Castro Ana L, van der Vliet Esmée, Pereira Paulo, Barbosa Mário A, Gonçalves Raquel M
i3S - Instituto de Investigação e Inovação em Saúde, Universidade do Porto, Porto, Portugal; INEB - Instituto de Engenharia Biomédica, Universidade do Porto, Porto, Portugal; ICBAS - Instituto de Ciências Biomédicas Abel Salazar, Universidade do Porto, Porto, Portugal.
i3S - Instituto de Investigação e Inovação em Saúde, Universidade do Porto, Porto, Portugal; INEB - Instituto de Engenharia Biomédica, Universidade do Porto, Porto, Portugal; Eindhoven University of Technology, Eindhoven, the Netherlands.
Acta Biomater. 2025 Jun 24. doi: 10.1016/j.actbio.2025.06.041.
Chronic inflammation plays a key role in intervertebral disc (IVD) herniation contributing to extracellular matrix (ECM) disorganization, annulus fibrosus (AF) tissue fibrosis, and consequent failure. Despite its importance, the impact of chronic inflammatory environment has been poorly explored in 3Dmodels. This study establishes a relevant 3D human-derived model to investigate the progression of inflammation in human AF cells. For that, cells from herniated IVD of patients with low back pain were cultured in 3D collagen type I hydrogels under basal and inflammatory (IL-1β) conditions for 7 days, in a transient (2 days) or continuous (7 days) periods. In parallel, 2D cultures were conducted in the same conditions. The 3D model recapitulated key pathological features of AF degeneration/failure, as actin filament alterations and reduced collagen type I deposition under continuous inflammation, which led to increased fibronectin production. Continuous inflammation also increased pro-inflammatory mediators in 3D cultures and enhanced immune cell infiltration in vivo. These findings validate collagen type I hydrogels with continuous inflammation, as a valuable model for replicating in vitro the AF pathomechanisms, offering insights into potential biomarkers and therapeutic targets for IVD herniation prognosis. STATEMENT OF SIGNIFICANCE: This study evaluates the effects of continuous versus transient inflammation in a 3D model of annulus fibrosus (AF) cells, providing insights on how sustained inflammatory conditions impact tissue components and inflammatory response in intervertebral disc (IVD) herniation. While previous research has focused on transient inflammation, this work uses a collagen-based 3D model to replicate prolonged inflammatory states, evaluating extracellular matrix alterations, inflammatory mediators' production and immune response. This work is of broad scientific interest, presenting a valuable approach for studying AF tissue pathology and inflammation in human IVD disorders.
慢性炎症在椎间盘(IVD)突出中起关键作用,导致细胞外基质(ECM)紊乱、纤维环(AF)组织纤维化及随之而来的功能衰竭。尽管其很重要,但慢性炎症环境在三维模型中的影响尚未得到充分研究。本研究建立了一个相关的三维人源模型,以研究人AF细胞中炎症的进展。为此,将腰痛患者突出IVD的细胞在I型胶原水凝胶中,于基础条件和炎症(白细胞介素-1β)条件下培养7天,分为短暂(2天)或持续(7天)时间段。同时,在相同条件下进行二维培养。三维模型重现了AF退变/功能衰竭的关键病理特征,如持续炎症下肌动蛋白丝改变和I型胶原沉积减少,这导致纤连蛋白产生增加。持续炎症还增加了三维培养中的促炎介质,并增强了体内免疫细胞浸润。这些发现验证了持续炎症下的I型胶原水凝胶,作为在体外复制AF病理机制的有价值模型,为IVD突出预后的潜在生物标志物和治疗靶点提供了见解。重要性声明:本研究评估了持续炎症与短暂炎症在纤维环(AF)细胞三维模型中的作用,为持续炎症条件如何影响椎间盘(IVD)突出中的组织成分和炎症反应提供了见解。虽然先前的研究集中在短暂炎症,但这项工作使用基于胶原的三维模型来复制长期炎症状态,评估细胞外基质改变、炎症介质产生和免疫反应。这项工作具有广泛的科学意义,为研究人IVD疾病中的AF组织病理学和炎症提供了一种有价值的方法。