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Recent advances in disc cell biology.

机译:盘状细胞生物学的最新进展。

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STUDY DESIGN: There have been many advances over the past decade in understanding and experimentally modulating biologic aspects of intervertebral disc cell function. An overview of the current state of this biologic research is presented. OBJECTIVES: To provide clinicians with a review of important recent advances in biologic studies of the disc and their implications for potential disc therapies. SUMMARY OF BACKGROUND DATA: Historically, anatomic, biochemical, radiologic, and biomechanical studies of the intervertebral disc formed the foundation on which our understanding of disc function was built. Magnetic resonance imaging techniques that allowed viewing of soft tissue components of the disc further advanced imaging capabilities. METHODS: Recent publications are reviewed. RESULTS: Experimental approaches over the past decade have enabled researchers to look more critically at disc cell function. This is important because disc cell function produces the extracellular matrix components of the disc, which, in turn, shape the disc's subsequent physiologic and biomechanical functions. New approaches to the study of disc cell function, methods to manipulate disc cells, studies of intact discs and disc nutrition, vertebral endplate structure and function, tissue engineering, gene therapy, and the potential of stem cells in disc therapy are reviewed and discussed. CONCLUSIONS: Many believe that disc degeneration has a cellular basis. New research is helping us better understand healthy, aging, and degenerating discs. Modern methods to manipulate and modulate disc cell function open exciting and challenging new therapeutic possibilities for future biologic treatments of disc degeneration.
机译:研究设计:在过去的十年中,在了解和实验调节椎间盘细胞功能的生物学方面取得了许多进展。概述了该生物学研究的当前状态。目的:为临床医生提供有关椎间盘生物学研究的最新进展及其对潜在椎间盘治疗的影响的综述。背景数据概述:历史上,椎间盘的解剖学,生化,放射学和生物力学研究为我们对椎间盘功能的理解奠定了基础。允许查看椎间盘软组织成分的磁共振成像技术进一步提高了成像能力。方法:审查最近的出版物。结果:在过去的十年中,实验方法使研究人员能够更严格地研究椎间盘细胞的功能。这很重要,因为椎间盘细胞功能会产生椎间盘的细胞外基质成分,进而改变椎间盘的后续生理和生物力学功能。综述并讨论了研究椎间盘细胞功能的新方法,处理椎间盘细胞的方法,完整椎间盘和椎间盘营养的研究,椎骨终板的结构和功能,组织工程,基因治疗以及干细胞在椎间盘治疗中的潜力。结论:许多人认为椎间盘退变具有细胞基础。新的研究正在帮助我们更好地了解健康,老化和退化的光盘。操纵和调节椎间盘细胞功能的现代方法为椎间盘退变的未来生物治疗打开了令人兴奋且具有挑战性的新治疗方法。

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