PRISM Research Institute, Technological University of the Shannon, Athlone N37 HD68, Ireland.
School of Science and Computing, Atlantic Technological University, Galway H91 T8NW, Ireland.
Int J Pharm. 2024 Aug 15;661:124477. doi: 10.1016/j.ijpharm.2024.124477. Epub 2024 Jul 14.
Peripheral nerve injuries, predominantly affecting individuals aged 20-40, pose significant healthcare challenges, with current surgical methods often failing to achieve complete functional recovery. This study focuses on the development of 3D printed hydrogel nerve conduits using modified hyaluronic acid (HA) for potentially enhancing peripheral nerve regeneration. Hyaluronic acid was chemically altered with cysteamine HCl and methacrylic anhydride to create thiolated HA (HA-SH) and methacrylated HA (HA-MA), achieving a modification degree of approximately 20 %. This modification was crucial to maintain the receptor interaction of HA. The modified HA was rigorously tested to ensure cytocompatibility in neuronal and glial cell lines. Subsequently, various 3D printed HA formulations were evaluated, focusing on improving HA's inherent mechanical weaknesses. These formulations were assessed for cytotoxicity through direct contact and elution extract testing, confirming their safety over a 24-h period. Among the neurotrophic compounds tested, Tyrosol emerged as the most effective in promoting Schwann cell proliferation in vitro. The 3D printed HA system demonstrated proficiency in loading and releasing Tyrosol at physiological pH. The findings from this research highlight the promising role of 3D printed HA and Tyrosol in the field of nerve tissue engineering, offering a novel approach to peripheral nerve regeneration.
周围神经损伤主要影响 20-40 岁的人群,给医疗保健带来了重大挑战,目前的手术方法往往无法实现完全的功能恢复。本研究专注于开发使用改性透明质酸(HA)的 3D 打印水凝胶神经导管,以期增强周围神经再生。用半胱胺盐酸盐和甲基丙烯酰酐对透明质酸进行化学修饰,分别得到巯基化透明质酸(HA-SH)和甲基丙烯酰化透明质酸(HA-MA),修饰度约为 20%。这种修饰对于维持透明质酸的受体相互作用至关重要。对改性透明质酸进行了严格的测试,以确保其在神经元和神经胶质细胞系中的细胞相容性。随后,评估了各种 3D 打印的 HA 配方,重点是改善 HA 固有的机械弱点。通过直接接触和洗脱提取物测试评估这些配方的细胞毒性,确认其在 24 小时内的安全性。在所测试的神经营养化合物中,酪醇在体外促进许旺细胞增殖方面最为有效。3D 打印的 HA 系统在生理 pH 值下显示出出色的酪醇负载和释放能力。这项研究的结果突出了 3D 打印的 HA 和酪醇在神经组织工程领域的应用前景,为周围神经再生提供了一种新方法。