Wu Weidong, Jia Shuaijun, Xu Hailiang, Gao Ziheng, Wang Zhiyuan, Lu Botao, Ai Yixiang, Liu Youjun, Liu Renfeng, Yang Tong, Luo Rongjin, Hu Chunping, Kong Lingbo, Huang Dageng, Yan Liang, Yang Zhimou, Zhu Lei, Hao Dingjun
Department of Spine Surgery, Honghui Hospital, Xi'an Jiaotong University, Xi'an, Shaanxi 710054, China.
Shaanxi Key Laboratory of Spine Bionic Treatment, Xi'an, Shaanxi 710054, China.
ACS Nano. 2023 Feb 28;17(4):3818-3837. doi: 10.1021/acsnano.2c12017. Epub 2023 Feb 14.
Neural stem cells (NSCs) are considered to be prospective replacements for neuronal cell loss as a result of spinal cord injury (SCI). However, the survival and neuronal differentiation of NSCs are strongly affected by the unfavorable microenvironment induced by SCI, which critically impairs their therapeutic ability to treat SCI. Herein, a strategy to fabricate PDGF-MP hydrogel (PDGF-MPH) microspheres (PDGF-MPHM) instead of bulk hydrogels is proposed to dramatically enhance the efficiency of platelet-derived growth factor mimetic peptide (PDGF-MP) in activating its receptor. PDGF-MPHM were fabricated by a piezoelectric ceramic-driven thermal electrospray device, had an average size of 9 μm, and also had the ability to activate the PDGFRβ of NSCs more effectively than PDGF-MPH. , PDGF-MPHM exerted strong neuroprotective effects by maintaining the proliferation and inhibiting the apoptosis of NSCs in the presence of myelin extracts. , PDGF-MPHM inhibited M1 macrophage infiltration and extrinsic or intrinsic cells apoptosis on the seventh day after SCI. Eight weeks after SCI, the T10 SCI treatment results showed that PDGF-MPHM + NSCs significantly promoted the survival of NSCs and neuronal differentiation, reduced lesion size, and considerably improved motor function recovery in SCI rats by stimulating axonal regeneration, synapse formation, and angiogenesis in comparison with the NSCs graft group. Therefore, our findings provide insights into the ability of PDGF-MPHM to be a promising therapeutic agent for SCI repair.
神经干细胞(NSCs)被认为是脊髓损伤(SCI)后神经元细胞损失的潜在替代物。然而,SCI诱导的不利微环境严重影响了NSCs的存活和神经元分化,这严重损害了它们治疗SCI的能力。在此,我们提出了一种制备血小板衍生生长因子模拟肽(PDGF-MP)水凝胶(PDGF-MPH)微球(PDGF-MPHM)而非块状水凝胶的策略,以显著提高PDGF-MP激活其受体的效率。PDGF-MPHM由压电陶瓷驱动的热电喷雾装置制备,平均尺寸为9μm,并且比PDGF-MPH更有效地激活NSCs的PDGFRβ。在髓磷脂提取物存在的情况下,PDGF-MPHM通过维持NSCs的增殖和抑制其凋亡发挥强大的神经保护作用。在SCI后第7天,PDGF-MPHM抑制M1巨噬细胞浸润以及外在或内在细胞凋亡。SCI后8周,T10 SCI治疗结果显示,与NSCs移植组相比,PDGF-MPHM + NSCs通过刺激轴突再生、突触形成和血管生成,显著促进了NSCs的存活和神经元分化,减小了损伤大小,并显著改善了SCI大鼠的运动功能恢复。因此,我们的研究结果为PDGF-MPHM成为一种有前景的SCI修复治疗剂的能力提供了见解。