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体外分析脉冲激光溶栓的机制。

In vitro analysis of mechanism of pulsed-laser thrombolysis.

机构信息

Central Research Laboratory, Hamamatsu Photonics K.K., Hamamatsu City, Shizuoka-Pref., Japan.

Department of Pharmacology, Hamamatsu University School of Medicine, Hamamatsu City, Shizuoka-Pref., Japan.

出版信息

PLoS One. 2022 Jan 27;17(1):e0262991. doi: 10.1371/journal.pone.0262991. eCollection 2022.

Abstract

Thrombolytic therapy in the treatment of cardiogenic acute cerebral embolism caused by coagulated blood carries the risk of hemorrhagic complications, and there is a need to develop safer and more reliable treatment methods. Laser thrombolysis therapy, which utilizes the difference in energy absorption between the thrombus and the arterial wall, has shown promise as a new treatment method because it can selectively act only on the thrombus. It has not been applied clinically, however, and one of the main reasons for this is that its underlying mechanism has not been elucidated. We developed a pulse laser thrombolysis system for treating cerebral blood vessels that consists of a diode-pumped solid-state neodymium-yttrium aluminum garnet laser, which has excellent stability and maintainability and is suitable for clinical applications coupled to a small-diameter optical fiber. Moreover, we analyzed the mechanisms that occur during pulsed laser irradiation of transparent glass tubes and gelatin phantoms. We found that bubbles form as a thermal effect in addition to ablation of the pulsed laser irradiation. Furthermore, we detected no shock waves or water jets associated with the bubbles. We analyzed the bubbles' dynamics and growth rate, and their effect on a rabbit blood clot phantom. We concluded that the bubbles generated by the laser irradiation physically cut the thrombus and thereby had a thrombectomy effect. We believe that this study will clarify the mechanism of laser thrombolysis therapy and contribute greatly to the realization of its clinical application.

摘要

溶栓治疗在治疗由凝血引起的心源性急性脑栓塞时存在出血并发症的风险,因此需要开发更安全、更可靠的治疗方法。激光溶栓治疗利用血栓和动脉壁之间的能量吸收差异,作为一种新的治疗方法具有很大的潜力,因为它可以选择性地仅作用于血栓。然而,它尚未在临床上应用,其中一个主要原因是其潜在机制尚未阐明。我们开发了一种用于治疗脑血管的脉冲激光溶栓系统,该系统由二极管泵浦固体钕铝石榴石激光器组成,具有出色的稳定性和可维护性,适合与小直径光纤耦合,用于临床应用。此外,我们分析了在透明玻璃管和明胶模型中进行脉冲激光照射时发生的机制。我们发现,除了脉冲激光照射的烧蚀之外,还会产生热效应形成气泡。此外,我们没有检测到与气泡相关的冲击波或水流。我们分析了气泡的动力学和增长率,以及它们对兔血凝块模型的影响。我们得出结论,激光照射产生的气泡物理上切断了血栓,从而具有血栓切除术的效果。我们相信,这项研究将阐明激光溶栓治疗的机制,并为其临床应用的实现做出巨大贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6283/8794104/1320bbda2407/pone.0262991.g001.jpg

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