脊索细胞来源的细胞外泡对髓核细胞微球和外植体中il -1β诱导的分解代谢级联调节作用的探索性研究。

IF 3.4 3区 医学 Q1 ORTHOPEDICS
JOR Spine Pub Date : 2025-01-29 DOI:10.1002/jsp2.70043
J. C. van Maanen, F. C. Bach, J. W. Snuggs, K. Ito, M. H. M. Wauben, C. L. Le Maitre, M. A. Tryfonidou
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引用次数: 0

摘要

背景:无细胞再生策略,如脊索细胞(NC)来源的细胞外囊泡(ev),是开发椎间盘退变(IVD)新疗法的一个有吸引力的替代方案。据报道,nc - ev对基础条件下培养的变性IVDs的髓核细胞产生基质合成代谢作用。然而,促炎细胞因子加剧了退行性过程,导致恶性循环。因此,本研究探讨nc - ev是否调节退变椎间盘中白细胞介素-1β介导的促炎反应。方法:采用两种IL-1β诱导的促代谢培养模型;狗三维髓核(NP)细胞颗粒培养和人类患者衍生的离体NP组织培养系统。猪nc - ev由nc条件培养基经差速离心和粒径隔离层析制备。通过隔夜超离心生成与供体匹配的ev -贫培养基,然后对ev -贫NCCM上清进行排色层析。为了研究观察到的效应是否与ev相关,在IL-1β缺失和存在的情况下,将nc - ev与ev缺失的对照组进行了比较。结果:通过纳米颗粒跟踪分析对nc - ev的大小和浓度进行了量化,结果显示供体变化最小,证实了ev在ev耗尽培养基中耗尽。在il -1β诱导的分解代谢级联中,nc - ev没有在基质水平上引起合成代谢作用,也没有挽救狗颗粒内的促分解代谢表型。在人外植体中,CCL2分泌的改变似乎与环境有关:EVs处理刺激CCL2分泌,但在IL-1β存在时,这种作用被抵消。与对照组+IL-1β相比,NC-EV +IL-1β组IL-6和C-X-C基序趋化因子配体1的分泌显著减少,但与ev耗尽的人外植体对照组相比,IL-6和C-X-C基序趋化因子配体1的分泌明显减少。总之,这些数据为nc - ev的保护性调节作用提供了证据。考虑到ev发挥的稳态功能,固有地包含微妙的生物修饰,目前的研究可能缺乏足够的力量来证明具有明显供体变异的样本组的统计意义。结论:当关键的促炎细胞因子IL-1β存在时,nc - ev可能调节人退行性外植体中特定细胞因子和趋化因子的产生。在进一步的研究中实施技术性的ev耗尽对照对于有力地证明这些影响是ev介导的,而与ev分离期间共分离的其他分泌因子无关至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Explorative Study of Modulatory Effects of Notochordal Cell-Derived Extracellular Vesicles on the IL-1β-Induced Catabolic Cascade in Nucleus Pulposus Cell Pellets and Explants

Explorative Study of Modulatory Effects of Notochordal Cell-Derived Extracellular Vesicles on the IL-1β-Induced Catabolic Cascade in Nucleus Pulposus Cell Pellets and Explants

Background

Cell-free regenerative strategies, such as notochordal cell (NC)-derived extracellular vesicles (EVs), are an attractive alternative in developing new therapies for intervertebral disc (IVD) degeneration. NC-EVs have been reported to elicit matrix anabolic effects on nucleus pulposus cells from degenerated IVDs cultured under basal conditions. However, the degenerative process is exacerbated by pro-inflammatory cytokines contributing to the vicious degenerative cycle. Therefore, this study explores whether NC-EVs modulate interleukin (IL)-1β-mediated pro-inflammatory responses in the degenerating disc.

Methods

This study utilized two IL-1β induced pro-catabolic culture models; a dog 3D nucleus pulposus (NP) cell pellet culture and a human patient-derived, ex vivo NP tissue culture system. Porcine NC-EVs were generated from NC-conditioned medium by differential centrifugation followed by size exclusion chromatography. Donor matched EV-depleted media were generated by overnight ultracentrifugation, whereafter the EV-depleted NCCM supernatant was subjected to size exclusion chromatography. To investigate whether observed effects were EV-associated, NC-EVs conditions were compared to EV-depleted controls in the absence and presence of IL-1β.

Results

The size and concentration of NC-EVs were quantified by nanoparticle tracking analysis, which showed minimal donor variation and confirmed depletion of EVs in the EV-depleted media. In the IL-1β-induced catabolic cascade, the NC-EVs did not elicit anabolic effects at the matrix level nor did they rescue the pro-catabolic phenotype within dog pellets. Modification of the CCL2 secretion seemed to be context dependent in the human explants: where EVs treatment stimulated CCL2 secretion but in the presence of IL-1β this effect was counteracted. Secretion of IL-6 and C-X-C motif chemokine ligand 1 was significantly decreased in NC-EV + IL-1β vs. control+IL-1β but not compared to EV-depleted human explant controls. Altogether, this data provides evidence for a protective modulatory role of NC-EVs. Considering the homeostatic function EVs exert, inherently encompassing subtle biologic modifications, the current study may have lacked sufficient power to demonstrate statistical significance in a sample set with evident donor variation.

Conclusions

NC-EVs may modulate the production of specific cytokines and chemokines in human degenerate explants when the key pro-inflammatory cytokine IL-1β is present. Implementation of the technical EV-depleted controls in further studies is essential to robustly demonstrate that these effects are EV-mediated and not associated with other secreted factors co-isolated during EV-isolation.

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来源期刊
JOR Spine
JOR Spine ORTHOPEDICS-
CiteScore
6.40
自引率
18.90%
发文量
42
审稿时长
10 weeks
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