Department of Physiology, Fasa University of Medical Sciences, Fasa, Iran.
Skull-Based Research Center, Five Senses Health Research Institute, School of Medicine, Iran University of Medical Sciences, Tehran, Iran.
J Mater Sci Mater Med. 2024 Jan 11;35(1):5. doi: 10.1007/s10856-023-06768-6.
Biodegradable microparticles are useful vehicles for the controlled release of bioactive molecules in drug delivery, tissue engineering and biopharmaceutical applications. We developed dexamethasone (Dex) encapsulation into tyramine-substituted hyaluronic acid microparticles (Dex-HA-Tyr Mp) mediated by horseradish peroxidase (HRP) crosslinking using a microfluidic device and infollowing crosslinked gelatin (Gela) with proanthocyanidin (PA) as a semi-confined bed hydrogel for the repair of sciatic tissue injury. It was found that the simultaneous use of Dex-HA-Tyr Mp and cross-linked Gela-PA hydrogel improved the physical properties of the hydrogel, including mechanical strength and degradability. The designed composite also provided a sustained release system for Dex delivery to the surrounding sites, demonstrating the applicability of the fabricated hydrogel composite for sciatic nerve tissue engineering and regeneration. The encapsulated cells were viable and showed adequate growth ability and morphogenesis during prolonged incubation in Gela-PA/HA-Tyr Mp hydrogel compared to control conditions. Interestingly, histological analysis revealed a significant increase in the number of axons in the injured sciatic nerve following treatment with Dex-HA-Tyr Mp and injectable Gela-PA hydrogel compared to other control groups. In conclusion, the results demonstrated that fabricated Dex-loaded MPs and injectable hydrogel from biomimetic components are suitable systems for sustained delivery of Dex with adequate biocompatibility and the approach may have potential therapeutic applications in peripheral nerve regeneration.
可生物降解的微球是药物传递、组织工程和生物制药应用中生物活性分子控制释放的有用载体。我们使用微流控装置开发了通过辣根过氧化物酶(HRP)交联将地塞米松(Dex)包封到漆胺取代的透明质酸微球(Dex-HA-Tyr Mp)中,并用原花青素(PA)交联的明胶(Gela)作为半约束床水凝胶用于修复坐骨组织损伤。结果发现,同时使用 Dex-HA-Tyr Mp 和交联的 Gela-PA 水凝胶改善了水凝胶的物理性质,包括机械强度和可降解性。设计的复合材料还为 Dex 向周围部位的递送提供了持续释放系统,证明了所制造的水凝胶复合材料在坐骨神经组织工程和再生中的适用性。与对照条件相比,在 Gela-PA/HA-Tyr Mp 水凝胶中孵育延长时间后,包封的细胞具有活力,并显示出足够的生长能力和形态发生。有趣的是,组织学分析显示,与其他对照组相比,用 Dex-HA-Tyr Mp 和可注射的 Gela-PA 水凝胶治疗后,损伤的坐骨神经中的轴突数量显着增加。总之,结果表明,由仿生成分制成的负载 Dex 的 MPs 和可注射水凝胶是具有足够生物相容性的 Dex 持续释放的合适系统,该方法可能在外周神经再生中有潜在的治疗应用。