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首页> 外文期刊>Nanoscale >Potential use of bioactive nanofibrous dural substitutes with controlled release of IGF-1 for neuroprotection after traumatic brain injury
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Potential use of bioactive nanofibrous dural substitutes with controlled release of IGF-1 for neuroprotection after traumatic brain injury

机译:具有生物活性的纳米纤维硬脑膜替代品与 IGF-1 的控制释放在创伤性脑损伤后的神经保护中的潜在用途

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摘要

For patients suffering from traumatic brain injury (TBI), the closure of dural defects after decompressive craniectomy is the prerequisite to restoring normal physiological functions. It is also an urgent challenge to provide a neuroprotection effect against the primary and secondary nerve damage during long-term recovery. To solve these issues, we herein develop a class of bioactive, nanofibrous dural substitutes that can long-term release insulin-like growth factor 1 (IGF-1) for improving the survival and neurite outgrowth of neural cells after TBI. Such dural substitutes were polycaprolactone (PCL) nanofibers encapsulated with hyaluronic acid methacryloyl (HAMA)/IGF-1 by blend or coaxial electrospinning techniques, achieving bioactive PCL/HAMA/IGF nanofibrous dural substitutes with different release profiles of IGF-1. The nanofibrous dural substitutes exhibited good mechanical properties and hydrophobicity, which prevent cerebrospinal fluid leakage, maintain normal intracranial pressure, and avoid external impact on the brain. We also found that the viability and neurite outgrowth of SH-SY5Y cells and primary neurons were significantly enhanced after neurite transection or oxygen and glucose deprivation treatment. Taken together, such PCL/HAMA/IGF nanofibrous dural substitutes hold promising potential to provide neuroprotection effects after primary and secondary nerve damage in TBI, which would bring significant benefits to the field of neurosurgery involving the use of artificial dura mater.
机译:从创伤性脑损伤患者硬脑(脊)膜(创伤性脑损伤),关闭后得到颅骨切除术是先决条件恢复正常的生理功能。还提供一种迫切的挑战对主和神经保护作用二次在长期的神经损伤恢复。为了解决这些问题,我们在此开发一个类生物活性,nanofibrous硬脑膜的替代品可以长期释放胰岛素样生长因子1 (igf - 1)为提高生存和神经突创伤性脑损伤后的神经细胞。替代品是聚已酸内酯(PCL)与透明质酸纳米纤维封装甲基丙烯酰氯(HAMA) / igf - 1混合或同轴电纺的技术,实现生物活性PCL /哈马/ IGF nanofibrous硬脑膜的替代品igf - 1的不同发布概要文件。nanofibrous硬铝替代良好的展出机械性能和疏水性防止脑脊液漏,维护正常的颅内压,避免外部对大脑的影响。生存能力和神经突SH-SY5Y细胞的产物和初级神经元明显增强后神经突横断或氧气和葡萄糖剥夺治疗。PCL /哈马/ IGF nanofibrous硬脑膜的替代品有前途的潜在提供神经保护主要和次要神经损伤后的效果在创伤性脑损伤,这将带来显著的好处神经外科领域涉及的使用人工硬脑膜。

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