Acute transplantation of NPC on electrospun poly-lactic acid membranes containing curcumin into the injured spinal cord reduces neuronal degeneration

María del Mar Sánchez-Martín, Esther Giraldo, Fernando Gisbert Roca, Ana Alastrue-Agudo, Cristina Martínez-Ramos, Manuel Monleón Pradas, Victoria Moreno-Manzano
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Abstract

Effective spinal cord injury (SCI) treatment remains a significant challenge, given the complex nature of the primary injury and associated devastating loss of neural activity. Neural progenitor cell (NPC)-based therapy has emerged as a potent strategy for the treatment of SCI. However, the invasive nature of direct cell transplantation and the need to enhance graft integration into host tissue remain critical issues. We implemented an improved combinatorial approach to SCI treatment by functionalizing electrospun poly-lactic acid (PLA) membranes that support the sustained delivery of curcumin (PLA-curcumin) and act as a carrier for NPC for local transplantation. In vitro experiments demonstrate that curcumin prevents harmful oxidative and inflammatory stress by preventing death and inhibiting NF-κB activation (mimicked by treatment with hydrogen peroxide or lipopolysaccharide acid). Curcumin also enhances neurite-like outgrowth in NPC and cortical neurons in culture, which may enhance neural connectivity. In vivo transplantation of NPC on a PLA-curcumin electrospun membrane enables cell migration, reduces injured area size, and increases neuronal fiber preservation to induce a slowing of acute neural damage.
含姜黄素的聚乳酸电纺丝膜急性移植鼻咽癌损伤脊髓可减少神经元变性
考虑到原发损伤的复杂性和相关的破坏性神经活动丧失,有效的脊髓损伤治疗仍然是一个重大挑战。神经祖细胞(NPC)为基础的治疗已成为治疗脊髓损伤的有效策略。然而,直接细胞移植的侵入性和增强移植物与宿主组织融合的需要仍然是关键问题。我们通过功能化支持姜黄素(PLA-curcumin)持续递送的电纺丝聚乳酸(PLA)膜,并作为NPC局部移植的载体,实现了一种改进的SCI治疗组合方法。体外实验表明,姜黄素通过防止死亡和抑制NF-κB活化(与过氧化氢或脂多糖酸处理类似)来防止有害的氧化和炎症应激。姜黄素还能促进鼻咽癌神经突样生长和皮层神经元的培养,这可能增强神经连通性。将NPC在pla -姜黄素电纺丝膜上进行体内移植,可以促进细胞迁移,减少损伤区域大小,增加神经元纤维保存,从而减缓急性神经损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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