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首页> 外文期刊>Tissue engineering, Part C. Methods >Development of a Large Animal Long-Term Intervertebral Disc Organ Culture Model That Includes the Bony Vertebrae for Ex Vivo Studies
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Development of a Large Animal Long-Term Intervertebral Disc Organ Culture Model That Includes the Bony Vertebrae for Ex Vivo Studies

机译:大型动物长期椎间盘器官培养模型,包括用于离体研究的骨椎骨

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摘要

Intervertebral disc (IVD) degeneration is a common cause of low back pain. Testing potential therapeutics in the regeneration of the disc requires the use of model systems. Although several animal models have been developed to investigate IVD degeneration, they are technically challenging to prepare, expensive, present with limitations when performing biomechanical studies on the disc, and are impractical in large-scale screening of novel anabolic and scaffolding agents. An IVD organ culture system offers an inexpensive alternative. In the current paradigm, the bony endplates are removed to allow for nutrient diffusion and maintenance of disc cell viability. Although this is an excellent system for testing biologics, it results in concave cartilage endplates and, as such, requires special platens for loading purposes in a bioreactor as flat ones can overload the annular disc region leading to improper loading. Furthermore, the absence of bone makes it unsuitable for applying complex cyclic loading, a topic of interest in the study of chronic progressive degeneration, as multiaxial loading is more representative of daily forces encountered by the IVD. We have developed and validated a novel long-term IVD organ culture model that retains vertebral bone and is easy to prepare. Our model is ideal for testing potential drugs and alternate-based therapies, in addition to investigating the long-term effects of loading paradigms on disc degeneration and repair.
机译:椎间盘(IVD)变性是腰痛的常见原因。在盘的再生中测试潜在的治疗方法需要使用模型系统。尽管已经开发了几种动物模型来调查IVD退化,但它们在技术上具有挑战性,在圆盘上进行生物力学研究时准备,昂贵,在局限性上具有局限性,并且在大规模筛选新颖的代谢和支架剂中是不切实际的。 IVD器官文化系统提供廉价的替代品。在目前的范例中,除去骨底板以允许营养扩散和椎间盘电池存活率的维持。虽然这是用于测试生物学的优秀系统,但它导致凹形软骨片材,因此,需要特殊的压板用于在生物反应器中加载目的,因为扁平物可以过载导致负载不当的环形光盘区域。此外,没有骨骼使其不适合施用复杂的循环载荷,这是慢性渐变性退化研究的兴趣题目,因为多轴载荷更符合IVD遇到的日常力量。我们已经开发并验证了一种新的长期IVD器官培养模型,保留椎骨,易于制备。除了调查装载范式对椎间盘变性和修复的长期影响,我们的模型是测试潜在药物和基于交替的疗法的理想选择。

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