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用于评估转移性神经母细胞瘤中分子和细胞线索的3D打印骨模型。

A 3D printed bone model for the assessment of molecular and cellular cues in metastatic neuroblastoma.

作者信息

Aveic Sanja, Janßen Simon, Nasehi Ramin, Seidelmann Max, Vogt Michael, Pantile Marcella, Rütten Stephan, Fischer Horst

机构信息

Department of Dental Materials and Biomaterials Research, RWTH Aachen University Hospital, 52074 Aachen, Germany.

Interdisciplinary Center for Clinical Research, RWTH Aachen University Hospital, 52074 Aachen, Germany.

出版信息

Biomater Sci. 2021 Mar 10;9(5):1716-1727. doi: 10.1039/d0bm00921k.

Abstract

Metastasis is a complex and multifactorial process highly dependent on the interaction between disseminated tumor cells and the pre-metastatic niche. The metastatic sites detected in the bone of patients affected by neuroblastoma (NB), a malignancy of the developing sympathetic nervous system, are particularly aggressive. To improve our current knowledge of metastatic tumor cell biology and improve treatment success, appropriate in vitro and in vivo models that more closely resemble the native metastatic niche are needed. In this study, the impact of the geometry of synthetic β-tricalcium-phosphate (β-TCP) structures on the interaction of NB tumor cells with the stromal component has been examined. The tumor microenvironment is dynamically shaped by the stroma, which sustains the growth of NB cells inside the metastatic niche. The 3D growth conditions are a determining factor for the cell proliferation rate in β-TCP. With respect to planar counterparts, channeled 3D β-TCP structures stimulate more interleukin-6 and Fibronectin production and define Connexin 43 distribution inside the cells. Together, these results highlight how the biomechanical properties of the 3D microenvironment enable tumor cells to form spheroid-shaped arrangements. This, in turn, facilitates their pro-migratory and pro-invasive patterns and mimics the in vivo situation by translating realistic mechanobiological cues to the metastatic NB.

摘要

转移是一个复杂且多因素的过程,高度依赖于播散肿瘤细胞与前转移微环境之间的相互作用。在神经母细胞瘤(NB)患者骨骼中检测到的转移部位尤其具有侵袭性,NB是一种发育中的交感神经系统恶性肿瘤。为了增进我们目前对转移性肿瘤细胞生物学的了解并提高治疗成功率,需要更接近天然转移微环境的合适体外和体内模型。在本研究中,已检测了合成β-磷酸三钙(β-TCP)结构的几何形状对NB肿瘤细胞与基质成分相互作用的影响。肿瘤微环境由基质动态塑造,基质维持着转移微环境内NB细胞的生长。三维生长条件是β-TCP中细胞增殖率的决定因素。相对于平面结构,有通道的三维β-TCP结构刺激更多白细胞介素-6和纤连蛋白的产生,并确定细胞内连接蛋白43的分布。总之,这些结果突出了三维微环境的生物力学特性如何使肿瘤细胞形成球形排列。反过来,这促进了它们的促迁移和促侵袭模式,并通过将现实的机械生物学线索转化为转移性NB来模拟体内情况。

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