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一种基于冷冻休克M2巨噬细胞的治疗策略,通过免疫调节和轴突再生作用促进脊髓损伤修复。

A cryo-shocked M2 macrophages based treatment strategy promoting repair of spinal cord injury via immunomodulation and axonal regeneration effects.

作者信息

Lu Ermei, Zhou Kecheng, Miao Jiansen, Zhu Yanlin, Tang Jiyao, Du Siting, Feng Yanzhen, Jiang Linyuan, Jiang Tianyao, Huang Ting, Li Ping, Miao Xinjun, Han Qi, Xiao Jian

机构信息

Department of Wound Healing, The First Affiliated Hospital of Wenzhou Medical University, Wenzhou, 325015, Zhejiang, China.

Oujiang Laboratory (Zhejiang Lab for Regenerative Medicine, Vision and Brain Health), School of Pharmaceutical Sciences, Wenzhou Medical University, Wenzhou, 325035, Zhejiang, China.

出版信息

J Nanobiotechnology. 2025 Jan 6;23(1):8. doi: 10.1186/s12951-024-03018-x.

Abstract

Recovery from spinal cord injury (SCI) is often impeded by neuroinflammation, scar formation, and limited axonal regeneration. To tackle these issues, we developed an innovative biomimetic drug delivery system using liquid nitrogen-treated M2 macrophages (LNT M2) which internalized paclitaxel (PTX) nanoparticles beforehand. These were incorporated into a gelatin methacryloyl (GelMA) scaffold, creating a multifunctional, injectable treatment for single-dose administration. The LNT M2 inherited the inflammatory factor/chemokine receptors from the living M2 macrophages and thus possessing significant inflammatory neutralizing effect. In addition, the scaffold provides slow, sustained release of PTX, promoting axonal regeneration and suppressing scar formation in SCI rats. The LNT M2-based dual-functional scaffold significantly enhances motor function, reduces neuroinflammation, and accelerates axonal regeneration by modulating the inflammatory microenvironment and preventing the formation of glial and fibrotic scars. This approach combines the regenerative effects of low-dose PTX with the immunoregulatory properties of LNT M2, leading to remarkable neurological recovery in SCI rats. Moreover, the scaffold's straightforward preparation, ease of standardization, and "ready-to-use" nature make it a promising candidate for acute SCI intervention and future clinical applications.

摘要

脊髓损伤(SCI)后的恢复常常受到神经炎症、瘢痕形成和轴突再生受限的阻碍。为了解决这些问题,我们开发了一种创新的仿生药物递送系统,该系统使用预先内化了紫杉醇(PTX)纳米颗粒的液氮处理的M2巨噬细胞(LNT M2)。这些细胞被整合到甲基丙烯酰化明胶(GelMA)支架中,形成一种用于单剂量给药的多功能可注射治疗方法。LNT M2继承了活M2巨噬细胞的炎性因子/趋化因子受体,因此具有显著的炎症中和作用。此外,该支架可使PTX缓慢、持续释放,促进SCI大鼠的轴突再生并抑制瘢痕形成。基于LNT M2的双功能支架通过调节炎症微环境和防止胶质瘢痕及纤维化瘢痕的形成,显著增强运动功能、减轻神经炎症并加速轴突再生。这种方法将低剂量PTX的再生作用与LNT M2的免疫调节特性相结合,使SCI大鼠实现了显著的神经功能恢复。此外,该支架制备简单、易于标准化且“即用型”的特性使其成为急性SCI干预及未来临床应用的有前景的候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96cf/11702283/9171ec278aed/12951_2024_3018_Fig1_HTML.jpg

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