首页> 外文会议>ASME Bioengineering Conference >TRANSPORT OF INSULIN-LIKE GROWTH FACTOR 1 IN INTERVERTEBRAL DISC: EFFECT OF BINDING INTERACTIONS AND INHOMOGENEOUS DISTRIBUTION OF BINDING PROTEINS IN ANNULUS FIBROSUS AND NUCLEUS PULPOSUS
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TRANSPORT OF INSULIN-LIKE GROWTH FACTOR 1 IN INTERVERTEBRAL DISC: EFFECT OF BINDING INTERACTIONS AND INHOMOGENEOUS DISTRIBUTION OF BINDING PROTEINS IN ANNULUS FIBROSUS AND NUCLEUS PULPOSUS

机译:椎间盘中胰岛素样生长因子1的运输:结合相互作用和结合蛋白在环状纤维和髓核中的结合蛋白的影响

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The intervertebral disc (IVD), being the largest avascular structure in human body, receives nourishment from the vascular network present near its periannular surface and at cartilage endplates (CEPs). It is believed that insufficient nutritional supply is a major cause for disc degeneration [1]. Understanding the mechanisms of solute transport in IVD is crucial for elucidating the etiology of disc degeneration, and to develop strategies for tissue repair (in vivo), and tissue engineering (in vitro). Transport in IVD is complex and involves a series of electromechanical, chemical, and biological coupled events. This study focused on the implications of solute-tissue reversible binding reactions on transport phenomena in the disc. A two dimensional (2D) finite element model was developed to predict diffusive-reactive transport in IVD. The numerical model was used to simulate transport of insulin-like growth factor 1 (IGF-1) in IVD, in the presence of binding interactions between IGF-1 and IGF-binding proteins (IGFBP-3) located on the extracellular matrix (ECM) of the disc.
机译:作为人体中最大的腺体结构,椎间盘(IVD)接受从其肛周表面附近和软骨底板(CEPS)附近的血管网络营养。据信,营养供应不足是椎间盘退化的主要原因[1]。了解IVD中溶质转运机制对于阐明椎间盘退变的病因至关重要,并为组织修复(体内)和组织工程(体外)制定策略。 IVD的运输是复杂的,涉及一系列机电,化学和生物耦合事件。本研究重点关注溶质组织可逆结合反应对盘中运输现象的影响。开发了二维(2D)有限元模型以预测IVD中的扩散反应性。数值模型用于模拟IVD在IVD中的胰岛素样生长因子1(IGF-1)的运输,在位于细胞外基质(ECM)之间的IGF-1和IGF结合蛋白(IGFBP-3)之间的结合相互作用存在下(ECM )光盘。

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