首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Imaging Cell Viability on Non-transparent Scaffolds — Using the Example of a Novel Knitted Titanium Implant
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Imaging Cell Viability on Non-transparent Scaffolds — Using the Example of a Novel Knitted Titanium Implant

机译:在非透明支架上成像细胞活力—以新型编织钛植入物为例

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摘要

Intervertebral disc degeneration and disc herniation is one of the major causes of lower back pain. Depletion of extracellular matrix, culminating in nucleus pulposus (NP) extrusion leads to intervertebral disc destruction. Currently available surgical treatments reduce the pain but do not restore the mechanical functionality of the spine. In order to preserve mechanical features of the spine, total disc or nucleus replacement thus became a wide interest. However, this arthroplasty era is still in an immature state, since none of the existing products have been clinically evaluated.This study intends to test the biocompatibility of a novel nucleus implant made of knitted titanium wires. Despite all mechanical advantages, the material has its limits for conventional optical analysis as the resulting implant is non-transparent. Here we present a strategy that describes in vitro visualization, tracking and viability testing of osteochondro-progenitor cells on the scaffold. This protocol can be used to visualize the efficiency of the cleaning protocol as well as to investigate the biocompatibility of these and other non-transparent scaffolds. Furthermore, this protocol can be used to show adherence pattern of cells as well as cell viability and proliferation rates on/in the scaffold. This in vitro biocompatibility testing assay provides a propitious tool to analyze cell-material interaction in non-transparent and opaque scaffolds.
机译:椎间盘退变和椎间盘突出是下腰痛的主要原因之一。细胞外基质的耗尽,最终导致髓核(NP)挤压,导致椎间盘破坏。当前可用的外科手术治疗减轻了疼痛但不能恢复脊柱的机械功能。为了保持脊柱的机械特征,整个椎间盘或核的替换因此引起广泛关注。然而,由于目前尚无产品经过临床评估,因此该关节置换术时代仍处于不成熟状态。本研究旨在测试由编织钛丝制成的新型核植入物的生物相容性。尽管具有所有机械优势,但该材料在常规光学分析方面有其局限性,因为所得植入物是不透明的。在这里,我们提出一种策略,描述支架上骨软骨祖细胞的体外可视化,跟踪和生存能力测试。该协议可用于可视化清洁协议的效率,以及研究这些和其他非透明支架的生物相容性。此外,该方案可用于显示细胞的粘附模式以及支架上/中的细胞活力和增殖速率。这项体外生物相容性测试方法为分析非透明和不透明支架中的细胞材料相互作用提供了一种有利的工具。

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