Ron Tomer, Leon Avi, Kafri Alon, Ashraf Ahmed, Na John, Babu Ashvin, Banerjee Runima, Brookbank Hunter, Muddaluri Saimahesh Raju, Little Kevin J, Aghion Eli, Pixley Sarah
Department of Materials Engineering, Ben-Gurion University of the Negev, Beer-Sheva 8410501, Israel.
Nuclear Research Centre-Negev, Beer-Sheva 84190, Israel.
Pharmaceutics. 2023 Nov 7;15(11):2595. doi: 10.3390/pharmaceutics15112595.
Peripheral nerve damage that results in lost segments requires surgery, but currently available hollow scaffolds have limitations that could be overcome by adding internal guidance support. A novel solution is to use filaments of absorbable metals to supply physical support and guidance for nerve regeneration that then safely disappear from the body. Previously, we showed that thin filaments of magnesium metal (Mg) would support nerve regeneration. Here, we tested another absorbable metal, zinc (Zn), using a proprietary zinc alloy with 2% iron (Zn-2%Fe) that was designed to overcome the limitations of both Mg and pure Zn metal. Non-critical-sized gaps in adult rat sciatic nerves were repaired with silicone conduits plus single filaments of Zn-2%Fe, Mg, or no metal, with autografts as controls. After seventeen weeks, all groups showed equal recovery of function and axonal density at the distal end of the conduit. The Zn alloy group showed some improvements in early rat health and recovery of function. The alloy had a greater local accumulation of degradation products and inflammatory cells than Mg; however, both metals had an equally thin capsule (no difference in tissue irritation) and no toxicity or inflammation in neighboring nerve tissues. Therefore, Zn-2%Fe, like Mg, is biocompatible and has great potential for use in nervous tissue regeneration and repair.
导致神经节段缺失的周围神经损伤需要进行手术,但目前可用的中空支架存在局限性,通过添加内部引导支持可以克服这些局限性。一种新的解决方案是使用可吸收金属细丝为神经再生提供物理支持和引导,然后这些细丝会安全地从体内消失。此前,我们表明镁金属(Mg)细丝能够支持神经再生。在此,我们测试了另一种可吸收金属——锌(Zn),使用一种含2%铁的专利锌合金(Zn-2%Fe),该合金旨在克服Mg和纯Zn金属的局限性。用硅酮导管加单根Zn-2%Fe细丝、Mg细丝或不添加金属细丝修复成年大鼠坐骨神经的非临界尺寸间隙,并以自体移植作为对照。十七周后,所有组在导管远端的功能恢复和轴突密度方面表现相当。锌合金组在大鼠早期健康和功能恢复方面有一些改善。该合金的降解产物和炎性细胞在局部的积累比Mg更多;然而,两种金属都有同样薄的包膜(组织刺激无差异),并且对邻近神经组织无毒性或炎症。因此,Zn-2%Fe与Mg一样具有生物相容性,在神经组织再生和修复方面具有巨大的应用潜力。