AO Research Institute, Clavadelerstrasse 8, Davos, 7270, Switzerland.
ETH Zürich, Rämistrasse 101, Zürich, 8092, Switzerland.
Adv Sci (Weinh). 2024 Mar;11(11):e2308478. doi: 10.1002/advs.202308478. Epub 2023 Dec 19.
Discogenic pain is associated with deep nerve ingrowth in annulus fibrosus tissue (AF) of intervertebral disc (IVD). To model AF nerve ingrowth, primary bovine dorsal root ganglion (DRG) micro-scale tissue units are spatially organised around an AF explant by mild hydrodynamic forces within a collagen matrix. This results in a densely packed multicellular system mimicking the native DRG tissue morphology and a controlled AF-neuron distance. Such a multicellular organisation is essential to evolve populational-level cellular functions and in vivo-like morphologies. Pro-inflammatory cytokine-primed AF demonstrates its neurotrophic and neurotropic effects on nociceptor axons. Both effects are dependent on the AF-neuron distance underpinning the role of recapitulating inter-tissue/organ anatomical proximity when investigating their crosstalk. This is the first in vitro model studying AF nerve ingrowth by engineering mature and large animal tissues in a morphologically and physiologically relevant environment. The new approach can be used to biofabricate multi-tissue/organ models for untangling pathophysiological conditions and develop novel therapies.
椎间盘源性疼痛与椎间盘纤维环 (AF) 组织中的深神经内生长有关。为了模拟 AF 神经内生长,通过胶原基质中的轻微流体动力将原代牛背根神经节 (DRG) 微尺度组织单元空间组织在 AF 外植体周围。这导致了类似于天然 DRG 组织形态和受控的 AF-神经元距离的密集多细胞系统。这种多细胞组织对于进化群体水平的细胞功能和类似于体内的形态至关重要。促炎细胞因子预处理的 AF 表现出对伤害感受器轴突的神经营养和神经趋化作用。这两种作用都依赖于 AF-神经元距离,这是在研究它们的串扰时重现组织/器官解剖接近的基础。这是第一个通过在形态和生理相关环境中工程成熟和大型动物组织来研究 AF 神经内生长的体外模型。这种新方法可用于生物制造多组织/器官模型,以理清病理生理状况并开发新疗法。