脊髓损伤组织中肝细胞生长因子治疗效果的时序转换。

Yuji Okano, Yoshitaka Kase, Yu Suematsu, Masaya Nakamura, Hideyuki Okano
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引用次数: 0

摘要

众所周知,炎症反应会抑制接受干细胞再生疗法治疗脊髓损伤(SCI)患者的神经再生。因此,涉及神经再生和免疫调节的途径,如肝细胞生长因子(HGF)/MET信号级联,已引起人们的极大关注。值得注意的是,包括我们自己在内的多项研究都强调,通过结合HGF预处理和人诱导干细胞衍生神经干/祖细胞(hiPSC-NS/PC)移植,SCI动物模型的运动功能恢复得到了增强。然而,这些研究隐含的假设是,HGF在SCI中的功能将在时间上保持一致,并没有阐明其动态变化。在本文中,我们研究了 HGF 对 SCI 影响的时间过程,旨在揭示更精确的 HGF 施用机制,这对制定联合疗法的具体方案不可或缺。为此,我们利用最新研究获得的 RNA-seq 数据对 HGF 的时间变化进行了详细调查。利用数据的时间序列设计(我们以前没有充分利用这种设计),我们确定了 HGF 在不同时间起作用的三个组成部分:早期效应、持续效应和延迟效应。我们的研究结果提出了一个概念,即这三个组成部分共同促进了神经发生和免疫调节的加速,从而加强了根据经验对 HGF 给药方案进行微调的合理性,并提出了一种新的可能性,即 HGF 的时间不一致效应会逐步增强联合疗法的疗效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chronological transitions of hepatocyte growth factor treatment effects in spinal cord injury tissue.

Inflammatory responses are known to suppress neural regeneration in patients receiving stem cell-based regenerative therapy for spinal cord injury (SCI). Consequently, pathways involved in neurogenesis and immunomodulation, such as the hepatocyte growth factor (HGF)/MET signaling cascade, have garnered significant attention. Notably, various studies, including our own, have highlighted the enhanced recovery of locomotor functions achieved in SCI animal models by combining HGF pretreatment and human induced stem cell-derived neural stem/progenitor cell (hiPSC-NS/PC) transplantation. However, these studies implicitly hypothesized that the functionality of HGF in SCI would be time consistent and did not elucidate its dynamics. In the present article, we investigated the time-course of the effect of HGF on SCI, aiming to uncover a more precise mechanism for HGF administration, which is indispensable for developing crystallizing protocols for combination therapy. To this end, we performed a detailed investigation of the temporal variation of HGF using the RNA-seq data we obtained in our most recent study. Leveraging the time-series design of the data, which we did not fully exploit previously, we identified three components in the effects of HGF that operate at different times: early effects, continuous effects, and delayed effects. Our findings suggested a concept where the three components together contribute to the acceleration of neurogenesis and immunomodulation, which reinforce the legitimacy of empirically fine-tuned protocols for HGF administration and advocate the novel possibility that the time-inconsistent effects of HGF progressively augment the efficacy of combined therapy.

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