Rusinova T V, Melkonyan K I, Vinogradov R A, Asyakina A S, Knyshova S A
Kuban State Medical University, Ministry of Health of the Russian Federation, Krasnodar, Russia.
Bull Exp Biol Med. 2024 Nov;178(1):101-104. doi: 10.1007/s10517-024-06290-x. Epub 2024 Nov 22.
The problem with modern nerve conduits is inability to transmit nerve impulses to the distal part of the damaged nerve. Cationic conductivity is a necessary characteristic of the nerve conduit ensuring effective regeneration of the peripheral nerves. We performed a functional assessment of the regeneration of rat sciatic nerve using a nerve conduit based on an ion-exchange membrane. A sciatic nerve defect was experimentally simulated in Wistar rats with further implantation of the LF-4SK membrane. On days 60 and 90 after surgery, the sciatic functional index and the ratio of the shin girth of the operated limb to the intact limb were calculated; on day 90, an electrophysiological assessment of nerve recovery was carried out. The results of the study showed that the conduit based on the LF-4SK membrane optimizes the functional recovery of the sciatic nerve defect.
现代神经导管的问题在于无法将神经冲动传递到受损神经的远端。阳离子传导性是神经导管的必要特性,可确保周围神经的有效再生。我们使用基于离子交换膜的神经导管对大鼠坐骨神经再生进行了功能评估。在Wistar大鼠中通过实验模拟坐骨神经缺损,并进一步植入LF-4SK膜。在术后第60天和第90天,计算坐骨神经功能指数以及手术侧肢体与未手术侧肢体的小腿周长比;在第90天,对神经恢复情况进行电生理评估。研究结果表明,基于LF-4SK膜的导管可优化坐骨神经缺损的功能恢复。