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首页> 外文期刊>Journal of Turbulence >Biomimetic Proteoglycans Mimic Macromolecular Architecture and Water Uptake of Natural Proteoglycans
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Biomimetic Proteoglycans Mimic Macromolecular Architecture and Water Uptake of Natural Proteoglycans

机译:仿生蛋白多糖模仿自然蛋白生成的大分子建筑和浇水

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摘要

Aging and degeneration of human tissue come with the loss of tissue water retention and associated changes in physical properties partially due to degradation and subsequent loss of proteoglycans. We demonstrated a novel method of fabrication of biomimetic proteoglycans, which mimic the three-dimensional bottlebrush architecture and physical behavior of natural proteoglycans responsible for tissue hydration and structural integrity. Biomimetic proteoglycans are synthesized by an end-on attachment of natural chondroitin sulfate bristles to a synthetic poly(acryloyl chloride) backbone. Atomic force microscopy imaging suggested three-dimensional core-bristle architecture, and hydrodynamic size of biomimetic proteoglycans was estimated at 61.3 +/- 12.3 nm using dynamic light scattering. Water uptake results indicated that biomimetic proteoglycans had a similar to 50% increased water uptake compared to native aggrecan and chondroitin sulfate alone. The biomimetic proteoglycans are cytocompatible in the physiological ranges of concentrations and could be potentially used to repair damaged or diseased tissue with depleted proteoglycan content.
机译:人体组织的老化和退化随着蛋白多糖的降解和后续损失而部分地存在组织水保留和物理性质的相关变化。我们展示了一种新颖的制造仿生蛋白多糖的方法,其模仿了负责组织水合和结构完整性的天然蛋白多糖的三维洗瓶架构和物理行为。仿生蛋白多糖通过天然软骨素硫酸盐刷毛的端部附着合成,以合成聚(丙烯酰氯)主链。原子力显微镜显像建议使用动态光散射估计了三维核心刷毛架构,以及仿生蛋白多糖的流体动力学尺寸估计。水吸收结果表明,与单独的天然藻和硫酸盐硫酸盐相比,仿生蛋白多糖的含量增加了50%。仿生蛋白多糖在生理浓度范围内是细胞锁相族化合物,并且可能被潜在地用于修复具有耗尽的蛋白增蛋白含量的受损或患病组织。

著录项

  • 来源
    《Journal of Turbulence》 |2017年第6期|共11页
  • 作者单位

    Drexel Univ Dept Mat Sci &

    Engn 3141 Chestnut St Philadelphia PA 19104 USA;

    Drexel Univ Sch Biomed Engn Sci &

    Hlth Syst 3141 Chestnut St Philadelphia PA 19104 USA;

    Drexel Univ Sch Biomed Engn Sci &

    Hlth Syst 3141 Chestnut St Philadelphia PA 19104 USA;

    Drexel Univ Dept Mat Sci &

    Engn 3141 Chestnut St Philadelphia PA 19104 USA;

    Drexel Univ Sch Biomed Engn Sci &

    Hlth Syst 3141 Chestnut St Philadelphia PA 19104 USA;

    Drexel Univ Dept Chem 3141 Chestnut St Philadelphia PA 19104 USA;

    Drexel Univ Dept Mat Sci &

    Engn 3141 Chestnut St Philadelphia PA 19104 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

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