间顺应性不匹配的作用存在相互矛盾的观点,我们在综述中也考虑了这一方面。