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光疗在周围神经再生中的应用:从基础科学到临床研究。

Phototherapy in peripheral nerve regeneration: From basic science to clinical study.

机构信息

Division of Peripheral Nerve Reconstruction, Department of Neurosurgery, Tel Aviv Sourasky Medical Center, Tel Aviv University, Tel Aviv, Israel.

出版信息

Neurosurg Focus. 2009 Feb;26(2):E8. doi: 10.3171/FOC.2009.26.2.E8.

Abstract

OBJECT

This review summarizes the continuous study of low-power laser radiation treatment of a severely injured peripheral nerve. Laser phototherapy was applied as a supportive factor for accelerating and enhancing axonal growth and regeneration after injury or a reconstructive peripheral nerve procedure. In nerve cell cultures, laser phototherapy was used to stimulate activation of nerve cells.

METHODS

Low-power laser radiation was used for treatment of peripheral nerve injury using a rat sciatic nerve model after crush injury, neurorrhaphy, or neurotube reconstruction. Nerve cell growth and axonal sprouting were investigated using laser phototherapy on embryonic rat brain cultures. The outcome in animal studies facilitated a clinical double-blind, placebo-controlled, randomized study that measured the effectiveness of 780-nm laser phototherapy on patients suffering from incomplete peripheral nerve injuries for 6 months to several years.

RESULTS

Animal studies showed that laser phototherapy has an immediate protective effect, maintains functional activity of the injured nerve, decreases scar tissue formation at the injury site, decreases degeneration in corresponding motor neurons of the spinal cord, and significantly increases axonal growth and myelinization. In cell cultures, laser irradiation accelerates migration, nerve cell growth, and fiber sprouting. A pilot clinical double-blind, placebocontrolled, randomized study showed that in patients with incomplete long-term peripheral nerve injury, 780-nm laser radiation can progressively improve peripheral nerve function, which leads to significant functional recovery.

CONCLUSIONS

Using 780-nm laser phototherapy accelerates and enhances axonal growth and regeneration after injury or a reconstructive peripheral nerve procedure. Laser activation of nerve cells, their growth, and axonal sprouting can be considered as potential treatment of neuronal injury. Animal and clinical studies show the promoting action of phototherapy on peripheral nerve regeneration, making it possible to suggest that the time for broader clinical trials has arrived.

摘要

目的

本文综述了低强度激光辐射治疗严重受损周围神经的持续研究。激光光疗被用作促进和增强损伤后或重建周围神经过程中轴突生长和再生的支持因素。在神经细胞培养中,激光光疗用于刺激神经细胞的激活。

方法

使用大鼠坐骨神经挤压伤、神经吻合或神经管重建模型,对周围神经损伤进行低强度激光辐射治疗。使用激光光疗对胚胎大鼠脑培养物中的神经细胞生长和轴突发芽进行研究。动物研究的结果促成了一项临床双盲、安慰剂对照、随机研究,该研究测量了 780nm 激光光疗对患有不完全周围神经损伤的患者长达 6 个月至数年的疗效。

结果

动物研究表明,激光光疗具有即时的保护作用,维持损伤神经的功能活性,减少损伤部位的瘢痕组织形成,减少脊髓相应运动神经元的退化,并显著增加轴突生长和髓鞘形成。在细胞培养中,激光照射加速了迁移、神经细胞生长和纤维发芽。一项初步的临床双盲、安慰剂对照、随机研究表明,在患有不完全长期周围神经损伤的患者中,780nm 激光辐射可逐渐改善周围神经功能,从而导致显著的功能恢复。

结论

使用 780nm 激光光疗可加速和增强损伤后或重建周围神经过程中的轴突生长和再生。激光激活神经细胞及其生长和轴突发芽可被视为潜在的神经元损伤治疗方法。动物和临床研究表明,光疗对周围神经再生具有促进作用,这使得更广泛的临床试验的时机已经成熟。

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